Proposed
 Control Strategy
      for the
State of Alabama
      November 1971
       Prepared For
  Environmental Protection Ageney

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PROPOSED CONTROL STRATEGY

. FOR THE
STATE OF ALABAMA
.November 1971
Prepared For

Environmental Protection Agency
Office of Air Programs
SYSTEMS GIIOUP
WASHINGTON OPERATIONS
"Of COtJHI.. D.,." . "'dEAN. "'flGIMIA llHH
18425.008

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The work upon which this publication is based was performed by
Resources Research, Inc., a subsidiary of TRW Inc., pursuant to
Contact No. 68-02-0048 with the Office of Air Programs, Environmental
Protection Agency

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PREFACE
In developing the Proposed Permit System, Proposed Air Quality Sur-
veillance System, Proposed Emergency Episode Plan, and Proposed Control
Strategy portions of the Alabama Implementation Plan, TRW Systems Group
has been guided by the intent of the Federal Register, August 14,1971,
as well as extensive direct communication with Environmental Protection
Agency and Alabama Division of Air Pollution Control personnel.
We are particularly indebted to Barry Gilbert and William Burch of the
Region IV office, EPA and William Willis, John Daniel, and Cecil Cork of
the Alabama Division of Air Pollution Control for their overall guidance
on this project.
A large number of TRW people participated in this project; those
with the most direct involvement are listed below.
William Dickerson, Project Manager
John Braswell
Gennaro Cangiano
Fredric Hamburg
Robert Herrick (Herrick Associates)
Steven Plotkin
Michael Stern
Thomas Wright
/
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TABLE OF CONTENTS
Page
1. INTRODUCTION............................................ 1-1

2. LEGAL AUTHORITY......................................... 2-1

3. CONTROL REGULATIONS ..................................... 3-1
Rule 1. DEFINITIONS .................................... 3-1
Rule 2. CONTROL OF OPEN BURNING AND INCINERATION ....... 3-5
Rule 3. CONTROL OF PARTICULATE EMISSIONS ............... 3-6
Rule 4. CONTROL OF SULFUR COMPOUND EMISSIONS ...........3-12
Rule 5. CONTROL OF HYDROCARBON EMISSIONS FROM STATIONARY
SOURCES. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . fI 3-14

Rule 6. CONTROL OF CARBON MONOXIDE EMISSIONS ........... 3-19
Rule 7. CONTROL OF NITROGEN OXIDES EMISSIONS ........... 3-19
4. ADEQUACY OF CONTROL STRATEGY....... .....................4-1
4.1 General Requirements .. ............................. 4-1
4.1.1 Set 1 Pollutants (Particulate Matter and

Su 1 fur Oxi des. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .. 4-1

4.1.2 Set 2 Pollutants (Carbon Monoxide, Nitrogen
Oxides, Hydrocarbons, Photochemical Oxidants. 4-6

4.2 Control Strategy Application for Particulate
Matter and Sulfur Oxides ............... ............ 4-7

4.2.1 Particulate Matter ..........................4-7

4.2.2 Sulfur Oxides ............................... 4-16
4.3 Control Strategy Application for Carbon Monoxide,
Nitrogen Oxides, Hydrocarbons, and Photochemical

Ox; dants ........................................... 4-20

4.3.1 Carbon Monoxide ... ........ ...... ............ 4~20
4.3.2 Hydrocarbons and Photochemical Oxidants ..... 4-23
4.4 Analysis Summary and Conclusions ................... 4-26
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1.
INTRODUCTION
The Cl ean Ai r Act, as amended, requi res each state government to
implement requirements for the prevention, abatement, and control of sulfur
oxides, particulate matter, carbon monoxide, nitrogen oxides, hydrocar-
bons, and photochemical oxidants, such that: (1) where existing ambient
levels of a pollutant exceed the levels specified by an applicable primary
or secondary national standard, the requirements shall provide the degree
of emission reduction necessary for attainment and maintenance of such
national standard and (2) where existing ambient levels of a pollutant are
below the levels specified by an applicable secondary standard, the require-
ments shall be adequate to prevent such ambient pollutant levels from ex-
ceeding such secondary standard.
The period of compliance with these requirements is specified as not
later than three years after the federal approval of the plan. If, however,
the necessary technology or alternatives are not available soon enough to
permit full implementation of the plan within the three-year period, a two-
year extension may be requested. Assuming the plan, as presented in this
and other documents, will be approved in 1972, the requirements of the
plan must be implemented by 1975, or, if an extension is granted, by 1977.
The pollutants to be controlled by the proposed control strategy are
divided into two sets, Set 1 consisting of particulate matter and sulfur
oxides and Set 2 consisting of carbon monoxide, nitrogen oxides, hydro-
carbons, and photochemical oxidants. Since photochemical oxidants are
secondary pollutants, they cannot be controlled directly. As a result,
the control strategy for the Set 2 pollutant applies to carbon monoxide,
nitrogen oxides, and hydrocarbons only. By using relationships between
photochemical oxidants and hydrocarbons presented in the Federal Register*,
* Unless otherwise noted, Federal Register means Federal Register, Vol.
36, No. 158 - Saturday, August 14,1971.
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the necessary reduction in photochemical oxidants is assumed to be accom-
plished by a proportional reduction in hydrocarbons.
This document fulfills the federal requirements outlined above by
presenting the control strategy rules and regulations for the State of
Alabama and demonstrating that the control strategy, implemented by 1975,
can control particulate matter, sulfur oxides and nitrogen oxides emissions
such that the applicable national secondary standard for these pollutants
will not be-exceeded by or after 1975 and can control carbon monoxide and
hydrocarbons such that the applicable national standards for these pollu-
tants will not be exceeded by or after 1977.
Section 2.0 of this document presents the legal authority enabling
the adoption and enforcement of the control strategy rules and regulations.
The rules and regulations are presented in Section 3.0. These rules
reflect a compromise between the most stringent control technically feasible
and the minimum control necessary to maintain air quality at a level below
the national standards. To provide a basis for the degree of control to be
applied, the concept of Class 1 and Class 2 counties has been developed in
which less stringent control for the Set 1 pollutants are required in the
Class 2 counties. The county classification criteria (Rule l.d.) are based
on the existing pollutant problems and the urban or rural nature of the
county.
Since the national standards applicable to the Set 2 pollutants
(carbon monoxide and hydrocarbons) cannot be met by 1975, the most strin-
gent stationary source controls feasible have been applied to these pol-
lutants for both Class 1 and Class 2 counties. Control of auto emissions
(which account for the major portion of the Set 2 pollutant concentrations)
will be accomplished through application of the Federal Motor Vehicle emis-
sions standards (promulgated pursuant to Section 202 of the Clean Air Act).
Section 4.0 presents an analysis of the adequacy of the proposed
rules and regulations with respective to attainment and maintenance of the
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ambient air quality levels below applicable national standards. The
adequacy of the control strategy is demonstrated through use of a "rollback"
technique for example regions which compares the percent emission reduction
achieved (as a result of the strategy application) to the percent emission
reduction required. The analysis shows that, with the exception of carbon
monoxide and hydrocarbons, the applicable national standards will not be
exceeded by or after 1975. For carbon monoxide and hydrocarbons the analysis
shows that the applicable national standards will not be exceeded by or
before 1977. Since the combination of the Alabama control strategy (for
stationary sources) and the Federal Motor Vehicle Standards produce suffi-
cient control by and after 1977, no transportation controls are proposed.
Appendix A gives the
each county in the State.
of the emissions inventory
existing (197l) emissions inventory summary for
These data were taken from the computer printout
for the State of Alabama*.
Appendix B gives emission summaries for each region analyzed showing
a comparison between the existing (1971) emissions and the emissions expected
after strategy application (1975 for Set 1 pollutants and 1977 for Set 2
po 11 utants) .
*Final Report on the Emissions Inventory for the State of Alabama, prepared
by TRW under Contract No. 68-02-0048, Task Order 1.
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2.
LEGAL AUTHORITY
The set of emission limitations provided for in the Control Strategy
Plan is authorized by the enabling legislation, Act No. 769, 1971, Regular
Session of the Alabama Legislature, as cited below. In general, this legis-
lation (1) expresses the intent of the Alabama Legislature to assign res-
ponsibility for the determination of emission limitations and (2) conveys
to those designated, specific powers for carrying out their responsibilities
in the most effective manner.
items

State
1.
The authority to adopt the emission standards, limitations
and other measures set forth in this document; Sections 5
and 10.
2.
The authority to enforce the applicable laws, regulations,
and standards and to seek injunctive relief; Section 17.
The legal authority for and the rules and regulations pertaining to
listed below are given in the document, Proposed Permit System for the
of Alabama.
1.
Prevention of construction, modification, or operation of
any stationary source at any location where emissions from
such source will prevent the attainment or maintenance of a
national standard.
2.
Collection of information necessary to determine whether
air pollution sources are in compliance with applicable
laws, regulations, and standards, including authority to
require record keeping and to make inspections and con-
duct tests of air pollution sources.
3.
Requirements for owners and operators of stationary sources
to install, maintain, and use emission monitoring devices
and to make periodic reports to the State on the nature and
amounts of emissions from such stationary sources; also
authority for the State to make such data available to the
public as reported and as correlated with the applicable
emission standards or limitations.
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Rule 1.
3.
CONTROL REGULATIONS
DEFINITIONS
a.
Control means any device which has the function of controlling
the emissions from a process, fuel-burning, or refuse-burning
device and thus reduces the creation of, or the emission of air
contaminants into the atmosphere, or both.

Control Strategy means a collection of various emission standards
selected for the different categories of sources.
b.
c.
Control Regulation means a legally enforceable emission control
strategy.

County Classification means the designation Class 1 County or
Class 2 County. All facilities, plants or other installations
shall be subject to the restrictions on air pollution emissions
specific to the county classification of the county in which
they are located.
(1) A Class 2 County is defined as a county in which:
d.
(a) More than 50 percent of the county population resides
in a non-urban place, as defined by the U.S. Depart-
ment of Commerce Census Bureau for 1970.
(b)
No secondary Nation Ambient Air Quality standard is
being exceeded based on 1971 air quality measurements.

(2) A Class 1 County is defined as a county in which either

Rule 1.d.(1)(a) or (b) or both are not met.
e.
Effluent Water Separator means any tank, box, sump, or other con-
tainer in which any volatile organic compound floating on or en-
trained or contained in water entering such tank, box, sump, or
other container is physically separated and removed from such
water prior to outfall, drainage, or recovery of such water.

Fuel-Burning Equipment means any equipment, device, or contrivance
and all appurtenances thereto, including ducts, breechings, fue1-
feeding equipment, ash removal equipment, combustion controls,
stacks and chimney, used primarily, but not exclusively, to burn
any fuel for the purpose of indirect heating in which the material
f.
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g.
being heated is not contacted by and adds no substance to the
products of combustion.

Fugitive Dust means solid air-borne particulate matter emitted
from any source other than a flue or stack.
h.
Heat Available means the aggregate heat content of all fuels whose
products of combustion pass through a stack or stacks.
i .
Heat Input means the equipment manufacturer's or designer's
guaranteed maximum (whichever is greater) capacity of the fuel
combustion unit.
j.
Incinerator means any equipment, device or contrivance and all
appurtenances thereof used for the destruction by burning of solid,
semi-solid, liquid, or gaseous combustible wastes.

Maximum Process Weight Per Hour means the equipment manufacturer's
or designer's guaranteed maximum (whichever is greater) process
weight per hour.
k.
1.
Multiple Chamber Incinerator means any incinerator consisting of
three or more refractory lined combustion chambers in series,
physically separated by refractory walls, interconnected by gas
passage ports or ducts and employing adequate design parameters
necessary for maximum combustion of the material to be burned.
m.
New Source means equipment, machines, devices, articles, contri-
vances, or installations built or installed on or after the effec-
tive date of these regulations, and installations existing at said
stated time which are later altered, repaired, or rebuilt. Any
equipment moved to another premise involving a change of address,
or purchased and to be operated by a new owner, or when a new lessee
desires to operate such equipment after the effective date of
these regulations shall be considered a new source.
n.
Odor means smells or aromas which are unpleasant to persons, or
which tend to lessen human food and water intake, interfere with
sleep, upset appetite, produce irritation of the upper respiratory
tract, or cause symptoms of nausea, or which by their inherent
chemical or physical nature, or method of processing, are, or may
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be, detrimental or dangerous to health.
interchangeably herein.
Odor and smell are used
o.
Opacity means the obscuration to an observer's view produced by
smoke of any color that is equivalent to an obscuration by smoke
of a shade specified in the Ringelmann Smoke Chart published by
the United States Bureau of Mines.
p.
Open Burning means the burning of any matter in such a manner that
the products of combustion resulting from the burning are emitted
directly into the ambient air without passing through an adequate
stack, duct, or chimney.
q.
Operating Time means the number of hours per year that a source
conducts operations.

Particulate Matter means finely divided material, except uncombined
water which is a liquid or a solid at standard conditions of
temperature at 68°F and pressure at 14.7 pounds per square inch
absolute.
r.
s.
Process means any action, operation, or treatment of materials,
including handling and storage thereof, which may cause discharge
of an air contaminant, or contaminants, into the atmosphere, but
excluding fuel burning and refuse burning.

Process Weight means the total weight in pounds of all materials
introduced into any specific process which may cause any discharge
into the atmosphere.
t.
u.
Process Weight Per Hour means the total weight of all materials
introduced into any specific process that may cause any discharge
of particulate matter. Solid fuels charged will be considered
as part of the process weight, but liquid and gaseous fuels and
combustion air will not. For a cyclical or batch. operation, the
process weight per hour will be derived by dividing the total
process weight by the number of hours in one complete operation
from the beginning of any given process to the completion thereof,
excluding any time during which the equipment is idle. For a
continuous operation, the process weight per hour will be de-
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I
I
I .
a.a.
b.b.
rived by dividing the process weight for a typical period of

time by that time period.
v.
Refuse means matter consisting of garbage, rubbish, ashes,
street debris, dead animals, abandoned vehicles, industrial
wastes, demolition wastes, construction wastes, special wastes,
or sewage treatment residue.
w.
Ringelmann Chart means the chart published and described in

U.S. Bureau of Mines Information Circular 8333.
x.
Smoke means small gas-borne particles resulting from incomplete
combustion, consisting predominantly, but not exclusively, of
carbon, ashes, or other combustible material.
y.
Soiling Index means a measure of the soiling properties of sus-
pended particles in air determined by drawing a measured volume
of air through a known area of Whatman No.4 filter paper for a
measured period of time, expressed as COHs/l,OOO linear feet.
z.
Source means any physical arrangement, condition, or structure
which may emit air contaminants. Any activity which utilizes
abrasives or chemicals for cleaning or any other purpose which
emits air contaminants such as cleaning the exterior of buildings
shall be considered a source and shall be required to obtain
a permit to operate and comply with any other applicable parts.
Stack means any chimney, flue, conduit, or duct that is arranged,
or used, to conduct a gaseous or particulate effluent, or both,
to the open air.
Submerged Fill Pipe means any fill pipe, the discharge opening
of which is entirely submerged when the liquid level is 6 inches
above the bottom of the tank; or when applied to a tank which
is loaded from the side, shall mean any fill pipe, the discharge
opening of which is entirely submerged when the liquid level
is two times the fill pipe diameter, in inches, above the bottom
of the tank.
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c.c.
d.d.
Rule 2.
Use Factor means the ratio of the equipment
designer's guaranteed maximum (whichever is
capacity divided by the source usage.
manufacturer's or
greater) source
(1)
Fuel Combustion Sources
The Use Factor for fuel combustion sources is defined
as the ratio of the Heat Input divided by the Heat
Available.
(2)
Process Sources
The Use Factor for process sources is defined as the
ratio of the Maximum Process Weight Per Hour divided
by the Process Weight Per Hour.

Volatile Organic Compounds mean any compound containing carbon
and hydrogen or containing carbon and hydrogen in combination
with any other element which has a vapor pressure of 1.5 pounds
per square inch absolute or greater under actual storage con-
ditions.
CONTROL OF OPEN BURNING AND INCINERATION
a.
Open Burning

No person shall ignite, cause to be ignited, permit to be ignited,
or maintain any open fire except as follows:
(1)
Open fires for the cooking of food for human consumption
on other than commercial premises;
(2)
(3)
Fires for recreational or ceremonial purposes;
Fires to abate a fire hazard, providing the hazard
is so declared by the fire department or fire dis-
trict having jurisdiction;

Fires for prevention or control of disease or pests;
(4)
(5)
Fires for training personnel in the methods of fighting
fires;
(6)
Fires for the disposal of dangerous materials, where
there is no alternate method of disposal and burning
is approved by the Director.
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Rule 3.
(7)
Fires for the disposal of leaves on other than com-
mercial premises;
(8) Open fires specifically approved by the Director.
b.
Incinerator Design and Operation

(1) All new incinerators and all existing incinerators
within 18 months after adopted date of this regulation
shall be multiple-chamber incinerators, provided that
the Director may approve any other type of incincerator
if it is demonstrated such design provides equivalent
performance.
(2) No person shall operate or cause or permit the operation
of any incinerator at any time other than between the
hours of 10 a.m. and 4 p.m. This restriction shall
not apply to incinerators having a refuse-burning capa-
city of five tons per hour or more.
(3)
Incinerators shall be designed and operated in such a
manner as is necessary to prevent the emission of ob-
jectionable odors.

(4) No person shall cause or permit to be emitted into the
open air from any lncinerator, particulate matter in
the exhaust gases to exceed 0.10 pounds per 100 pounds
of refuse charged.
(5) Emission tests shall be conducted at maximum burning
capacity of the incinerator.

(6) The burning capacity of an incinerator shall be the
manufacturer's or designer's guaranteed maximum rate
or such other rate as may be determined by the Director
in accordance with good engineering practices. In
case of conflict, the determination made by the Direc-
tor shall govern.
(7) For the purposes of this regulation, the total of the
capacities of all furnaces within one system shall be
considered as the incinerator capacity.
CONTROL OF PARTICULATE EMISSIONS
a.
Visible Emissions
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b.
(1)
Visible Emissions Restrictions for Stationary Sources
(a)
No person shall discharge into the atmosphere
from any single source of emission whatsoever
any air contaminant of a shade or density equal
to or darker than that designated as No.1 on the
Ringelmann chart or 20 percent opacity.

A person may discharge into the atmosphere from
any single source of emission for a period or
periods aggregating not more than three minutes
in any 60 minutes air contaminants of a shade of
density not darker than that designated as No.3
on the Ringelmann chart or 60 percent opacity.
(b)
(2 )
Visible Emission from Mobile Sources
No person shall operate, or cause to be operated, upon
any street, highway, public place, stream or waterway,
within the State of Alabama any internal combustion
engines of any motor vehicle, boat, tug or other vehicle,
while stationary or moving, which emits from any source
any unreasonable and excessive smoke or objectional
odor.
(3)
Visible Emissions
No person shall cause or permit the discharge of visible
emissions beyond the lot line of the property on which
the emissions originate.
(4)
Uncombined Water
Where the presence of uncombined water is the only
reason for failure of an emission to meet the require-
ments of this regulation (Rule 3.a.), such sections
shall not apply.

Fugitive Dust
(1)
No person shall cause, suffer, allow, or permit any
materials to be handled, transported, or stored; or a
building, its appurtenances, or a road to be used, .
constructed, altered, repaired or demolished without
taking reasonable precautions to prevent particulate
matter from becoming airborne. Such reasonable pre-
cautions shall include, but not be limited to, the
following:
(a)
Use, where possible, of water or chemicals for
control of dust in the demolition of existing
buildings or structures, construction operations,
the grading of roads or the clearing of land;
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(b)
Application of asphalt, oil, water, or suitable
chemicals on dirt roads, materials stock piles,
and other surfaces which can create airborne.
dusts;
(c)
Installation and use of hoods, fans, and fabric
filters to enclose and vent the handling of dusty
materials. Adequate containment methods shall be
employed during sandblasting or other similar
operations.
(2)
c.
When dust, fumes, gases, mist, odorous matter, vapors, or
any combination thereof escape from a building or equip-
ment in such a manner and amount as to cause a nuisance
or to violate any regulation, the Director may order
that the building or equipment in which processing,
handling and storage are done be tightly closed and
ventilated in such a way that all air and gases and air
or gas-borne material leaving the building or equipment
are treated by removal or destruction of air contaminants
before discharge to the open air.

Fuel Burning Equipment
(1)
Class 1 Counties: No person shall cause or permit the
emission of particulate matter from fuel-burning equip-
ment in a Class 1 county in excess of the amount shown
in Table 3-1 for the heat input allocated to such source.
For sources in Class 1 counties, interpolation of the
data in Table 3-1 for heat input values between 10 million
BTU/hr and 250 million BTU/hr shall be accomplished by
the use of the equation:

E = 1. 58H-0. 50
where:
E = Emissions in lb/million BTU
H = Heat Input in millions of BTU/hr
(2)
Class 2 Counties: No person shall cause or permit the
emission of particulate matter from fuel-burning equip-
ment in a Class 2 county in excess of the amount shown
in Table 3-1 for the heat input allocated to such source.
,For sources in Class 2 counties, interpolation of the
data in Table 3-1 for heat input values between 10 million
BTU/hr and 250 million BTU/hr shall be accomplished
by the use of the equation:

E = 3.54H-0.65
where:
E = Emissions in lb/million BTU
H = Heat Input in millions of BTU/hr
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TABLE 3-1 ALLOWABLE PARTICULATE MATTER
EMISSION BASED ON HEAT INPUT
Heat Input Allowable Emission (lb/mi11ion BTU)
(millions of BTU/hr) Class 1 County Class 2 County
1. .5 .8
10. .5 .8
20. .35 .51
40. .25 .33
60. .20 .25
80. . 18 .21
100. . 16 . 18
150. .13 .14
200. .11 . 12
250. . 1 . 1
1,000,000. . 1 . 1
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d.
(3)
For purposes of this regulation (Rule 3.c), the total
heat input from all similar fuel combustion units at
a plant or premises shall be used for determininq the
maximum allowable emission of particulate matter that
passes through a stack or stacks. The allowable emis-
sions on an annual basis shall be calculated by the use
of the equation:
E H OT
AE = 2000 UF
where:
AE = Annual emission rate in tons/year
E = Emission rate as determined by Rule 3.c.
in lb/million BTU
H = Heat input in millions of BTU/hr
OT = Source operating time in hours/year
UF = Use factor.
(4)
No person shall cause or permit the type or quantity
of fuel utilized by a source to be changed in such a
manner that the source particulate matter emissions are
increased. The existing type and quantity of fuels
utilized by a source are defined as those fuels in
use in 1971.
(5)
New sources emitting particulate matter shall be subject
to the regulations for Class 1 Counties, Rule 3.c.(1).
Process Industries - General
(1)
Class 1 Counties: No person shall cause or permit the
emission of particulate matter in anyone hour from
any source in a Class 1 county in excess of the amount
shown in Table 3-2 for the process weight per hour
allocated to such source. For sources in Class 1 coun-
ties, interpolation of the data in Table 3-2 for the
process weight per hour values up to 60,000 lbs/hr shall
be accomplished by use of the equation:

E = 3.59 pO.62 P ~ 30 tons/hr
and interpolation and extrapolation of the data for
process weight per hour values in excess of 60,000
lbs/hr shall be accomplished by use of the equation:

E = 17.31 pO.16 P > 30 tons/hr
where:
E = Emissions in pounds per hour
p = Process weight per hour in tons per hour.
(2 )
Class 2 Counties: No person shall cause or permit the
emission of particulate matter in anyone hour from any
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TABLE 3-2 ALLOWABLE PARTICULATE MATTER EMISSION BASED ON
PROCESS WEIGHT RATE
Process Weight Rate Allowable Emission Rate (1b/hr)
(1 b/hr) C1 ass 1 County Cl ass 2 County
100 0.55 0.55
500 1. 53 1. 61
1 ,000 2.25 2.58
5,000 6.34 7.58
10,000 9.23 12.00
20,000 14.99 19.20
60,000 29.60 40.00
80,000 31.19 42.50
120,000 33.28 46.30
160,000 34.85 49.00
200,000 36.11 51.2
1,000,000 46.72 69.00
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Rule 4.
source in a Class 2 county in excess of the amount shown
in Table 3-2 for the process weight per hour allocated
to such source. For sources in Class 2 counties inter-
polation of the data in Table 3-2 for the process weigh
per hour values up to 60,000 lbs/hr shall be accomplished
by use of the equation:

E = 4. 1 0 pO. 67
P.:S. 30 tons/hr
and interpolation and extrapolation of the data for
process weight per hour values in excess of 60,000
lbs/hr shall be accomplished by use of the equation:

E = 55.0 pO.ll P > 30 tons/hr
E = Emissions in pounds per hour
p = Process weight per hour in tons per hour.

(3) Where the nature of any process or operation or the
design of any equipment is such as to permit more than
one interpretation of this regulation (Rule 3.d), the
interpretation that results in the minimum value for
allowable emission shall apply.
where:
(4)
For purposes of this regulation (Rule 3.d), the total
process weight from all similar process units at a
plant or premises shall be used for determining the
maximum allowable emission of particulate matter that
passes through a stack or stacks. The allowable emis-
sions on an annual basis shall be calculated by the use
of the equation:
AE = E OT
2000 UF
where:
AE = Annual emission rate in tons/year
E = Emission rate as determined by Rule 3.d
in lbs/hr
OT = Source operating time in hours/year
UF = Use factor
(5)
New sources emitting particulate matter shall be subject
to the regulations for Class 1 counties, Rule 3.d.(1).
CONTROL OF SULFUR COMPOUND EMISSIONS
a.
Fuel Combustion
(1)
Class 1 Counties. No person shall cause or permit the
operation of a fuel burning installation in a Class 1
county in such a manner that sulfur oxi des, measured
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b.
as sulfur dioxide, are emitted in excess of 1.0 pound
per million BTU heat input.
(2)
Class 2 Counties. No person shall cause or permit the
operation of a fuel burning installation in a Class 2
county in such a manner that sulfur oxides, measured
as sulfur dioxide, are emitted in excess of 1.5 pounds
per million BTU heat input.

For purposes of this regulation (Rule 4.a), the total
heat input from all similar fuel combustion units at
a plant or premises shall be used for determining the
maximum allowable emission of sulfur dioxide that passes
through a stack or stacks. The allowable emissions on
an annual basis shall be calculated by the use of the
equation:
( 3)
E H OT
AE = 2000 UF
where:
AE = Annual emission rate in tons/year
E = Emission rate as determined by Rule
4.a in 1bs/mi11iQn BTU
H = Heat input in millions of BTU/hr
OT = Source operating time in hours/year
UF = Use factor
(4 )
No person shall cause or permit the type or quantity
of fuel utilized by a source to be changed in such a
manner that the source sulfur dioxide emission is in-
creased. The existing type and quantity of fuels
utilized by a source are defined as those fuels in
use in 1971.
(5 )
New sources emitting sulfur oxides, measured as sulfur
dioxide, shall be subject to the regulations for Class
1 counties, Rule 4.a.(1).
(6)
No person shall cause or permit the emission or com-
bustion of any refinery process gas stream or any
other process gas stream that contains H2S in con-
centrations greater than 150 ppm without removal of
the hydrogen sulfide in excess of this concentration.
Sulfuric Acid Plants
( 1 )
No person shall cause or permit sulfur dioxide tail gas
emissions from sulfuric acid manufacturing plants to
exceed 6.5 lb/ton of 100 percent acid produced. The
tail gas acid mist emissions are not to exceed 0.5 1b/
ton of acid produced and the sulfur trioxide emissions
are not to exceed 0.2 lb/ton of acid produced.
3-13

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Rule 5.
c.
Sulfur Recovery Plants
(1 )
No person shall cause or permit the sulfur oxide emission
from a sulfur recovery plant to exceed 0.01 pounds per
pound of sulfur processed.
CONTROL OF HYDROCARBON EMISSIONS FROM STATIONARY SOURCES
a.
Storage of Volatile Organic Materials
(1)
No person shall place, store, or hold in any stationary
tank reservoir or other container of more than 40,000
gallons capacity any volatile organic compounds unless
such tank, reservoir, or other container is a pressure
tank capable of maintaining working pressures sufficient
at all times to prevent vapor or gas loss to the atmos-
phere or is designed, and equipped with one of the fol-
lowing vapor loss control devices:
(a)
A floating roof, consisting of a pontoon type,
double deck type roof or internal floating cover,
which will rest on the surface of the liquid con-
tents and be equipped with a closure seal or seals
to close the space between the roof edge and tank
wall. This control equipment shall not be permit-
ted if the volatile organic compounds have a vapor
pressure of 11.0 pounds per square inch absolute
(568 mm.Hg) or greater under actual storage con-
ditions. All tank gauging or sampling devices
shall be gas-tight except when tank gauging or
sampling is taking place.

(b) A vapor recovery system, consisting of a vapor
gathering system capable of collecting the volatile
organic compound vapors and gases discharged and
a vapor disposal system capable of processing
such volatile organic vapors and gases so as to
prevent their emission to the atmosphere and with
all tank gauging and sampling devices gas-tight
except when gauging or sampling is taking place.
(c)
Other equipment or means of equal efficiency for
purposes of air pollution control as may be ap-
proved by the Director.

(2) No person shall place, store, or hold in any sta-
tionary storage vessel more than 250-gallon capacity
any volatile organic compound unless such vessel is
equipped with a permanent submerged fill pipe or
is a pressure tank as described in Rule 5.a.(1), or
is fitted with a vapor recovery system as documented
in Rule 5.a.(1)(b).
3-14

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b.
c.
Volatile Organic Materials Loading Facilities
(1)
No person shall load any volatile organic compounds
into any tank, truck or trailer from any loading facility
unless such loading facility is equipped with a vapor
collection and disposal system or its equivalent, pro-
perly installed, in good working order; and in operation.

No person shall load any volatile organic compounds into
any tank, truck or trailer having a capacity in excess
of 200 gallons unless such loading facility is equipped
with a loading arm with a vapor collection adaptor,
pneumatic, hydraulic, or other mechanical means which
forces a vapor-tight seal between the adaptor and the
hatch. A means shall be provided to prevent liquid or-
ganic compounds drainage from the loading device when
it is removed from the hatch of any tank, truck or
trailer. When loading is effected through means other
than hatches, all loading and vapor lines shall be
equipped with fittings which make vapor-tight connections
and which close automatically when disconnected.
(2)
Volatile Organic Compound Water Separation
(1)
No person shall use any compartment of any single or
multiple compartment volatile organic compound water
separation which receives effluent water containing
200 gallons a day or more of any equipment processing,
refining, treating, storing, or handling volatile or-
ganic compounds unless such compartment is equipped
with one of the following vapor loss control devices,
properly installed, in good working order, and in
operation.
(a)
A container having all openings sealed and totally
enclosing the liquid contents. All gauging and
sampling devices shall be gas-tight except when
gauging or sampling is taking place.

A container equipped with a floating roof, con-
sisting of a pontoon type, double deck type roof,
or internal floating cover, which will rest on
the surface of the contents and be equipped with
a closure seal or seals to close the space between
the roof edge and container wall. All gauging and
sampling devices shall be gas-tight except when
gauging or sampling is taking place.
(b)
(c) A container equipped with a vapor recovery system
consisting of a vapor gathering system capable of
collecting the hydrocarbon vapors and gases dis-
charged and a vapor disposal system capable of
processing such hydrocarbon vapors and gases so
3-15

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as to prevent their emission to the atmosphere
and with all container gauging and sampling devices
gas-tight except when gauging or sampling is taking
place.

(d) A container having other equipment of equal ef-
ficiency for purposes of air pollution control as
may be approved by the Director.
d.
Pumps and Compressors

All pumps and compressors handling volatile organic compounds
shall have mechanical seals or other equipment of equal ef-
ficiency for purposes of air pollution control as may be
approved by the Director.
e.
Waste Gas Disposal
(1)
No person shall emit a waste gas stream from any ethylene
producing plant into the atmosphere unless the waste gas
stream is properly burned at 1,300°F for 0.3 seconds
or greater in a direct-flame afterburner equipped with
an indicating pyrometer which is positioned in the working
area at the operator's eye level or an equally effec-
tive catalytic vapor incinerator also with pyrometer.
(2)
f.
No person shall emit hydrocarbon gases to the atmosphere
from a vapor blowdown system unless these gases are
burned by smokeless flares, or an equally effective
control device as approved by the Director.

Organic Solvents
(1) A person shall not discharge more than 3 pounds per
hour or lS pounds per day of organic materials into
the atmosphere from any article, machine, equipment or
other contrivance in which organic solvent comes into
contact with flames or is baked, heated-cured, or heat
polymerized, in the presence of oxygen.

(2) A person shall not discharge more than 40 pounds of
organic material into the atmosphere in anyone day
from any article, machine, equipment, or other contri-
vance used under conditions other than described in Rule
S.f.(l) for employing, applying, evaporating, or drying
any photochemically reactive solvent, as defined in
Rule S.f.(ll), or material containing such solvent,
unless all organic materials discharged from such article,
machine, equipment or other contrivance have been re-
duced to not more than 40 pounds in anyone day.
(3) Any series of articles, machines, equipment, or other
. contrivances designed for processing a continuously
3-16

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moving sheet, web, strip, or wire which is subjected
to any combination of operations described in Rule
5.f.(1) or (2) involving any photochemically reactive
solvent, as defined in Rule 5.f.(11) or material con-
taining such solvent, shall be subject to compliance
with Rule 5.f.(2). Where only nonphotochemically re-
active solvents or material containing only nonphoto-
chemically reactive solvents are employed or applied,
and where any portion or portions of said series of
articles, machines, equipment, or other contrivances
involves operations described in Rule 5.f.(1), said
portions shall be collectively subject to compliance
with Rule 5.f.(1).
(4)
Emissions of organic materials to the atmosphere from
the cleanup with photochemically reactive solvents,
as defined in Rule 5.f.(11), of any article, machine,
equipment, or other contrivance described in Rule
5.f.(1), (2), or (3), shall be included with the other
emissions of organic materials from that article, machines,
equipment, or other contrivance for determining com-
pliance with this rule.
(5)
Emissions of organic materials to the atmosphere as a
result of spontaneously continuing drying of products
for the first 12 hours after their removal from any
article, machine, equipment, or other contrivance des-
cribed in Rule 5.f.(1), (2), or (3), shall be included
with other emissions of organic materials from that
article, machine, equipment, or other contrivance, for
determining compliance with this rule.
(6)
Emissions of organic materials into the atmosphere re-
quired to be controlled by Rule 5.f.(1), (2), (3),
shall be reduced by:
(a)
Incineration, provided that 90 percent or more of
the carbon in the organic material being incinerated
is oxidized to carbon dioxide, or
(b) Adsorption, or

(c) Processing in a manner determined by the Director
to be not less than effective that (a) or (b)
above.
(7) A person incinerating, adsorbing, or otherwise processing
organic materials pursuant to this rule shall provide,
properly install, and maintain in calibration, in good
working order and in operation, devices as specified
in the authority to construct or the permit to operate,
or as specified by the Director, for indicating tempera-
tures, pressures, rates of flow, or other operating
3-17

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(10)
I
(11 )
conditions necessary to determine the degree and ef-
fectiveness of air pollution control.
(8)
Any person using organic solvents or any materials con-
taining organic solvents shall supply the Director,
upon request and in the manner and form prescribed by
him, written evidence of the chemical composition,
physical properties, and amount consumed for each
organic solvent used.
(9 )
The provisions of this rule shall not apply to:
(a)
The manufacture of organic solvents, or the trans-
port or storage of organic solvents or materials
containing organic solvents.
(b)
The use of equipment for which other requirements
are specified by Rule 5.a, b, or c, or which are
exempt from air pollution control requirements
by said rules.
For the purposes of Rule 5.f., organic solvents include
diluents and thinners and are defined as organic materials
which are liquids at standard conditions and which are
used as dissolvers, viscosity reducers, or cleaning
agents.
For the purposes of Rule 5.f., a photochemically re-
active solvent is any solvent with an aggregate of more
than 20 percent of its total volume composed of the
chemical compounds classified below or which exceeds
any of the following individual percentage composition
limitations, referred to the total volume of solvent:
(a)
A combination of hydrocarbons, alcohols, adehydes,
esters, ethers, or ketones having an olefinic or
cyclo-olefinic type of unsaturation: 5 percent;

A combination of aromatic compounds with either
two or more carbon atoms to the molecule except
ethyl benzene: 8 percent;
(b)
(c)
A combination of ethyl benzene, ketones having
branched hydrocarbon structures, trichloroethylene
or toluene: 20 percent.
Whenever any organic solvent or any constitutent of an
organic solvent may be classified from its chemical
structure into more than one of the above groups of
organic compounds, it shall be considered as a member
of the most reactive chemical group, that is, that
group having the least allowable percent of the total
volume of solvents.
3-18

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Rule 6.
Rule 7.
(12 )
For the purposes of Rule 5.f., organic materials are
defined as chemical compounds of carbon excluding carbon
monoxide, carbon dioxide, carbonic acid, etallic car-
bides, etallic carbonates, and ammonium carbonate.
g.
Disposal and Evaporation of Solvents

A person shall not, during anyone day, dispose of a total
of more than 1.5 gallons of any photochemically reactive
solvent, as defined in Rule 5.f.(11), or of any material
containing more than 1.5 gallons of any such photochemically
reactive solvent by any means which will permit the evapora-
tion of such solvent into the atmosphere.
CONTROL OF CARBON MONOXIDE EMISSIONS
a.
No person shall emit the carbon monoxide gases generated
during the operation of a grey iron cupola, blast furnace, or
basic oxygen steel furnace unless they are burned at 1 ,300°F
for 0.3 seconds or greater in a direct flame afterburner or
equivalent device equipped with an indicating pyrometer which
is positioned in the working area at the operator's eye level.

No person shall emit carbon monoxide waste gas stream from
any catalyst regeneration of a petroleum cracking system,
petroleum fluid coker, or other petroleum process into the
atmosphere, unless the waste gas stream is burned at 1,300°F
for 0.3 seconds or greater in a direct-flame afterburner or
boiler equipped with an indicating pyrometer which is positioned
in the ~orking area at the operator's eye level.
b.
CONTROL OF NITROGEN OXIDES EMISSIONS
a.
Combustion Sources
(1)
No person shall cause or permit emissions of nitrogen
oxides from a gas-fired boiler with a capacity of 250
million BTU/hr or more in excess of 0.20 pounds per
million BTU of heat input per hour.

No person shall cause or permit emissions of nitrogen
oxides from an oil-fired boiler with a capacity of
250 million BTU/hr or more in excess of 0.30 pounds
per million BTU of heat input per hour.
(2)
(3)
No person shall cause or permit emission of nitrogen
oxides from a coal-fired boiler with a capacity of
250 million BTU per hour or more in excess of 0.9 pounds
per million BTU of heat input per hour.
3-19

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(4)
For purposes of this regulation (Rule l.a.), the total
heat input from all similar fuel combustion units at
a plant or premises shall be used for determining the
maximum allowable emission of nitrogen oxides that passes
through a stack or stacks. The allowable emissions on
an annual basis shall be calculated by the use of the
equation:
E H OT
AE = 2000 UF
where:
AE = Annual emission rate in tons/year
E = Emission rate as determined by Rule l.a.
in lb/million BTU
H = Heat input in millions of BTU/hr
OT = Source operating time in hours/year
UF = Use factor.
b.
Nitric Acid Manufacture
No person shall cause or permit the emission of nitrogen
oxides calculated as nitrogen dioxide, from nitric acid
manufacturing plants in excess of 5.5 pounds per ton of 100
percent acid produced.
3-20

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4.
ADEQUACY OF CONTROL STRATEGY
This section demonstrates that the proposed control strategy (rules
and regulations set forth in Section 3.) are adequate to restrict pollu-
tant concentrations values to at or below applicable national standards.
The national ambient air quality standards, as defined in the Federal
Register, Vol. 36, No. 21, Saturday, January 30, 1971, are shown in
Table 4-1. In the analysis of this section, the secondary standards for
the Set 1 pollutants are used as the standards to be met.
The priority classifications and justifications, for each region: in
the State, are given in Table 4-2. The detailed rationale for each priority
designation is given in the document Proposed Air Quality Surveillance
System for the State of Alabama.
4.1
GENERAL REQUIREMENTS
The adequacy of the control strategy with respect to reduction in
ambient air quality levels is demonstrated through use of a "rollback"
technique which compares the percent emission reduction achieved (as a
result of the strategy application) to the percent emission reduction
required. The area over which the rollback is applied and the method
of calculation varies depending on the pollutant under consideration.
4.1.1
Set 1 Pollutants (Particulate Matter and Sulfur Oxides)
For the Set 1 pollutants an example region, for each pollutant, is
selected and the control strategy is applied to that region only. For
each pollutant, the adequacy of the strategy with respect to the example
region is then assumed sufficient to insure the adequacy of the strategy
as applied to all other regions in the State.
4-1

-------
~
I
N
TABLE 4- 1 .
I~ATIONAL AMbIENT AIR QUALITY STAIWAROS
POLLUTANTS PRIMARY STANDARDS    SECONDARY STANDARDS
Sulfur 80 ~g/m3 (0.03 ppm) annual 60 ~g/m3 (0.02 ppm) annual arithmetic
Oxi des arithmetic mean  mean   
 365 ~g/m3 (0.14 ppm) maximum 24- 260 ~g/m3 (0.1 ppm) maximum 24-hour
 hour concentration not to be concentration not to be exceeded
 exceeded more than once a more than once a year. 
 year.  1300 ~g/m3 (0.5 ppm) as a maximum
   three-hour concentration not to be
   exceeded more than once a year.
Particulate 75 ~g/m3 annual geometric mean 60 ~g/m3 annual geometric mean
Matter 260 ~g/m3 maximum 24-hour con- 150 ~g/m3 as a maximum 24-hour con-
 centration not to be exceeded centration not to be exceeded
 more than once a year.  more than once a year. 
Carbon 10 mg/m3 (9 ppm) as a maximum eight-hour concentration not to be exceeded
Monoxide more than once a year.      
 40 mg/m3 (35 ppm) as a maximum one-hour concentration not to be exceeded
 more than once a year.      
Photo- 3 a maximum one-hour concentration not to be 
160 ~g/m (0.08 ppm) as 
chemical exceeded more than once a year.     
Oxidants       
Hy d ro 160 ~g/m3 (0.24 ppm) as a maximum three-hour concentration (6 - 9 a.m.)
carbons .not to be exceeded more than once a year.   
Nitrogen 100 ~g/m3 (0.05 ppm) annual arithmetic mean.   
Oxides       

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Regi on

001 Alabama and Tombigbee
Rivers Intrastate
AQCR
OOZ Phenix City, Alabama,
Columbus, Georgia,
Inters ta te AQCR
.fa
I
W
003 East Alabama Intrastate
AQCR
004 Metropolitan Birmingham
Intrastate AQCR
Po 11 utant
PM
SOZ
NOZ
CO
Ox
PM
SOz
NOZ
CO
Ox
PM

SOZ
NOZ
CO
Ox
PM

50Z
NOZ
TABLE 4-2.
REGIONAL CLASSIFICATION JUSTIFICATION
Priority
Class i fication
II
I I I
III
III
III
III
III
III
III
I
III
I I I
I I I
I I I
I
II
I I I
Justification

State Data: Demopolis, 1969 maximum Z4-hour, 161~g/m3
No large point sources
"Urban Place" population does not exceed ZOO,OOO
"Urban Place" population does not exceed 200,000
"Urban Place" population does not exceed 200,000
State Data: Montgomery Fire Sta. #5, 1971 5-mos. geo.
mean 117~g/m3
NASN Data: Montgomery 1970 ann. arith. avg. 6~g/m3
NASN Data: Montgomery 1970 ann. arith. avg. 43~g/m3
"Urban Place" population does not exceed ZOO,OOO
"Urban Place" population does not exceed 200,000

State Data: Gadsden Site 0441, 1971 5-mo. geo. mean 132ug/m3
Calculated max. ground level concentration; annual avg. 6~g/m3
"Urban Place" population does not exceed 200,000
"Urban Place" population does not exceed 200,000
"Urban Place" population does not exceed 200,000
Jefferson County Data: N. Birm. 1970-71 ann. geo. mean 237ug/m3

Calculated max. ground level concentration, 24-hour 358ug/m3

EPA Data: Birmingham downtown arith. avg. 75~g/m3
1971 Summer Study

-------
ReQion
004 (continued)
005 Mobile, Pensacola,
Panama City, Southern
Mississippi AQCR
~
I
~
006 Southeast Alabama
Interstate AQCR
007 Tennessee River Valley
(Ala.) Cumberland Mtns.
(Tenn.) Interstate AQCR
TABLE 4-2.
Priority
Pollutant Classification
CO
Ox
PM

S02
N02
CO
Ox
I
I
III
III
I
PM

S02
N02
CO
Ox
I I
III
III
I I I
I I I

I
I
III
III
III
PM

S02
N02
CO
Ox
(continued)
. .
Jus t ifi ca ti on

EPA Data: Birmingham downtown 1-hr. max. 37 mg/m3
EPA Data: Birmingham downtown 1-hr. max. 250 ~g/m3

Mobile Data: State Docks 1970 9-mo. geo. mean 141~g/m3
State Data: Sa1co 1-hr. max. approx. 1400 ~g/m3
NASN Data: 1970 arith. avg. 71~g/m3
EPA Data: State Docks area one mo. 1-hr. max. 6 mg/m3
EPA Data: State Docks area one mo. 1-hr. max. greater
than 200 ~g/m3
State Data: Dothan 1970-71 ann. geo. mean 76 ~g/m3
No large point sources
"Urban Place" population does not exceed
"Urban Place" population does not exceed
"Urban Place" population does not exceed
200,000
200,000
200,000
State Data: Tuscumbia 1970-71 ann. geo. mean 131 ~g/m3
TVA Data: Widow's Creek vicinity, 1970 1-hr. max approx.
EPA Data: 1971 Summer Study, 86 ~g/m3 arithmetic mean
"Urban Place" population does not exceed 200,000
"Urban Place" population does not exceed 200,000
4000~g/m3
c

-------
This technique is appropriate provided (l) all other regions of the
same priority classification (Priority I) have measured or estimated pollu-
tant levels lower than the example region and (2) the example region is
comprehensive with respect to the source categories found throughout the
State. Both of these requirements are satisfied in the analysis. In
addition, several counties which have high concentration values, but are
outside of the example regions, are tested with respect to the adequacy
of the control strategy.
The required
from the following
Paragraph 420.13:
reduction for each of the Set 1 pollutants is determined
proportional model, described in the Federal Register,
Percent Reduction Required = ~:~ x 100
4-1
where:
A = Existing air quality at the location having
the highest measured or estimated concentration
in the rollback area.

B = Background concentration.

C = Applicable secondary national standard.
From a survey of the existing air quality data throughout the State
(as taken from the Proposed Air Quality Surveillance document) it has
been determined that the particulate matter background concentration is
35 ~g/m3 annual geometric mean (as recorded at the Evergreen Station) and
that the sulfur dioxide background value is zero.
The percent reduction achieved for each rollback area is determined
by the following equation:

Percent Reduction Achieved = [1 - 1975 tm~ss~ons ]100
1971 EmlSSlons
4-2
1975 Emissions
= Total existing emissions (of the
pollutant under consideration) in
the rollback area.

= Total emissions (of the pollutant
under consideration) after implemen-
tation of the control strategy.
where:
1971 Emissions
4-5

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Depending on the distribution of sources within the example region
and the available air quality data, the rollback calculations may be made
on a local, county, or regionwide basis.
4.1.2 Set 2 Pollutants (Carbon Monoxide, Nitrogen Oxides,
Hydrocarbons, Protochemical Oxidants)

For each of the Set 2 pollutants, the control strategy is applied
to each region classified Priority I for that pollutant. Since these
pollutants are primarily automotive, the incorporation of the Federal
Motor Vehicle emission standards into the control strategy application
is required. The procedure for this (outlined in the Federal Register,
Appendix I) is described below.
The percent emission reduction achieved for each of the Set 2 pollu-
tants, resulting from both the federal automotive standards and the Alabama
standards for stationary sources, is determined from the following
equation:
Percent Requi red Achi eved = {1 -[~~ F 0 - (l-F 0) GF ] }100


I)
4-3
where: Subscripts 0 and 1 denote the base year (1971) and future
year (1975 or 1977), respectively.
E = Normalized automotive emissions from Figure 1
(hydrocarbons), or Figure 2 (carbon monoxide),
or Figure 3 (nitrogen oxides) in Appendix I
of the Federal Register.

F = Ratio of the motor vehicle emissions to total
emissions.

GF = Growth factor for stationary sources, defined as
the ratio of the non-automotive emissions for
the future year (1975 or 1977) to the non-
automotive emissions for the base year (1971).
The determination of the percent reduction required is dependent on
the pollutant under consideration. For carbon monoxide and nitrogen oxides,
the percent reduction required is determined through use of Equation 4-1.
4-6

-------
Since photochemical oxidants are a secondary pollutant (i.e., they result
from chemical reaction rather than direct emissions) ,they must be controlled
indirectly. Accordingly, Appendix J of the Federal Register contains a
graph relating the percent hydrocarbon reduction required to reduce the
photochemical oxidant level to the national standard value. In addition,
it is a federal assumption that the degree of total hydrocarbon emission
reduction necessary for attainment and maintenance of the national standard
for photochemical oxidants will also be adequate for attainment of the
national standard for hydrocarbons.
4.2 CONTROL STRATEGY APPLICATION FOR PARTICULATE MATTER
AND SULFUR OXIDES
To determine which of the Priority I regions should be used as
example regions for each pollutant, the emissions summary data from
Appendix A were tabulated in terms of percent contribution from the
various types of sources. These data are given in Table 4-3. From this
table, it is apparent that Regions 004 and 005 provide the widest range
of defined source types for particulates and sulfur oxides, respectively.
4.2.1
Particulate Matter
Figure 4-1 shows the largest current annual geometric mean particulate
matter value recorded at each measuring station in Region 004. Since there
is a good distribution of data, it is meaningful to use each county as a
basic rollback area. On this basis, the application and determination
of the air quality effects of the particulate strategy proceeds as follows.
1.
Calculate the percent reduction achieved
the appropriate emission limitations, as
rules and regulations of Section 3.0, to
the example region. To accomplish this:

a. Using Rule 1., determine the classification of the
county.

b. For each source, calculate the allowable emissions
by acclyinq the rule qoverning that source type.
Table 4-4 illustrates this procedure for St. Clair
County.
from applying
defined by the
each source in
4-7

-------
TABLE 4-3. SOURCE CATEGORY CONTRIBUTIONS
TO PRIORITY I REGIONS
  Power Other Fuel Meta 11 urg i ca 1 Pulp Mineral  Other Transpor- All
 ReQion Plants Combus ti on I ndus try Mills Products Chemicals Processes tati on Other
  Particulates        
 002   14% 57% 9%    5% lb%
 003   15%  59%   21%  5%
 004 27% 13% 24%  24%    1 ~%
~ 005 25% 8% 17%    10%  40%
I    
(X)           
 007 75% 3%     20%  ~%
  Sulfur Ji oxi de        
 005 85% 9%    5%  1% 
 007 94% 5%       1%

-------
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NO.4 METROPOLITIAN BIRMINGHAM
INTRASTATE AIR QUALITY CONTROL
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-------
TABLE 4-4.
EXAMPLE ROLLBACK CALCULATIONS
Emission Inventory - St. Clair County Particulate Matter
     Particulate Emission 
  Use Operating Process Wt. Rate (  tons/year) 
Source ~ Factor Time (hr./yr.) _(lb/hr) 1971 Allowable 1975 Rule
Point 1 Process 1 6000 15633 6 3.8 6 3.d.{l)
Point 2 Process 1 6720 98000 2800 108 108 3.d.(1)
Area     611  611 
Tota 1     3417  725 
Example Allowable Emission Calculations
Point No.1 Allowable Emission
[Rule 3.d.(1) and Rule 3.d.(4)]:
"
= 12.8 pounds/hour
= 38 tons/year
Percent Reduction Calculations

Maximum Concentration = 102 ~g/m3
Background Concentration = 35 ~g/m3
Secondary National Standard = 60 ~g/m3

Percent Reduction Required = [ ~~~ = ~~ ] 100 = 63 percent

Existing Emissions (1971) = 3417 tons/year
Future Emissions (1975) = 725 tons/year

1975 Percent Reduction Achieved = [ 1 - 3~~~ ] 100 = 78 percent

Allowable controlled emission growth = 79 percent - 63 percent
= 16 percent
4-10

-------
2.
c. Determine the county point source emissions after
strategy application by summing the emissions from
all point sources (using the existing or allowable
emission value for each source, whichever is less).
Note that the rules prevent existing sources from.
increastng emissions from their 1971 values.*

d. Sum item c and the existing area source emissions
to obtain the total emissions expected in 1975.

e. Calculate the Percent Reduction Achieved from
Equation 4-2.

Calculate the Percent Reduction Required using the
proportional model, Equation 4-1. Table 4-4 illustrates
this procedure for St. Clair county.
Tables 4-5 and 4-6 summarize the results of the above procedure for
Region 004. Appendix B shows the 1971 and 1975 emissions, summarized by
source category.
The above procedure does not include emission increases due to
industrial and population growth. Since reliable projection factors
are, in general, not available on a county-by-county basis, allowable
emission growth values are determined by comparing the Percent Reduction
Achieved with the Percent Reduction Required. Note that these values are
not industrial growth factors, but are factors reflecting total additional
controlled emissions that, by 1975, would result in air quality levels
equal to the secondary national standard. A summary of allowable growth
values for each county in which the standard is exceeded is given in
Table 4-7. Since all of the values are positive, the secondary national
ambient air quality standard for particulate matter can be achieved in the
example region by the proposed control strategy.
In addition to the example region, there are four counties which have
high particulate matter concentration values (>100 ~g/m3). The control
strategy was applied to each of these counties and, in each case, resulted
in'a positive allowable emission growth value. Table 4-8 summarizes the
data resulting from these calculations.
*For a source to increase emissions, a permit to modify must be issued.
Thus, if such increased emissions would degrade the air quality excessive-
ly, the permit would be denied.
4-11

-------
  TA~LE 4T'5. PARTICULATE MATTER CONTROL STRATEGY SUMMARY - 
    REGION 004    
   Fuel Combustion Industrial Process Solid Waste
 County Existing Strategy Existing Strategy Existing Strategy
  CLASS 1 COUNTI ES     
 Jefferson 12,314 569 138,965 4,410 34 0
 Tuscaloosa 7,596 60 12,331 290 0 0
 St. Clair 0 0 2,806 114 0 0
 Shelby 17,820 4,010 26,955 753 0 0
 Walker 56,827 3,230 0 0 0 0
.;:.         
I         
.......         
N  CLASS 2 COUNTIES     
 Bibb 999 150 1,065 102 389 28
 Blount 0 0 0 0 0 0
 Ch i1 ton 0 0 375 50 103 24
 Fayette 004 004 6,269 205 057 17
 Greene 3,082 3,082 0 0 007 5
 Hale 0 0 0 0 110 56
 Lamar 0 0 0 0 067 23
 Pickens 236 043 0 0 336 158
 Sumter 167 054 137 107 378 32

-------
.J:a
I
--'
W
TABLE 4-6.
PARTICULATE MATTER ROLLBACK SUMMARY - REGION 004
   Maximum Annual     1971 TOTAL EMISSIONS (tons/year)
   Concentration TOTAL POINT SOURCE EMISSIONS (tons/year) Area
    Ilg/m3 Source 1971 1975 
County Population (% Reduction Required) (% Total Emissions) (% Reduction Achieved) Emissions  (% Reduction Achieved)
 CLASS 1 COUNTI ES          
Jefferson 639,600 237 (87.6%) 151,321 (93.5%) 4,979 (96.7%) 10,485 161,806 15,464 (90.4S)
Tuscaloosa 111 ,000 77 (40.5%) 19,867 (91.3%) 350 (98.2%) 1,898 21,765 2,248 (89.7S)
St. Clair 27,000 102 (62.7%) 2,806 (82.1%) 114 (94.7%) 611 3,417 725 (78.7%)
Shelby  36,200 74 (35.9%) 44,775 (98.4%) 4,463 (90.0%) 715 45,490 5,178 (88.6%)
Walker  54,400 92 ( 56. 1 %) 56,827 (98.0%) 3,230 (94.3%) 1,165 57,992 4,395 (92.4%)
 CLASS 2 COUNTI ES          
Bibb  13 ,700 --- -- 2,453 (85.5%) 280 (88.6%) 416 2,869 696 (75.7S)
Blount  26,300 47 -- 0 (0.0%) --- -- 686 686 686 (0.0%)
Ch il ton 24,400 --- -- 553 (61.3%) 82 (85.2%) 349 902 431 (52.2S)
Fayette 15,700 --- -- 6,330 (93.2%) 226 (96.4%) 464 6,794 690 (89.8%)
Greene  10,300 --- -- 3,414 (92.9%) 3,114 (8.8%) 261 3,675 3,375 (8.2%)
Hale  15,500 --- -- 110 (23.6%) 56 (49.1%) 357 467 413 (11.6%)
Lamar  13,900 --- -- 67 (11. 3%) 23 (65.7%) 526 593 549 (7.4%)
Pickens 19,800 --- -- 572 (50.2%) 201 (64.9%) 568 1,140 769 (32.5S)
Sumter  15,900 --- -- 682 (61.2%) 193 (71. 7%) 432 1,114 625 (43.9%)

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Table 4-7. ALLOWABLE CONTROL EMISSION
GROWTH - REGION 004 COUNTIES
County
Jefferson
Tuscaloosa
Allowable Growth
(Percent)-
St. Clair
Shelby
Walker
2.8
49.2
15.0
52.7
36.3
4-14

-------
TABLE 4-8.
PARTICULATE MATTER ROLLBACK SUMMARY -
HIGH CONCENTRATION COUNTIES
~
I
-'
U'1
  Maximllll Annual     1971 TOTAL EMISSIONS (tons/year)
  Concentra~i on     Area
   \lglm TOTAL POINT SOURCE EMISSIONS (tons/year) Source 1971 1975
County Population (I Reduction Required) (% Total Emi ss ions) (% Reduction Achieved) Emi ss ions  (% Reduction Achieved)
Montgomery 167.790 117 (69%) 13.937 (86%) 1 ,012 (93S) 2.265 16.202 3,278 ( 111% )
(002)           
Mobi1e 317.308 141 (76%) 63,945 (72%) 6,373 (90S) 5,312 69,257 11,685 (83S)
(005)           
Colbert 49.632 131 (74%) 214,823 (991) 9,811 (95S) 1,306 216,129 11,117 (95S)
(007)           
Jackson 39.202 148 (7m) 85.620 (99%) 14.697 (83%) 847 86,467 15,544 (82%)
(007)           

-------
4.2.2 Sulfur Oxides
Using the techniques described in the previous sections, the sulfur
oxides control strategy was applied to Region 005. These results are
summarized in Tables 4-9 and 4-10. Appendix B gives the emission reduc-
tions by major source category.
Figure 4-2 shows the existing air quality measured data. Since the
maximum measured concentration value is in the form of a one-hour maximum
concentration, it is converted to an annual arithmetic average value
for comparison with the national standard. This was accomplished via the
Larsen technique* which assumes the pollutants are log-normally distributed.
Using the geometric standard deviation value from the NASN Station in
Mobile (2.64), the annual arithmetic average becomes 100 ~g/m3.
As in the case of particulates, sulfur dioxide strategy
a positive growth value (14 percent) and, therefore, satisfies
secondary national standard for sulfur oxides.
yields
the
*Larsen, R. E., "A New Mathematical Model of Air Pollutant Concentration
Averaging Time and Frequency," Journal of the Air Pollution Control
Association, Vol. 19, No.1, January 1969.
4-16

-------
TABLE 4-9. SULFUR OXIDES CONTROL STRATEGY SUMMARY - REGION 005
  Fuel Combustion Industrial Process .SolidWaste
 County 1971 1975 1971 1975 1971 1975
 Class 1 County     
 Mobile 183,251 75,502 9,828 5,057 005 0
~       
I Class 2 Counties     
~     
~       
 Baldwin 003 003 006 006 0 0
 Escambia 194 194 169 169 0 0

-------
-'='"
I
......
en
-."
TABLE 4-10.
SULFUR OXIDES ROLLBACK SUMMARY - REGION 005
  Maximum Annual      1971 TOTAL EMISSIONS (tons/year)
  Concentration      - Area
   \.I9/m3 TOTAL POINT SOURCE EMISSIONS (tons/year) Source 1971 1975 
County Population ('I Reduction Required) ('I Total Emissions)  ('I Reduction Achieved) Emissions  ('I Reduction Achieved)
CLASS 1 COUNTY           
Mobile 317,308 100 (40.0%) 193,088 (97.7'1)  87,301 (54.8%) 4,620 197,708 91,921 (53.3%)
CLASS 2 COUNTIES           
Ba 1dwi n 59,382 --- -- 009 11.6%)  009 (0.0%) 552 561 561 (0.0'1)
 I
Escambia 34,906 --- -- 363 (54.8~)  363 (0.0%) 299 662 662 (0.0%)

-------
NO.6 SOUTHEAST ALABAMA
INTRASTATE AIR QUALITY
CONTROL REGION
Castleberry 0
o
Sanford
.
Opp
Enterpri~ Da
BULLOCK
Jlurtsoorn
GlOIIGE
~.....,u HIli OWN DES
. 0
Maynevme
o
Sno~..dJ'un
NO.1 ALABAMA & TOMBIGEE
RIVERS INTRASTATE AIR
QUALITY CONTROL REGION
L~tonatcheeo
o
Union Sprin~s
.Oft!fVi'1
o
8~g~')
Fort Oeposit8
C.1111()~:n Ramer
o 0 0

~~~~: 0 Lapi~~radY
Ig a omeO PIKE
CRENSHAW
Bradleyton 0

PetreyO
Troy
a
-wA;;;; GilbertO"N'i? 0
. Womac.k
jJ"IIIH;f..rO Hill
Si13~
OLi.i..:
WASHINGTON
Pine
Apple
McWilliams 0 R~lhVen

MONROE ~redenhurgh °Naaawah
UTLER
C Monterey
oForest Home
a
Creenville
Yar~
-
o 0
P1i~~e °Mexia

FriSCoC:y OE..c I
I
Oc;oCldwa y
o River Fails
Elba
o
Nt:w 8ro..:kton8
r-1iJlryO
o
Frankvillc
GiEiiii
~
I
.....
I.D
o McCullough
o Kmston
GoENEYA
o 0 Bellwood
CoHee
Springs Hmford8
Malvern
o
Brewton .
a .E. Brew.on
Perdido
oPoflard
8Flomaton
OvVrnq
Lockhart Sa:son
o Hacoda
.FJorala
.
Slocomb
Geneva 0
01
o
Stor;l.lon
Chunchuia 0 Qhis
c:,,:'".~ 1400" a
,- --- .~ Bay
...0---:' .,... -alilntl Minette
Wilmer ChIckasaw. 8r
.. ~. oStaplcton
.iAciiSOii \. -~ Prichar

. ~-j ~ 0111 ----;O:('~If.."
: ,Daphn~ - ~ .
'.""Th~oreo Mpnlros.-.o Sjlv~~~ Robftlsdale
PIrVlnut'.;1 I .F'~rhoPr.
0r,!o,! h'o/L_\ Poi~tClea B~~~~~: oSummerdale
~you I~ Halri' : I '. Elberta lillia
. 0 fuley 0 0
- OCoden. I ~. Perdido Beach
.. J SDfln~- 0
" I' .. I Bon
i ~autin Island

~~ '-,
..-' SANTA
,
JOCAlOOSA
I FLORIDA I
ALTON
IHOUIES
I
HR.
MAX.
NO.5 MOBILE (ALA.) PENSACOLA-
SOUTHERN MISSISSIPPI INTERSTATE
AIR QUALITY CONTROL REGION

p~
PANAMA CITY
(FLA)
-~
uH 5I1cr':5
FI GU RE 4- 2 .
ANNUAL ARITHMETIC MEAN SULFUR DIOXIDE CONCENTRATION
(~g/m3)
RI:GION 005

-------
4.3 CONTROL STRATEGY APPLICATION FOR CARBON MONOXIDE, NITROGEN
OXIDES, HYDROCARBONS AND PHOTOCHEMICAL OXIDANTS
From Table 4-2, the pollutants designated Priority I are: carbon
monoxide in Region 004 and hydrocarbons (and photochemical oxidants) in
Regions 004 and 005. The control strategy is applied to each of these
pollutant-region combinations.
Since all of the Set 2 pollutants are reactive, it is assumed that there
is no background value for any of these pollutants.
4.3. 1 Carbon Monoxide
The existing air quality data summary for Region 004 indicates a
maximum eight-hour carbon monoxide concentration of 16 mg/m3. Using this
value together with the national standard of 10 mg/m3 in 'Equation 4-1
gives:
Percent Reduction Required = 1~610 100 = 38 percent
4-4
From the emission inventory data (Appendix A), the total carbon monoxide
emissions for Region 004 are 828,648 tons/year;163,758 tons/year being
attributable to point sources and 664,890 tons/year to area sources.
Automotive emissions are responsible for94.72 percent of the area source
emissions.
To determi~ the pet~ent emission reduction achieved due to application
of both the Federal Vehicle Control Program and the control strategy, the
following values are used in Equation 4-3.
Automotive Emission. Parameters
. .
From Figure 2, Appendix I of the Federal Register, the normalized
vehicle emission rates for 1971 and 1975 are:
Basp. Year 1971:
Future Year 1975:
E = .92
o
El = .70
and the ratio of the motor vehicle emissions to the total emissions is
629772
Fo = 828649 = .76
4-20

-------
Point Source Emission Parameters
To determine the growth
monoxide emissions expected in
strategy) must be determined.
factor (GF)) the total non-automotive carbon

1975 (after implementation of the control
The total point source carbon monoxide emissions for Region 004 amount
to 163,759 tons/year. The distribution of these emissions with respect to
fuel type is shown in Appendix A and with respect to source type is shown
in Appendix B. Application of the control strategy (Rules 2. and 6.) result
in a point source carbon monoxide emission reduction of 34,574 tons/year.
The distribution of this' reduction with respect to source types is shown
in Appendix B. Using this reduction)
1971 Non-automotive Emissions = (Total Emissions) (l-Fo)
= (828649)(.24)=198876
1975 Non-automotive Emissions = (1971 Non-automotive Emissions) -
(Emission ~eduction)
= 198876 - 134574 = 64302
and the growth factor becomes
GF - 64302 - 32
- 198876 -.
Substitution of these values into Equation 4-3 yields

1975 Percent Reduction Achieved = 11-[.70 .76+ (1-.76).32]l 100
.92 ~
= 34 percent 4-5
Comparison of Equations 4-4 and 4-5 shows that the 1975 percent
reduction achieved is less than the percent reduction required. Therefore,
the carbon monoxide standard cannot be met by 1975. Since stationary source
control has been applied, either a two-year extension to comply must be
obtained or transportation controls must be implemented. As demonstrated
below, the standards can be met by 1977; therefore) no transportation
controls are proposed.
4-21

-------
To demonstrate that the standard can be met within a two-year exten-
sion period, the following parameters are used:
1.
From Appendix I of the Federal Register, the 1977 normalized
automotive emission rate is El = .52.

All other parameters remain the same since no additional
controls are proposed.
2.
With this change, Equation 4-3 yields
1977 Percent Reduction Achieved = ~l-[ :~~ .76+(1-.76)
= 49 percent
.32J~ 100
4-6
Comparison of Equations 4-4 and 4-6 shows that the
(38 percent) is exceeded in 1977 by 11 percent. Thus, the
for carbon monoxide can be met by 1977 using the proposed
and the Federal Motor Vehicle Standards.
required reduction
national standard
control strategy
The maximum allowable controlled emission growth (as defined in
Section 4.2.1) of non-automotive sources can be determined by using
Equation 4-6 to find the new (maximum allowable) growth factor GF* such
that the 1977 Percent Reduction Achieved just equals the Percent Reduction
Required. Setting Equation 4-6 equal to 38 percent and rearranging yields:
.55
GF* = }:-.38- -:92 .76 = .69
( 1 - .76)
Then,
Allowable Emission Growth = (GF* - 6F)100 = 37 percent
4-22

-------
4.3.2 Hydrocarbons and Photochemical Oxidants
Region 004
The air quality data summary indicates that a value of 250 ~g/m3 is
the largest one-hour maximum photochemical oxidant measurement in the
region. Using Figure 1, Appendix J of the Federal Register, the hydrocarbon
emission reduction required to satisfy both the hydrocarbon and photo-
chemical oxidants standards is:
Percent Reduction Required = 37 percent
4-7
To determine the percent reduction achieved due to application of
the Federal Vehicle Control program and the control strategy, the following
values are used in Equation 4-3:
From Figure 1, Appendix I of the Federal Register

Base Year 1971: EO = .89
Future Year 1975: E1 = .55
From the emission inventory (Appendix A), there is a total of
148,533 tons/year of hydrocarbons emi tted;l 03,973 of whi ch are
attributable to automobiles. Thus,
F = 103973
o 148533
= .70
Of the 44,560 tons/year emitted from non-automotive sources, 5,870
tons/year can be eliminated by controlling evaporation losses from fuel
storage tanks and 46 tons/year can be eliminated by prohibiting open
burning. Thus, the growth factor becomes:
GF = 38644 = 87
44560 .
Using these values in Equation 4-3 yields
1975 Percent Reduction Achieved = /1 - [:~~
= 31 percent
.70+(1-.70 ).87J} 100
4-8
4-23

-------
Appendix B shows the emission reduction with respect to source type. Since
the percent reduction achieved is less than that required, the standard
cannot be met by 1975. To investigate the possibilities by 1977, the 1977
normalized emission rate of El = .39 from Figure 1, Appendix I, is used,
together with the above parameters, to produce:
1977 Percent Reduction Achieved = {l - c: ~~ .70 + (1-.70) .87]} 100
= 43 percent 4-9
Comparison of Equations 4-7 and 4-9 shows that the national standard
for photochemical oxidants and hydrocarbons can be met by 1977.
The maximum allowable controlled emission growth of non-automotive
sources, as determined by equating Equation 4-9 to Equation 4-8 and re-
arranging, is 21 percent.
Regi on 005

The measured air quality data for Region 005 indicates that the
maximum one-hour photochemical oxidant concentration exceeds 200 ~g/m3.
The exact value will be determined from the data obtained during the 1971
summer study conducted by EPA. A preliminary review of these data
indicates a maximum concentration of 265 ~g/m3. Using this value with
Figure 1, Appendix J of the Federal Register, yields:
Percent Reduction Requi red = 41 percent
4-10
Following the procedure used in Region 004 (above), the Percent Reduction
Achieved parameters become:
Base Year 1971:

Future Year 1975:
EO = . 89
El = .55
From the emissions inventory (Appendix A), Region 005 has a total of 56,609
tons/year of hydrocarbons, 60 percent of whi ch 33,965 tons/year) is
automotive. Therefore:
4-24

-------
F = 33965 = .60
o 56609
Of the 22,644 tons/year non-automotive hydrocarbon emissions emitted, 6,894
tons/year can be eliminated from storage facilities and 109 tons/year can
be eliminated by prohibiting open burning (Appendix B). Thus:
15641
GF = 22644 = .69
Using these values in Equation 4-3 yields
1975 Percent Reducti on Ach'i eved =
{l - [:~~ .6 + (1-.6)
= 34 percent
.69] J 100
4-11
Since the percent reduction achieved is less than that required, the
standard cannot be met by 1975. To investigate the possibilities by 1977,
the 1977 normalized emission rate of E1 = .39 is used with the above
parameter to produce:
1977 Percent Reduction Achieved = 46 percent
4-12
which exceeds the required reduction by 5 percent. The allowable emission
growth for non-automotive sources in this case is 11 percent.
4-25

-------
4.4 ANALYSIS SUMMARY AND CONCLUSIONS
The analysis of this section has demonstrated that the secondary national
ambient air quality standards for particulate matter and sulfur oxides can be
met in 1975 and for carbon monoxide and hydrocarbons by 1977. The standard
for nitrogen oxides is now being met throughout the State and with the
controls proposed will not exceed the standard.
Table 4-11 summarizes the Percent Reduction Required vs. Percent Reduction
Achieved and the Allowable Emission Growth values obtained for the example
regions.
Since the allowable emission growth values are with respect to controlled
emissions (i.e., after compliance with the rules and regulations of Section 3.),
the allowable industrial growth, in terms of production capacity, will be
greater than the figures shown in Table 4-11. With the exception of Jefferson
County in Region 004, increased industrial activity will not result in an
air quality problem. In Jefferson County, however, land use measures will
"have to be instituted which will restrict industrial growth in certain
areas. This will be accomplished through use of the permit system (see
Proposed Permit System for the State of Alabama document) which allows
for a detailed environmental impact study of each proposed source.
4-26

-------
TABLE 4-11. EMISSION REDUCTION SUMMARY
+=-
I
N
.......
     Emission Reduction (%) Maximum Allowable
Region County Requi red I Ach ieved Emission Growth (%)
 PARTICULATE'MATTER (1975)  
004 Jefferson   87.6 90.4 2.8
 Tuscaloosa 40.5 89.7 49.2
 St. Clair   62.7 78.7 16.0
 Shelby   35.9 88.6 52.7
 W a 1 ke r   56. 1 92.4 36.3
 SULFUR OXIDES (1975)  
005 Mobil e   40.0 53.5 13.5
 CARBON MaN OX I DE (1977)  
004 All   38.0 49.0 37.0*
 HYDROCARBONS (1977)   
004 All   37.0 43.0 21.0*
005 All   41.0  11.0*
*non-automotive sources only.

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APPENDICES

-------
APPENDIX A
EXISTING EMISSIONS
This appendix presents a summary of the existing emissions, as of
1971, for each political jurisdiction (P.J.) within the State of Alabama.
For the purposes of this inventory, each county in the State has been
designated a political jurisdiction and is assigned the P.J. number shown
in Table A-l. The emission inventory data are presented separately for
point and area sources.
Point Sources
The point source data* are divided in to the three major categories:
Process, fuel Combustion, and Solid Waste. The Fuel Combustion category
is divided between Power Plant emissions and Industrial-Commercial-Insti-
tutional emissions. For fuels not listed under Power Plant, an entry was
made as Other, these being primarily for coke. For entries made in the
Indus tri a 1- Commerci a 1- Ins ti tuti ona 1 category, "Other" refers predomi nant ly
to the following four types of emissions:
. Airfield landings and take-offs
. Burning of black liquor
. Burning of process gases
. Burning of wood as fuel in boilers
"Other" entries made in the Solid Waste category refer to on-site incinerators
(Process Code 06, SIC Code 4953).
*If there are no point sources within a political jurisdiction, the
data form is omitted for that political jurisdiction.
A-l

-------
Area Sources
The format definitions for the area sources data is given in Table
A-2. The Region Number and Political Jurisdiction entries have the same
meaning as described for point sources. The Source Number and Coordinate
entries are not valid and should be ignored.
A-2

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TABLE A-1. COUNTY DESIGNATIONS BY POLITICAL JURISDICTION
REGION COUNTY POLITICAL JURISDICTION
001 Choctaw 1
 Clarke 2
 Conecuh 3
 Da 11 as 4
 Marengo 5
 Monroe 6
 Perry 7
 Washington 8
 Wilcox 9
002 Autauga 1
 Bu 11 ock 2
 Butler 3
 Crenshaw 4
 Elmore 5
 Lee 6
 Lowndes 7
 Macon 8
 Montgomery 9
 Pike 10
 Russell 11
003 Calhoun 1
 Chambers 2
 Cherokee 3
 Clay 4
 C1eburne 5
 Coosa 6
 Etowah 7
 Randolph 8
 Ta.ll adega 9
 Tallapoosa 10
004 Bibb 1
 Blount 2
 Ch i1 ton 3
 Fayette 4
 Greene 5
 Hale 6
 Jefferson 7
 Lamar 8
 Pickens 9
 Saint Clair 10
 Shelby 11
 Sumter 12
 Tuscaloosa 13
A-3

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TABLE A-l. COUNTY DESIGNATIONS BY POLITICAL JURISDICTION (Cont'd)
REGION
005
COUNTY
POLITICAL JURISDICTION

1
2
3
Baldwin
Escambia
Mobile
006
Barbour
Coffee
Covington
Dale
Geneva
Henry
Houston
1
2
3
4
5
6
7
1
2
3
4
5
6
7
8
9
10
11
12
13
007
Colbert
Cullman
De Ka 1 b
Franklin
Jackson
Lauderdale
Lawrence
Limestone
Madison
Marion
Marsha 11
Morgan
Winston
A-4

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)::-
I
U1
DOMESTIC
COAL
OIL
NATL. GAS
COMM&IND
COAL
RES.OIL
DIST.OIL
NATL.GAS
NON-PT
COAL
RES.OIL
DIST. OIL
NATL.GAS
WOOD
OPEN BRN
INCINER
SOLVENT
VESSELS
RAILRD
DIESEL
OTHER
AS 25MPH
AS 45MPH
OTHER
ADDPOL
1.
2.
3. thru 15.
TABLE A-2. AREA SOURCE EMISSIONS FORMAT
(Indicates next 3 fuels were used in reidences)
(Entries of coal burned in residences)
(Entries of oil burned in residences)
(Entries of gas burned in residences)
(Indicates next 4 fuels were used commercially and by institutions)
(Entries for coal burned commercially and by institutions)
(Entries for residual oil burned commercially and by institutions)
(Entries for distillate oil burned commercially and by institutions)
(Entries for natural gas burned commercially and by institutions)
(Indicates next 4 fuels were used by industry not located through questionaires)
(Entries for coal burned by industries not included as point sources)
(Entries for residual oil burned by industries not included as point sources)
(Entries for distillate oil burned by industries not included as point sources)
(Entries for natural gas burned by industries not included as point sources)
(Entries for LP gas - this field was not used for wood burned entries)
(Entries for open burning incineration)
(Entries for incineration other than open burning)
(Entries for petroleum storage and handling)
(Entries for both harbor and river shipping)
(Entries for diesel fuel burned by railroads)
(Entries for diesel fuel burned by motor vehicles)
. {Entries for wood burned in residences}
(Entries for gasoline burned in motor vehicles at an average speed of 25 mph)
{Entries for gasoline burned in motor vehicles at an average speed of 45 mph}
(Emissions due to wild fires and prescribed burning)
{Heading for additional pollutants (ADDPOL) listed below}
(Emissions for gasoline motor vehicles, when AS 25MPH & AS 45MPH not used, above)
{Emissions for vessels, when VESSELS line was not used up above.
(These were not used)

-------
tKUU~" I"ViM~IIY
----.-. .
-_...
...---...
._----_.
-. ---_u_----
a.G!~" I ~.11
'111.11 "aL Jual SUI KilO" I 1
._---
I"'K'lTlYlllliOU"YMI ItOlI/YIII III""YKI 1"~all/Y.II"u.L.UII.!'.ltUUIIiMU ,.....-
,oOCESS I J80J.1 HU.. 11I'''v.1 ....1 ...,1 I
fUH CLKLUSI 1-..U/J.I-~.)2.1._1J.I_...1-1HJ.1 ____I
'Ollli'" PL'''' I \1.1 v.1 ~.I \0.1 ~.I I
~lrUKINUIiS waLl c.1 1..1 11.1 --. ~.I .--.- ..;.1 ---.'n- U.._IITONS/YlAPI 1___..-
UItIII...AL OIL I ....1 11.1 ~.I v.1 -. ".1.... U. ...111000 'Al/YPI 1.-.-.----
o IH ILL AI e OIL I c.1 c.1 ...01 ,;.1 J.I ~.. I 1101.0 ~AL/U I I
UIU"AL..as .1- --.. ....1_.. .~.I-o.l- J.I_LoI_->l._lI1UI:~"'U~lItl\lI
OIH'O I C.I 0.1 c.1 ".1 ...,1 I
"";,C",'.oI~H. I un.1 'U2.1 17.1 --.. ....1 I'~J.I . ..- ,_..__.-
dITU"I~OuS LOALI 14H.1 4H..1 711.1 21.1 Ub.1.1 140000. IIrONS/YEAIII I
a~I"""'IIC cuaLI ~.I 0.1 11.1.-_-. ".1 - .n' 0.1 -...... 1I..._IIII'''S/nul ,____._-
A[SII;U"L OIL I 11.1 U~I.I 1.1 IJ.I lUoI '''0. IIluOIi !.ALlUI I
UIHlua11. OIL 1-.-... ...I--._..~.I...--u.I_-..u.l_n".I__0~1I10'0 GALIYRI..I
hAlUMAL '''i I c.1 0.1 0.1 1..1 11.1 U. IlIlItCbCUH/u/l
OlliLA I ~...I '.1 ..1 ..1... -. ...Jo.1 ..1._.___-----
iOLID ."SH I 14101 0.1 400.1 7v.1 21.1 I
.UIIC" INCI"Ea I 11.1 0.1 0.1 i,,1 ....-.. 1101 - u.' IITCNS/YEOAI I --.,--,.,--"
C'I~ ~ua"IN' I 110.1 11.1 '10.1 11.1 1e.1 IHOO. IITIINHYUAI I
UN-UTI I"tl'" I.. ...... 0.1. ..-..- 0.1.--.--.. 0.1- ..1-.- ".L_..O..._.IITON~/nAKI_1
GlII'K I llol C.I ]'0.1 ]101 1.1 .n. IITON~"E"I I
'UIAL L.IUION' I ,.116.1 6411l.1 11471.. II~.I ISH.. 1
- -... .,. -... ...- .-. . .~ .-. -- "..-
,...-- - -...--. -..-- ,,-.... .,.-..--..----. ----
....--.. .._.
"-"-'."'...-..." --.--.---..-
....LKUUUH INVlldURY
... ... _.u.......
.-.-.,.---
AtG! CN 1.:10 I
'OLl' ICU Juauou" I~NI l .
..-..-. ..n, ...
IUKrITIYMII,r.llrt'KI "OlrtYIII III"rlYKI INOIIIIHII~UtL. O~ RtfuUluRln ...1___.__-
'ROCBS I 8)0.1 41~.1 1]0.1 .' ~.I' ';.1 I
__IWtL CUII.uST .. _._-I-!OH.I~b.1-11.~J~.I---1Q.l~.1. .__._._1
PC.tM'LONI I ".1 C.I 0.1 c.1 ...1 1
dIIUIIINOU~ COUI - 0.1 0.1.-.--_.-. ....1.--- 0.1___.- c.I_.O._.lITONS/'tAAI ...1.__-
O~I"UCI1t CUAll 0.1 0.1 0.1 ..1 ';.1 U. IITC~S/YtAkI I
A(SI"UAL CIL I ..1....-..-- .0.1 -___.0.1____. 0.1..____. 0.1 -___....0._11100.:1 "Ol/YRI 1 -.-
IIISTILUh OIL I 0.1 0.1 c.1 0.1 u.1 O. 1110.111 "l/YAI I
NAlu....t.."~ -..-I_D.I.-.o.I-.u.I_.c.I_..u.l II. IU~t"~.c.uHl.r"U
O''''M I 0.1 0.1 0.1 u.1 C.I I
INO.C...M..INS!. I. 10J~.1 ..-. 30.1.--. _n.I_U~.L-l0n.1 - . ....1___-
dllUKINOUS COOLI 0.1 0.1 0.1 0.1 Col O. IIrC~HYf'" I
a~IIIUClTt tOALI. ...1 ... ... ...1...._..... 0.1- u.1 _...O.I__u._.IIIU"S/YtaKI .1.._------
RtSIWOL OIL I 0.1 0.1 0.1 0.1 ~.I u. 1II00u CAL/ya, I
U15' IlLAH U~I- u.l- 0.1_.0.1- Ii. '_._0. 1_...II.--1110QIi..C.IL/.YP.I...I
NATUUl IOU I Zb.1 1.1 1.1 n.1 .,1.1 H4J. III0t06C.llfT/U/I
OllilA I 100~.1 H.I 70.1. TO.I )5~.1 1.._-..--.
50LI0 .OSIE 1 ....1 /.1 du.1 J...I '..1 I
"U"..." INI.I"la I u.1 0.1 0.1 u.1 u.1 r.. IIIONS/nA., I.
OPl" 8uaNINIi I 11.1 0.1 '.1 ...1 u.1 u. ICIIoNHnlMI I
ON-SITI. IN';'IN. 1.-...- . 0.1......- .0.1 u.I-- 0.1-_. O.L-._..~.-_II'UNSlY~aAI.__I__.------
Ol"LA I HI.I /.1 4)...1 It.h.1 '8.1 16-.4. IIIUNi/YUMI I
'OTAL t.IUIO"' 1 lIlII.1 "4.1 U19.1 "~.I 10nol I
--------------------------------~------------~~.
kKIUIU" INVE"IORY
.-.---. -.-
--_u_---.-.-
._._.
at' II.'HOO I
'OI.17"OL JUKUOU"IUNI J...
----.--.-- .
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l,aUITlYMIISOII"UI 1C017/YRI I"ClrtHI INOAl"HllfutLORJlEfUUlu~lI~ . _I.
'AeCHS I ll.1 0.1 .J.I ~.I J.I 1
'Uti. CC"~~ST u.. .-I~,.I--O.I~~-L-.~.I_B.I I
'0.[0 'L"'" I 0.1 0.1 0.1 ...1 J.I I
BITU"I~CIIS c~ul 0.1 .......n 0.1 ..-- 0.1._- 0.1.-- 1..I._O._IIICNl/flAkI ..I..
ONI,,"".II< C"ALI 0.1 0.1 0.1 11.1 0.1 II. IITONSIY.... I
Rl~IDuOL OIL 1 - ....-.. ...1..-.- 0.1..--__0.1--. 0.1. o.I.___O,,--IIIOIIJ O"L/'~I.I.
DISTlUOn 011. I 0.1 0.1 0.1 11.1 0.1 I.. 1110110 LAL/YOI 1
NAhJkAL-'-A.1.__-L-.O.1 it.1 a..L--...o.1 0.1 .0.. tllur£I6C.ut....JJYRII
0,",0 I '.1 0.1 0.1 ~.I 0.1 I
1.~.CO.".INsr. 1 -. -- In.1 0.1.- ._.1,.1.-1~.1--....".1__...-, -.-1_-..--
.ITU"I"OUi CIIALI '.1 0.1 0.1 11.1 0.1 O. IITO~S/Y"OI I
...'"UCllk tu...1 0.1. . --.. 0.1. ._.0.1- 1I.1____..O.I._._o._IITGRI/Y'".' . - L---
AOIOUAL OIL I 0.1 0.1 C.I ...1 0.1 O. It lOuD COL/YKI I
OIS7ILLa'" OIL-I- 0.1_0.1-0.1 ~.I_..II.I J. IIl~~~...~AL/_Y~I.J
NATUUL '" 1 0.1 0.1 0.1 0.1 0.1 II. III0tO.CufT/UIi
Ol"la 1 lZ,.1 0.1 ".1 -_.- 1~.1 ........ ".1 1_..----..
'OLiO ~ASH I 11.1 0.1 In" 2,,, J.I I
...NCI' INCINta I. 0.1 0.1 .--... 0.. . .__..0.1._.._.- 0.1..-- _C..__1t roN~/Y£AAI_.1
uPt" bURN I'" I 0.1 0.1 0.1 11.1 0.1 O. I 1T""S/yea. I ,
ON-!oJ7L..1I1t.1~.- 0.1 a.1 0.1 eLl C.I o. II 7CItlLY.tUJ_1
O'"tK I 18.1 0.1 In.1. ZJ.I 10 I ~OOO. It TONi/YEaal I
'O"'L IKIUI~S. ---'--1".I.-----.-...G.1-401.L-U.~U.1...- -1-----.-

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.. .._'.d-'~_,- .-_._--- .. ..- .
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I'AAIIT/YRIUOIIIIUI ICall/YRI I"C"IYRI IKOUt/YRllfUU..I1A. U'u5i1UKIU .....1-
,aOtUS I 10J60.1 '81. I NOO. I 1.1 h.1 I
fUlL ""auS! ..-I-U....I._~1I.1--1lu.I---l0~9.I-1JC.L I
'0.[' 'LANI I 0.1 ".1 0.1 u.1 0.1 1"'"1''''' 1
UIU"'''OUS CUALI 0.1 0.1 ...--.. 0.1 --_.. 0).1. -....' 0.1.._._.0.__. II .". .., .. 1 ---.--
AKI".."" COALI 0.1 0.1 0.1 0.1 0.( O. IITChHHARI 1
RoSII1UAL UIL 1 c.1 '.1.. -.... 0.1 0.1__-- u.l--..-- O.....lIluOu OAL/yq 1_...___-
Ol>llrurt OIL 1 0.1 0.1 0.1 0.( C.I u. 111000 CALlY'" 1
""IU.AL IOU 1- 0.1---.. 0.1--.0.1_. .0.1_.0.1 Q-----.JUCI.00<. Ut.!I.'U1 
OY"IA I C.I 0.1 0.1 0.1 0.1 I
IRU.CC"..lhS!. 1 1)19.1 J1u.I... Uoo.1 .__JO~9"....._.7J,.1 -'" 1___...
8IIuol"OUSCOALI 0.1 0.1 0.1 0.1 0.1 O. III""S/'.'" 1
AKI"KAtllt CUALI 0.1 0.1 u.I..--. 0.1...... 0.1.__--- U._.II""I/""I 1..--.----
RlSlOUAL OIL I ~.I .2.1 0.1 0.1 q.1 HI. 111000 CALlY'" I
DISTILL'" Ol~-I._..- o.I-.l1.I-..D.I_-. 1.I_lJ.I_-UJ.a...-1I1000 OUII.' 1-
KAIUHL "5 I 15.1 0.1 0.1 -'l.1 I~I.I "10. IIIO,\lotIlH"a/l
OI"OR 1 un.1 1Jl.1 U".I .... 10.,.1 HI.I .. .1...--.----.-
SOLIOdS" I 150.1 '.1 'uO.1 SSO.I 'J.I I
MUhtl' I"CI"U I 0.1 oJ.1 0.1 0.( ..-. 0,( ..-... . O. IITC"5/""RI I....... .-..
o.t" DU...I"" 1 0.1 0.1 0.1 u.1 '.1 O. IITOKS'''''' I
Oh-Slti 110"11..1......... 0.1 0.1..-- 0.1.-. 0.1..._..0.1- .0~llTuNs/n..I_I-
Ol"fA 1 n~.1 ,., '00., "0.1 '001 9"60. IITOKS/YUNI I
TOTAL iRIUIOU I 1l091.. UO.I 9J06.1 lOO~.1 Th...... . ..-. --... 1..........-
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l'AkT, ITlYA/lsaUTlh "gUIYIaI IH'UIY.' IKUAlfI'.I!I'ULI.-OIl.IIHuUIU.IU I
'ADetss I )9)0.1 Jl4.1 -'.).1 vol 0.1 . 1---'--
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'0." .r"'1 I ~.I 0.1 ~.I 0.1 0.1 I
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Ahl"UClIE CUALI 0.1 0.1 ~.I 0.1 0.1 O. 11I~.~/tLA" 1
".'IDUAL I)IL I 0.1 0.1...... 0.1 .m... u.l.. ...1 O. 111000 ..Ar/UI 1
OI:.TILLAn OIL I 0.1 0.1 u.1 0.1 0.1 u. . "IU~U ~6L/Y.1 1--"'-
urUMAL CAS ....1--. 0.1 0.1-.0.1__. ...I_QoI_--.J--t.110LIIHuf..II.UU.1__.
DT"i" 1 001 0.1 ~.I 0.1 0.1 I
IRO.COo.""u, I 070.1 au.I.... 5'01 .-...- 17.1 _.._..UI.I...__.. ..-. ....-.1---
allu"INIIUS COAL' H.I 16..1 10.1 S.I H.I UOO. IITOKS/VCA.' I
A"III"4CII£ COAL I 0.1 0.1... 0.1 --' 11.1 .. 0.1.._.... 0... "II'"S/'(A., 1..--..... -...
...ICUIL OIL I 6.1 .00.1 0.1 ~.I 101.1 UB. 10'100 'AL/Y., I
UUIILUT~ 011. 1....- ~.I--._..... 0.1-- 0.1.._- 0.1- ~.I._u.._II1COO (i.~IY.1 1-
KlrURIL IOA5 I 0.1 0.1 0.1 0.1 u.1 I. 'flO~OoCUfTlYMII
Oil". I oU.1 -1.1 -101 - _1.1..- ._.lJl.1 -....--...... -...... .. I.
SOLID NasH I 0.1 C.I 0.1 0.1 0.1 I
"uNCI' I"CINU 1 C.I 0.1 0.1........... 0.1 ..---.0.1._...-.. u.... III...~IYO";. 1
U't. dURNIN" I 0.1 0.1 ~.I 0.1 0.1 o. IITUh~/'r'" I
UN-lI IL 1"'111.-1---..0.1-._- 0.1.-__0.'- a.I.--ii.1 .I1..-U IUNS/HA~.I_.I-
Ol"U I 0.1 0.1 0.1 0.1 u.1 v. IITC,,"'UR, I
TOTAL illlUIUNS 1 ...-_vo., . un. 1 ... uoO.1 -...-- n.I--__Hl.I._.__...--.....-.....---.I
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'IOCtH I So.1 0.1 0.1 u.1 0.1 I
. fUiL CUMBUST - .....I-jU.I-O.l---!J.I_-U.I--1I).1 ______1-
POol" 'LANI I 0.1 0.1 0.1 0.1 001 I
..IUMlhOUS tOALI 0.1 .. 0.1. 11.1._. u.1 ..-.-- '.1...--._. 0......1/ IC,,~/YlA"' I
6hhutllt CDALI 0.1 0.1 0.1 0.1 0.1 J. IlIuhHnAkl I
MESlaUAL al~ 1.....--.. 0.1 .....- 0.1 ...__.0.1._.. ..1....--.- Col .O.._ICI~JII ~AL/Y~I 1
OIHILLA" OIL I 0.1 0.' 0.1 0.1 ".1 O. IIIUOU OALIYMI I
"A1UkIL UU. -1-. 0.1__0./---.0.1__0.1- ".I ~._Jll'''OHuHIYRII-
Ol"(M I 0.1 0.1 0.1 0.1 0.1 1
IIID.tUM..I"U. I 161.1 c.1 ...-- .u.I.._--- IJ.I......_..~.I ---- - ....1...---.-
8I1U"lhCuS CDALI '.1 0./ 0.1 ~.I 0.1 O. I IT uhS/Yr A'" I
A"THUtllE CCALI 0.1... ..... 0.'_.......... 11.1___. 0.1 -..-.-- 0.1 -_._---_o.._..IITU"$/nARI 1.---
afSl~UAL OIL I 0.1 0.1 001 u.1 J.I O. IIluuu CAL/YRI 1
OIST ILLAH OILI.--.o.I--iJ.I._.O.1-.0..'-----O..1 O. 1 HIIU.;.. 'IL/_'IJ..1-
"ATUUL GU I 0.1 u.1 ~.I 0.1 0.1 O. II 1..,oocuH/.11I
OIHER 1..--. . UJ.I -_-__u.I..._- IJ.I- 1J.1._.~.1._-_.._...... ...___1_-
sauo OAI1I 1 1l.1 1.1 us..1 10../ lid I
HUhCI' IIICINIII.I..-_..... 0.1 -..0.1....--- 0.1._- 0.1__0.1.._- - ~._llTu"S/YtAR'_.I-
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OIHEa I ".1 1.1 1200.1 10l.1 q.1 USOJ. 1110"~/'Ual I
TaUL .RIUIU... - - . I ....- J01.1.... '-"- 1.1. ----.1167. L__. U9. 1_- ._7.. L_--.---.-----.L---.
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'A~CIH I UU.I 0.1 ~.I ~.I 0.1 -.-
fUn C~'UII$l 1--1911.I_,uI.I~$.I_~~.I-1U$.1 I
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oIlU"lo,;US 'OALI 1Ul.1 UOI.I ..--..~.I '-'- l~.1 _...UiI.1 _.aUB. IPc.s/ycu, ,.._-

:~.r~I~'Uo~LII~ICLOALlt 110'.1' . . 0.1 ~.I v.1 ~., ~. '-1 IIUNs/Y.U , I
.. w . 0.1 ..- .....1-- 11.1......__. 0.1.__._- .u......IU~o~ .AL".' I
~IHILLAT. OIL I 0.1 0.1 v.1 11.1 0.' O. 111000 'OL"A' I'
UrUKAL 'Ai .1-.. 0.1._.0.1._,..1- o.l_u.1 "---.lUOLUotufl/Y1I11
cr~~A I 0.1 0.1 ~.I 0.1 0.\ " I
'h".';u",III$I. 1 10~.1 . n.1 -.u..lu.I..._-- u.I...._- H8.1__- - ..
IIIU.I'~US CUiLl 0.1 0.1 ~.I c.1 0.1 ~. 11I0.SlYEU, I'
ANI"UCIH COALI ~.I 0.1 --.---.. 11.1.._--. lid _-.0.\ . O. ICTONS/",Ah' 1
"[SlUUAL OIL I 0.1 0.1 11.1 11.1 u.I"---"II."'-'IIIOOO 'ALl""I
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UH'RAL .'" I ~.I 0.1 0.1 11.1 ,'.1 "l. IUOt06CU'IIU,I
uI~tR I -.- )110.1 15.1 1~.1. -.. ~u.1 ___.IUII.1 1
S0L10~'Hi I lB.1 6.1 l~u.1 11~" H"---'-'-' "'''-',--
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UPIN IUAHINO I 10l.1 6.1 ~,~.I IQI.I )8.1 ----lllO,.'-"IIIUNHYE.A,-' ,--
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OlHkA I 11'.1 G.' nll.1 l8.1 ".1 i.Goo. 1IJ0IISnUA, ".--
tOTAL UIUUOIOS I SH1.1 "H. I .. _. ns.1 n_.J./).I-.....1UJ.I_____......... .. .--.1._.-
P:II:I:.":..e-_....... -----------.------ -...-- - ----- -_._-~-- ---~--------=.'--:..:..-
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'U.L. Pl'~1 I 0.1 v.1 0.1 v.1 \1.1 I
8IIu"I"UUS COALI ....- 0.1 ._- ..1 "--" v.I...-.-... C.I____.. O.l.__O.__...IClOhS/YPRI .1.._--
A~,..~.CI'ECOALI 0.1 0.1 0.1 ...1 0.1 O. IIIUN~/H'~1 1
AUIOU" UIL I --.. 0.1......... 0.1 -.-.-- 1i.1.- ~.I._._. 0.1._._.. .1i.__1I1000 O'L""'.I_-
OIHILLUE OIL t 0.1 0.1 0.1 0.1 c.1 O. 1110\10 O.L/HI I
NAIUdL GAS .-I-.u.I__II.I_O.I_O.I_O.1 o. IU".O.l.uf_.U.Y.!l.I
OlHt. I '.1 0.1 v.1 ~.I 0.1 1
IIIO.COIIII.INSI. '1.........._..'3.1..- DlO.1 _-..IOI.I_12J.I_.689.1.__...._.. .1
8I1u"IHOUS CUALI 0.1 0.1 0.1 ..1 0.1 O. IIT0II$l,EAAI I
ANI"UClli 'OALI .. ._. 0.1 . 0.1 0.1_. 0.1 -......- u.1 -_. O,__IITUNS/YE'.' ,_-
oISlUUAIOIL' 1 '.1 H~.I 0.1 ~.I II~.I HU. 111000 GAL/UI I
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"HtR I '8.1 .1$0.1 _.._.10u.l_l0v.I.....__..~99.L__........_. .. .m ,_-
"'LIO ~AS'E I 1'.1 0.1 100.1 8.1 ,.1 I
PUHCI' IHCINU 1---.... 0.1. . 0.1.-- 0.1 --- . 0.1. ..__.. . 0.1 .---. O. __IITChS/YUA, _..1_-
OpeN IUAPIIIO I )'.1 ~.I IGo.1 1.1 '.1 '000. ,ITOIIS"Hol 1
O"-UU.lI1Ullo.J--.O.I 0.1 u.l-.'.I-JJ.I O.--J.IH..S/'yUkI I
Ol...R 1 0.1 0.1 0.1 0.1 c.1 O. 11I01IS"Uo' 1
tOIAL EPUUGIIS I /.67.1. ._.12'0.1 ..__8601.L--..Ul.I..---UJ.L.__. -- .---.-.1---..
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OISTIUAh OIL I 0.1 0.1 0.1 ".1 0.1 O. 1110110 """"1 1
NAIURAL CU. ..1- 11.1_..0.1-_0.1- 11.1_..0.1 0a-l.110f~~CUf."'~11
orHIM 1 ...1 0.1 0.1 0.1 0.1 I
lHO."MM"~ST. 1 UToo.1 6118.1 hi. I 1~1I.1._...nl!.1 -. ..-..' 1.------
BIIUIIIIIOU5 e.;ALI uu'.1 6068.1 140.1 OJ.I "00.1 HHU. '''UN5!'tAR' 1
ANT"RACIUeOALI 0.1 0.1 .0.1.__..11.1..___.--- 0.1__.--- 0.._ICT~N5/YtUI I
RtSIOLAL OIL I 0.1 .u.1 ~.I 1.1 16.1 Ill. 111000 CAHYR' I
OIST ILLATE OJL.I.-J.I-..J.I-O..1-1.1-11.1_.JOJ.-IllI100 .GRLI.'~ 1..1
UTUMAL 'OS I '.1 1.1 0.1 17.1 10].1 11". IIIOEOOeUfT/UIi
OTHE' 1 0.1 n.1 n.1 18.1--__91.1 --.-..-.-- --1.--
SOLIO ~ASTE I ..1 0.1 01.1 17.1 ).1 I
IIUHel' lNClNU 1 0.1 0.1..-. 0.1 0.1...-_...0.1 .u.-.. 0._. ICTO~5/YE"I...- 1..__-
OPtN BURNIN' 1 '.1 0.1 01.1 IT.I J.I 1101. 1 irON 5!YEU I 1
ON-SITE JHCIII--I__.- 0.1-.--.. o.I-O..I_O.L--.Q..1 UL.-...JHCN~/.YU~I I
Ch't. I 0.1 0.1 0.1 0.1 0.1 O. II1C"IIYU" 1
TOTRL UUSUONS ...1--. .tU44.1 IUO.I.- TUO..I .__._l1T.l.-_Ulo.1 .----------..___.1._-
.-------------------------..------------------------.
. - - --.'''. - .---..
--- .--.. ...-.... ,----_.u_-
....-..£JIUUCILJIIV Vol UKY
--------
aU1CN.00J
.. . 'DUIICA&. ~UAISCUCT1CU1G.,--..
.1'UTUIYKllsCurIY.. ICOIT/YAI 1 ""UYK I INQIlUY~IIFu~etIiU..lUIII IS -__--___1__-
..0Ctss I Jo~.1 0.1 UH.I 12.1 ..1 1
..IUlL 'ep.BIiSl. --1--J,.I---1G~.L-.4.1-HLI-1£J.1 I
'001. PLANT I 0.1 0.1 0.\ 0.1 0.1 1
BlIUIIINUUS eUALI._- 0.1.- 0.1-.. 0.1_. c.I_".1 O._IfTC~)/'IO'I_1
A'.rH..ClTt COOLI 0.\ 0.1 0.1 oJ.1 ..1 O. IIHas/nORI I
'UI0IiAL01L L-.. O.I------.o.I--U.I_. ~.L_..I1.1 O,-IIIOOIiGAL/'AI.1
OISTIU.ATE OIL I 0.1 0.1 0.1 G.I ~.I C. 1110011 CAL/YRI 1
....-.. NATUUL GU.-I_...o.L-_O.I_O.I_.o.I_O..1 u. IllliQOCulliWI
OTH.. I 0.1 0.1 0.1 0.1 0.1. I
laC.CC~N.I"H. ,...--.-.. T9./ .-.. Joe.1 --..4.1__.100I___.1ZJ.I_.- .-. . _..1
6ITU~IHOUS COALI 10.1 100.1 0.1 1.\ ".1 un. II1CHS"UA' I
ANTH~A'"E COALI.......... .0.1.- ..--- 0.1__.0.1- 0.1__.. 0.1..__- 0._11 rOH5IYtAh I ..1-
USiCUAL OIL 1 0.1 0.1 c.1 0.1 C.I 1020. 111,,00 CALlY" I
----- OISTiLLATL IaLI C.I ".l_-O..I 0.1 0.1 o. 1110UQ.c.A.L/_"L1-
NArU"L CAS 1 ).1 0.1 0.1 D.I !d.1 0)'. IUOEyOCU'"YUI
OTHER 1--.....- u.I.....--_u.I-.- 0.1__'.0.1- c.1 .....-.. ...__._1
SOLIO wASIE 1 100.1 0.1 JOY.I 2!.1 1l.1 I
IIUNCI' lhCINEA .1..-.......... 0.1 ..-._..0.1- .-- .0.1_.- 0.1.____- 0.1__..._"._1 nON5/.tA'I_1
OPtN 'U'NIN' I 100.1 0.1 JOT.I ~~.I !l.1 IUU. IITONS/HA" 1
. OH-S1T£..UlUL-1.-_.c.l-o.1 0.1 . 0.1 c.1 c. lITOIU/_UAJI' I
OTHER 1 0.1 0.1 0.1 0.1 0.1 o. IITeN5/YURI 1
TOTRL EMIU1011S ...1 .._.0".1 .........100.1.__J8U.L-Jl.1._--1U.1 I
----.-
EIIIS510N INVENTO.Y
.E610N'OOO
POLITICAL Ju.ISOISCTIONI 1
IPA.TlT/YAIISoaITlYRI ICOIT/YAI INtlT/YRI INoalT/YR'lfUEL
PROCESS 1 loo!.1 0.1 0.1 0.1 c.1
'UIL COMBUST I n~.1 70.1 70.1 70.1 ')TO.I
'CWE' PLANT I 0.1 0.1 0.1 0.1 0.1
8ITUNINOU5 tOAlI 0.1 ~.I 0.1 0.1 c.1
aNTHAACITE toali 0.1 col 0.1 C.I 0.1
.ESIOU... elL I 0.1 0.1 0.1 0.1 c.1
015T1lLATE OIL I 0.1 0.1 0.1 0.1 0.1
NATURAL CAS I 0.1 0.1 0.1 _..-- 0.1 0.1
OTHER I 0.1 0.1 0.1 0.1 0.1
INO.tOIlIl.INn. I n9.1 70.1 70.1 70.1 Ho.1
BITUIIINOUS eOALI 0.1 0.1 0.1 c.1 0.1
ANTHRACITE tOALI 0.1 0.1 0.1 0.1 'C.I
~Uloual OIL I 0.1 c.1 0.1 0.1 0';.1
DISTILLATE OIL 1 0.1 0.1 0.1 0.1 c.1
NATURAL 'OS I 0.1 0.1 0.1 u.1 0.1.
OTNER I 9~~.1 70.1 TOol 10.1 370. I
SOLID _Ane I J8'.1 0.1 ,n.1 89.1 I~.I
IIUNC1' lNClHER \ 0.1 G.I 0.1 0.1 ~.I
OPEN BU.NING I J5).1 0.1 161.1 13.1 1).1
ON-UtE lNCIN. 1 0.1 0.1 0.1.... .--- 0.1 0.1
OTHER I )6.1 0.1 016.1 50.1 6.1
TOUL EMISUONS I ~.,).I H.I 0!1.1 103.1 3n.1
CR .HuStluhllS
~.
1
I
I
1
IITCNs/n'.1 I
IITCNs/nAAI I
111000 GALIY" I
Ie 1000 GALI.R I I
I IIOE06CUfTlYA II
I
I
Ie TCh~/'ER~ I 1
Ie TONSIYtAAI I
Ie 1000 CiALlYR I I
111000 GALIY" I
IllCEoeCUfT IY.,I
,
I
1
I
I
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I
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I I TeN5/Yf OR .
II TCN~/naRI
1 ITON5IYEU 1
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[NUSION INVENIOR'
REGIONIVO~
POLIIICAL JURISOISCIIONI 1
IPARTl1IVRIISO.ITlVRI ICOIl/YRI IHtlT/YRI IhCXI1lVPIIFUEL
PAOCESS I I;SO,I 0.1 0.1 ';.1 0.1
fUEL CCMBUSI I 0.1 0.1 O.I.n _.(;.1 G.I
POWEA PLANT I C.I 0.1 0.1 G.I 0.1
BIIU~INCUS COALI 0.1 0.1 0.1 G.I C.I
ANIHAACIIECOALI 0.1 0.1 0.1 0.1 0.1
RUICUALOIL I 0.1 0.1 c.1 0.1 0.1
DISTILLATE OIL I 0.1 0.1 0.1 \;.1 ...1
NATURAL GAS I 0.1 Dol 0.1 ._-. 0.1 ';.1
OTHEA I 0.1 0.1 0.1 C.I C.I
INO.CO~N.INST. I 0.1 0.1 0.1 0.1 ...1
8ITUMINOUS COAL I 0.1 0.1 001 (;.1 c.1
ANIHRACITE COALI 0.1 0.1 0.1 0.1 c.1
RESIDUAL all I 0.1 0.1 i).1 0.1 0.1
DISTILLATE OIL I 0.1 0.1 0.1 0.1 0.1
NATUAAL GA.S I 0.1 0.1 0.1 0.1 C.I
OlHER I 0.1 0.1 0.1 0.1 0.1
SOLID WASTE 1 10].1 ].1 426.1 . ~2.1 28.1
MUNC" INCINER I 0.1 0.1 v.1 0.1 0.1
OPEN 8UANIIIG I 1'.1 1.1 5.1 5.1 n.1
ON-SITE INCIN. 1 0.1 0.1 0.1 (;.1 0.1
OTHEA I 28.1 0.1 4H.1 31.1 1.1
TOTAL EMISSIONS I rt3./ ].1 428.1 42.1 28.1
EMI HICH IhVEhTeAY
REGlCN I 004
POLITICAL JURISOISCIICHI ~
IPUTl1IVAIi, SOXC1lYA ICCIT/VAI IHCIT/HI INOXI1IYAlifUEL
PROCUS 1 U69.1 C.I O. I ]56.1 0.1
fun CCM8UST I 4.1 14.1 (;.1 1.1 11.1
POwEA PLANT I 0.1 0.1 0.1 0.1 0.1
8ITUMINOUS COALI 0.1 0.1 0.1 (;.1 0.1
ANTHAACIIE COALI 0.1 v.1 (;.1 0.1 0.1
AESIOUAL OIL \ 0.1 c.1 v.1 0.1 0.1
DISIILLATI Oil I 0.1 0.1 c.1 0.1 0.1
NATURAL GAS 1 0.1 0.1 u.I..- - 0.1 0.1
OTHER I C.I 0.1 0.1 0.1 0.1
IhO.CO"""5I. 1 ~.I I~.I 0.1 1.1 lI.1
BITUMINOUS COALI 0.1 0.1 0.1 0.1 0.1
ANTHAACITE COALI 0.1 0.1 ;;.1 0.1 0.1
RESIDUAl OIL' I ].1 12.1 0.1 (;.1 9.1
DISTILLATE OIL I 0.1 2.1 0.1 0.1 2.1
NATURAL GAS I 0.1 0.1 0.1 0.1 0.1
OTHER I 0.1 0.1 0.1 0.1 0.1
SOLID WAS IE I n.1 0.1 169.1 14.1 1.1
MUHCIA IHCINER I 0.1 0.1 0.1 0.1 001
OPEN 8URNING I 0.\ 0.1 0.1 0.1 0.1
ON-SIH INtlN. I 0.1 0.1 0.1 - . -.- 0.1 0.1
OTHER 1 n.1 0.1 169.1 14.1 1.1
TOTAL EMISSIONS I 61]0.1 14.1 169.1 HI.I 18.1
A-15
OR AffuStlUlIlTS
OA RefUSE IV.IIS
C.
o.
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I
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IIIO~O (;AlIYA I I
111000 GAl/YA I 1
IlleE06CUF "Y~II
1
I
I(TO'S/YEA~I 1
I IICHSITUR I 1
IIIGOO GAL/YRI I
Ie 10ce GALIYAI 1
I I IOE06CUFI/YA II
1
1
I
1
1
I
I
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6U.
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6150. '.
IlIeNS/YEAR'
II 10~S/YEA.'
IfTO.S/YUOI
IITO-S/VE,AI

-------
EHISS IC~ INYENTC~Y
REGIONIOO~
POLITICAL JURISOISCTIC~I 5
IPARTIT/YRIISOXIT/YRI I COlT/VAl IHCIT/YRI INOXITlYRllfUtl
PROCESS I 325.1 0.1 0., 0.1 0.1
.'UU "MBUST I ]082.1 'H,~.I 6B].1 205.1 1230'. I
PO.~R PLANT I ]08l., 'I~O~.I 683.1 20'.1 12]0'.1
BITUMINOUS COALI ]082.1 51H6.1 683.1 20'.1 122~3.j
'NTHUCIIE eCAll 0.1 0.1 0.1 0.1 e.1
RESIOUAL Oil I 0.1 0.1 0.1 0.1 ..,
OISTILLATE OIL I 0.1 3.1 0.1 1.1 12.1
NATU~'L GAS I 0.1 0.1 0.1 . e.1 .;..
OTHER I 0.1 0.1 U.I 0.1 0.1
I~O.COHH.INST. I 0.1 C.I 0.1 0.1 0.1
BITUHINOUS COALI 0.1 0.1 C.I 0.1 C.I
ANTHRAeITECOALI 0.1 0.1 C.I 0.1 0.1
RESleUAL OIL I 0.1 0.1 C.I 0.1 c.1
DISTILLATE 01L I 0.1 0.1 0.1 0.1 C.I
NATURAL CAS I c.1 0.1 0.1 u.1 v.1
crHER I 0.1 0.1 0.1 e.1 0.1
SOLIO .ASTE I 1.1 0.1 13C.1 11.1 1.1
MUNCIP INCINER I 0.1 0.1 0.1 0.1 0.1
G'~" 8U_NI"C \ 0.\ 0.\ 0.\ 0.\ c.1
ON-SITE I"ClN. I 0.1 0.1 0.1 0.1 0.1
OTHER I 1.1 0.1 1]0.1 11.1 1.1
TOUL E"I5SIO"S I ]H~.I 51~0~.1 8U.1 H6.1 12306.1
EMIS~ICN INYENrORY
RECIONIOC~
PGLlTIeAL JURISelSCTICNI 6
IPARrtrIYRIISOUT/YRllcOlr/YRI IHCIf/YRI INGXIT/Y~II'UH
PROCfSS I 0.1 0.1 0.1 v.1 c.1
fUELCUMBUST I C.I C.I 0.1 Ii.1 Ii.1
POMEO PLA~T I 0.1 0.1 0.1 0.1 c.1
BITURIMOUS eO'Li 0.1 0.1 u.1 .;.1 c.1
ANrHRAel1E COAL I 0.1 0.1 0.1 U.I 0.1
RESIOUAl ell I 0.1 v.1 c.1 c.1 c.1
OISflUATE ell I 0.1 u.1 c.1 0.1 0.1
NATURAL CAS I c.1 C.I 0.1 c.1 0.1
OTHER I 0.1 0.1 0.1 0.1 0.1
INO.CORM.INsr. I C.I 0.1 0.1 u.1 0.1
8nURINOUS COALI 0.1 0.1 0.1 0.1 c.1
ANTHRACITE COAL I 0.1 0.1 0.1 c.1 0.1
R~SIOUAL Oil I 0.1 0.1 0.1 0.1 0.1
OIHILLAfE OIL I 0.1 c.1 0.1 u.1 0.1
NATURAL CAS I C.I 0.1 0.1 c.1 c.1
OTHER I c.\ 0.1 0.1 0.1 0.1
SOLID .ASTE I 110.1 1.1 143'.1 121.1 11.1
MUNCIP INCINER \ 0.1 0.1 0.1 0.1 c.1
OPEN BURNINC I 0.1 c~1 0.1 c.1 0.1
ON-SITE INCIN. I 0.\ 0.1 0.1 0.1 c.1
OTHER I 110.1 1.1 1~35.1 121.1 11.1
TOUL EMISSIONS I 110.1 1.1 1~]].1 121.1 11.1
EMI SS I ON INVENTORY
Re910n:
004
Political Jurisdiction: 7
OR REfUSE Iuo' n
13659
-------
ENISSION INYt"Tt~'
REGIONIOO-
POU TI CAL JU~ ISO ISC TI Oh 1 8
IPUTIT/Y~IISO"T/YAI !GGCT/HI I~CCTIYAI INOXCIIYAlifUEl
P~OGESS I C.I c.1 ~.I 0.1 0.1
fUEL "N8USI 1 0.1 0.1 C.I c.1 c.1
POWLA PLANT I 0.1 0.1 0.1 0.1 0.1
811UNINOUS COAll 0.1 C.I ~.I c.1 ~.I
ANT~.ACITE COAll 0.1 0.1 ...1 0.1 0.1
AESIOUAL Oil I 0.1 C.I 0.1 0.1 0.1
OISllllATE Oil I 0.1 C.I C.I 0.1 0.1
NATUAAl GAS I 0.1 0.1 u.1 0.1 0.1
OT~E~ I C.I c.! 1).1 0.1 0.1
IhO.".'.lhST. I C.I 0.1 0.1 0.1 c.1
8ITUNINOUS COAll 0.1 0.1 0.1 0.1 0.1
ANT~RACIIE COAll c.1 0.1 0.1 C.I 0.1
AESIOUAL Cil I 0.1 0.1 C.I 0.1 0.1
DISTIllATE all I 0.1 0.1 0.1 0.1 0.1
NATURAL GAS I 0.1 C.I 0.1 C.I 0.1
CTHER I 0.1 0.1 0.1 0.1 C.I
SOLID WASTE I 61.1 -.1 685.1 58.1 9.1
NUhCIP INCINEA I 0.1 0.1 0.1 0.1 0.1
OPEN 8UANING I )5.1 0.1 10).1 8.1 -.1
ON-SITE INCIN. I C.I 0.1 0.1 0.\ 0.1
c;THER I )2.1 -.1 582.1 5C.1 5.1
TOTAL ENIUIONS 1 8T.1 -.1 685.1 '8.1 9.1
ENISSIeN INVENTOAY
AEG! ON 1 00-
POLITICAL JUAISDISGTIChl 9
IPAATITIY~IISOXIT/Y~I IGOIT/Y~I I~GlT/'AI INOXITlYAlifUEL OA
PAOCESS I 0.1 0.1 ~.I 100.1 0.1
fUEL CCN8UST I 236.1 12.1 17.1 U.I 8B)5.1
POWER PUNT I 9.1 0.1 0.1 H.I 8152.1
BITUNINOUS COALI 0.1 C.I 0.1 0.1 0.1
ANT~RACITECOAll 0.1 0.1 0.1 c.1 C.I
RESIOUl OIL I 0.1 0.1 0.1 0.1 C.I
DISTIllATE all I b.1 0.1 0.1 c.1 J.I
NATURAL GAS I 9.1 0.1 0.1 2-.1 H16.1
OTHE. I 0.1 0.1 0.1 ...1 -)16.1
INO.CO"NtiNST. I 221.1 12.1 IT.I IT.I 83.1
BITUNINOUS COAll 0.1 0.1 0.1 0.1 c.1
ANT~RACITE COAL I 0.1 0.1 0.1 0.1 0.1
~ESIOUAL Cll I 0.1 0.1 0.1 0.1 C.I
DISTILLATE all \ 0.1 0.1 0.1 0.1 0.1
NATURAL GAS I 0.1 0.1 0.1 c.1 0.1
OT~ER I UT.I 12.1 17.1 17.1 83.1
SOLIO WASTE I ))6.1 2.1 )206.1 269.1 -2.1
NUNCIP INCINEA I 0.1 C.I 0.1 c.1 0.1
OPEN BUANING I .0.1 0.1 0.1 0.1 0.1
ON-SITE INCIN. I 0.1 0.1 0.1. . 0.1 0.1
OTHER I )36.1 2.1 3206. I 269.1 -2. I
TOTAL ENISSIONS I 5T2.1 1-.1 )22).1 -10.1 881T.1
EN ISS luN INVENTOR Y
AEGIONIOO-
POLITICAL JURISOISCTIONl10
IPA~TlT/YRIISO"TIYRI ICOIT/YRI IH"TlYRI INOXITlYRllfUEL
P~OCESS I 2B06.1 0.1 0.1 0.1 0.1
fUEL "NBUST I C.I C.I 0.1 0.1 0.1
POWER PUNT I 0.1 0.1 0.1 0.1 0.1
BITUNINUUS COAll 0.1 0.1 0.1 0.1 ".1
ANT~RACITE COAL I 0.1 0.1 0.1 C.I 0.1
ABICUAl Cil I 0.1 0.1 0.1 0.1 c.1
OISTIllATE Oil I 0.1 0.1 0.1 0.1 0.1
NATURAL GAS I 0.1 0.1 0.1 0.1 o. I
OTHER I 0.1 '0.1 0.1 v.1 ".1
lNO.CO"".INST. I 0.1 C.I 0.1 0.1 0.1
BITUNINOUS COAll 0.1 0.1 0.1 C.I C.I
ANTHRACITE COAll 0.1 0.1 0.1 ~.I C.I
RESIDUAL Oil I 0.1 0.1 c.1 0.1 0.1
OISTilLATE Oil I 0.1 0.1 0.1 0.1 0.1
NATURAL GAS I 0.1 0.1 0.1 0.1 0.1
OTHEA 1 0.1 0.1 0.1 0.1 0.1
SOLID WASTE I 0.1 0.1 0.1 0.1 0.1
MUNtlP INCINEA I 0.1 0.1 0.1 0.1 0.1
OPEN BURhlNG I 0.1 0.1 0.1 0.1 C.I
ON-SITE INGIN. I 0.1 0.1 0.1 0.1 0.1
. OTHER I 0.1 0.1 0.1 0.1 0.1
lOUl ENISSIONS 1 2B06.1 0.1 0.1 0.1 C.I
A-17
OR REfUSE IUhl TS
C.
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O.
9000.
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IllceC GOlllA' 1
1111,0" CALITA' I
IllCecOCUf '''''1
I
I
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IlTtNS/HOR' I
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1110EU6CUfTiVA II
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II TtNS/YE AR I
RHUSt IU~I TS
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1199.
I
.1
I
I
I (Tu'~::'/'¥EAIO I I
IITt'S/YEAA' I
II 10"~ GAl/YRI I
I II OJ.) GAllTAI I
II 10E06GUFTlYRII
I
I
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IITONS/nU, I
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II 10ce GAlIT., I
IIIOb16tUfT IVA II
I
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II TO.S/YEAA'
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IITCNS/n,., I
IlIcec CAIIYRI I
I ( I ceo "AL 11R I I
I I IOE~6CUfl ITA'I
I
I
IlItNS/YEAO' I
If TCNS/YE 0.) I
11100.. CAl"R' I
IIICOO GAlITA' I
Ie 10lCbCU' I/YRII
I
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EMISSION INVENTeR'
REGIONIOO~
POL IT IUl JUR ISO IStT 10Nll1
IPARTl1I'RIISOaITl'R' IOOITl'R' IHClTI'R' INOacTlYKllfUH
PRCOESS I 26955.1 0.1 2~9.1 0.1 8. I
fUel OOMBUST I 178~.1 5~H3.1 1638.1 ~91.1 29~19.1
POWEA PLANT I 178U.1 5~1~3.1 16!8.1 ~'1.1 2'~T9.1
BITUHINOUS OOAlI 17BU.1 5H~3.1 1638.1 491.1 2'~H.1
ANTHRACITE OOAlI 0.1 0.1 0.1 0.1 0.1
RESIOUAl Oil I 0.1 0.1 0.1 0.1 C.I
DiStillATE Oil I 0.1 0.1 0.1 0.1 C.I
NATURAL GAS I 0.1 0.1 0.1 C.I 0.1
OTHER 1 0., 0.1 0.1 0.1 C.I
IND,ODHM,lNST. I 0.1 0.1 0.1 0.1 0.1
BITUMINOUS eDAll 0.1 c.1 0.1 0.1 0.1
ANTHRACITE OOAlI 0.1 0.1 0.1 0.1 c.1
RESIDUAl all I 0.1 C.I 0.1 0.1 0.1
DISTIllATE all I 0.1 0.1 0.1 0.1 0.1
NATURAL GAS I 0.1 0.1 0.1 0.1 0.1
OTHER I 0.1 0.1 0.1 0.1 0.1
SOllO WASH I 0.1 0.1 0.1 C.I 0.1
MUNOIP INCINER I 0.1 0.1 0.1 0.1 0.1
OPEN BURNING I 0.1 0.1 0.1 C.I 0.1
ON-SITE UCIN. I 0.1 0.1 0,1 0.1 0.1
OTHER I 0.1 0.1 0.1 0.1 0.1
TOTAL EMISSIONS I ~~T7It.1 'HU.I 1887.1 ~U.I 29~87.1
LHISSleN I~VE~TCR'
RHICNIOO~
POL IT ICAl JUR ISD I SOl ION' U
IPA~Tl1I'RllsoaITl'" ICCITIY" IHelTI"1 INOaIT/HII,Ull
PROOESS I 137.1 0.1 0.1 0.1 c.,
fUel CCMBUST I 167.1 6.1 11.1 le.1 76.1
POWER PLANT I 0.1 0.1 0.1 0.1 .:.1
BITUHINOUS OOAll 0.1 0.1 0.1 0.1 C.I
ANTHRACITE COAlI 0.1 0.1 0.1 0.1 l.1
RESIOUAlOll I 0.1 0.1 c.1 0.1 v.1
OISTIllAH Oil I 0.1 0.1 0.1 0.1 0.1
NATURAl GAS I C.I 0.1 0.1 0.1 0.1
CTHER I 0.1 C.I 0.1 0.1 0.1
IND,CONP,INST. 1 leT.1 e.1 11.1 16.1 7..1
BITUMINOUS CUAlI c.1 0.1 0.1 0.1 ,.1
ANTHRACITE CCAll 0.1 0.1 0.1 0.1 ':.1
RESlOUAl Oil I 0.1 0.1 0.1 0.1 0.1
OISTIllATE Oil I C.I C.I 0.1 0.1 2.1
UTURAl GAS I 2.1 0.1 0.1 ~.I 2C.1
OTHER I 16~.1 6.1 11.1 11.1 5'.1
SCLiO WASTE I 378.1 11.1 lOTI. 1 ~5.1 70.1
'UNCIP INCINER I 0.1 0.1 0.1 0.1 C.I
OPEN BURNING I 2H.1 0.1 T25.1 58.1 29.1
ON-SITE INClN. I 0.1 C.I 0.1 0.1 0.1
OTHER 1 131.1 11.1 3~6.1 . 37.1 ~5.1
TOUl EMISSIONS I 682.1 17.1 1082.1 111.1 150.1
EMISSION INVENTORT
REGlONIOO~
POll TICAL JURISDlSCTlON'U
IPARTCTI'AIiSOalT/nl ICOIT/YAI IHCITIYA' INoalTlYAlifUH
PROOESS I 122T1.1 ~78.1 6~TII. I O. I 0.1
fUel ceM8uST I 75ge.1 15!8.1 H6.1 H~.I 2330.1
'OWEA PLANT I 0.1 c.1 0.1 0.1 0.1
8ITUHINOUS COAll 0.1 C.I 0.1 C.I 0.1
ANTHRACITE COAll 0.1 0.1 0.1 0.1 0.1
RtSlDUAl Oil 1 0.1 0.1 0.1 0.1 v.1
OISTlllATfOIL I 0.1 0.1 0.1 0.1 C.I
NATURAL GU I 0.1 0.1 0.1 0.1 G.I
OTHEA I G.I 0.1 0.1 c.1 0.1
I~D,COHNtlNST. I T596.1 1538.1 H6.1 35~.1 2330.1
BITUMINOUS COAll 7118.1 1213.1 33.1 10.1 60!.1
ANT~R"lTE COAl I 0.1 C.I 0.1 0.1 0.,
AESIDUAL all I 2.1 32.1 0.1 0.1 6.1
DISTIllAtE Oil I 0.1 0.1 0.1 0.1 0.1
NATUUl GAS I 17.1 1.1 0.1 37.' 181.1
- OTHER I ~61.1 233.1 312.1 312.1 1~6G.1
'OLIO WASTE I 0.1 0.1 0.1 0.1 0.1
'U~CI' INCINER I 0.1 0.1 0.1 0.1 c.1
OPEN BURNl~G I 0.1 0.1 0.1 0.1 c.1
O~-SlTE I~CIN. I 0.1 0.1 0.1 0,1 0.1
OTHER I 0.1 0.1 0.1 0.1 0.1
IOTAL E'UUIONS I 19861.1 l5l6.1 6'057.1 359.1 2330.1
CA AHUSEIU'" 1\
3lJHe~.
C.
OA AHUHlu"I"
O.
30H~.
O.
1160C.
o.
I
I
I
I
II I~~SIYE£Q' I
IIIO"S/YiAA' I
111;)00 GAlIY" I
If lOGO GAlIYA' I
111\;[ 06CUFT IYA'I
I
I
IITOhSIYEAO' I
III,"S/H'" I
1 1 I 000 GAL /YA I I
111000 GAlIYA' ,
III Gf ceCUf 1 IYPlI
I
I
I
I
I
I
1
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u.
O.
u.
o.
O.
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o.
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II TONSIY"A,
I IT C"SIYUA I
I ITCNSIYEAAI
II TONSIYEAA'
G.
O.
O.
O.
o.
I
I
I
I
IITC"S/HH' I
II TCNSlYl" , I
111000 GAl/YAI I
IIIOCG GAlIYA' I
IIICEC.CUF,/yo'l
I
I
IITONS/nA"' I
II TC"SIYEAOI I
1110000U1Y0'i
111000 GAllYA' I
IIIOl06CUfT IY'.I
I
I
I
I
,
I
I
o.
C.
G.
6;).
22~.
II TG~S/YEA.'
IIIONHYlAA,
I IT ONS/n AA'
IITO"SIYE AO'
OA AuuSElu,,' IS I
  I
  I
  I
O. IITC~SlYlAH I
C. 11""5/>[.", I
... 111000 GALI'o, I
O. III OOV OAlIYA' I
O. III0lO.C~FTIYA'1
  I
  I
e6978. II TO"S/'I AO' I
o. 1 ITC"S/YEAO, I
2OC. 1 H cec GAll'.' I
O. 111000 GAlIYA' I
18~0. 1 HOE06CUfT IYAII
  I
  I
O. IIICNSIYE .., 1
G. leTONS/YEAO' I
o. I nCNSIYEAA' I
o. IITONSIYUA, 1
  I
A-18

-------
f'ISSI~h IhVfNTO~'
REGIONIOO~
POLITICAL JUPISOISCTIChll~
IPARTJ"Y~'ISG.n/YP' ICGITlY~1 IItCITlYR' INOAI TI'RllfUH
PROCESS 1 0.1 G.I ~.I 0.1 0.1
FUEL CCNBUST I HSz7.oI ..D.5"J7.J 931.1 219.1 In~9.1
POWE~ PUNT I s,:...z7;j $..,s:37.1 931.1 219.' I6T~9.1
BITUMINOUS COALI. 5(.8.z!.1 "'''..f:J'].1 9)1.1 219.1 11>149.1
ANTM~ACITE COALI 0.1 G.I 0.1 0.1 0.1
RUIOUAL CIL I 0.1 0.1 0.1 0.1 c.1
DISTILLATE OIL I 0.1 c.1 G.I 0.1 0.1
NATURAL GAS I 0.1 0.1 0.1. 0.1 G.I
OTHtR I G.I 0.1 J.I 0.1 0.1
IhD.COM'.INST. I 0.1 C.I 0.1 C.I 0.1
elTUMINOUS COALI 0.1 0.1 0.1 0.1 G.I
ANTHRACITf COALI 0.1 C.I 0.1 0.1 ".1
RESIDUAL CIL I 0.1 c.I 0.1 0.1 U.I
OISTiLlATt OIL I 0.1 G.I ".1 0.1 C.I
NATURAL GAS I c.1 0.1 0.1 0.1 0.1
GTHER I 0.1 0.1 0.1 0.1 0.1
SOLID -ASTE I D.I 0.1 0.1 0.1 0.1
MUNCIP INCINER I 0.1 0.1 0.1 G.I ".1
CPEh 8URNING I 0.1 0.1 0.1 c.1 C.I
ON-SITE INtIN. I 0.1 0.1 C.I. q C.I 0.1
CTHER I 0.1 0.1 0.1 0.1 0.1
TOTAL ElIJUIONS I .fl.~.2? t S~.s.l7'1 931.1 219.1 16149.1
tJlU.LIIIN IIIYElltOR Y
.*-_.~-
---...
REGIC~IOU~
POL IT leAL JUR ISC 1St IIU~ ,. I
CR ~ifU5EI~hl1!
1861025.
O.
C.
O.
o.
I
I
I
I
tctON~/YL£". I
II TChSIH'~' I
11100'; G'LIY~I I
11100" G'l/'O' I
1.IOl06CUfT IYRII
I
I
IITC.SIYfAO' 1
IIT0NS/YEA~' I
111000 GAl/'~' ,
IIICC~ GAL/'OI I
Ie lOE06CUf T IV"I
I
I
I
I
I
I
I
o.
o.
o.
o.
u.
u.
C.
D.
O.
lIT CNS/n AR'
IITCNS/YEAP'
Ie TONSIVUP'
IIT0NS/YtA~ ,
IPARTlt"~'IStUTlH' teCIIIYR' IItCITlYRI IIIC.CTlY~IIFUEL OR ~(fUHIUldlS 1
P~OCHS '''.1 6.1 109.1 1911.1 c.1 I
fUU CCMOLST I _...._..U.I J.I...__.J.I_.~O.L__".I L_..
PO.E~ PLANT I 0.1 0.1 0.1 0.1 0.1 I
BITUMINOUS tOALI u.1 0.1 0.1 0.1 ... C.I O. ICTCO.(Vl"l 1
ANIH.AtITE COALI 0.1 u.1 G.I 0.1 0.1 o. ICTO~SIVl'kl I
RESIDUal OIL I G.I 0.1 0.1 C.I 0.1 ... IIIJUJ C'l/'RI I
DISTIllATE OIL I 0.1 0.1 0.1 0.1 0.1 O. IIlC"C "ALIY~' I
NATUKAL C.AS .. I 0.1. .-" ...0.1.._--....0.1 a.1-_--_O.I........_...O._...IIH".ctUfT/''U.1 d...
CTMER I 0.1 0.1 0.1 0.1 0.1 1
IND.CU~M.INst. 1 ~].I ].1 ].1 ~O.I . 80.1 I
BITUMINOUS tOALI 0.1 c.1 0.1 0.1 0.1 o. I lI:mS/Yl" , 1
ANTHKAtltE tOALI c.1 0.1 0.1.... 0.1 0.1 o. IIIO'SIYfAMI I
R!:SlaUAL OIL I 0.1 0.1 0.1 0.1 C.I O. III-C.. G6LIY~1 I
al$T1LLAtE .OIL.I..... ...0 0.1. _0. L..~_.. .od ".1 .O.L. ----_.D.--_UIJ('" (,.Al/'RLI. un..
NATUMAL CAS 1 ~.I c.1 0.1 10.1 H.I '10. III_EOHUfTlYRII
OTHER I ]8.1 J.I ].1... .30.1 1'.1 I
SCLID WAste I 6~.1 0.1 188.1 IS.I 8.1 I
MUNCIP INCINER I 0.1 0.1 0.1 0.1 C.\ O. ICTC;N~/YtAR' 1
OPtN eURNING I 6~.1 0.1 188.1 IS.I 8.1 H9Q. IIIL'SIYUR' I
ON-UIE IIIun..J ......._....0.1.._00_.00..1-_---. 0.1 0.1 ...0..1'00"" "'00 .0,,-.. 1.1' ~hS/YH~ I. ....I...
OTHER I 0.1 0.1 0.1 0.1 0.1 O. ,CTOO5IVEAO, I
TOtAL UUSSJONS I lu.1 9.1 )00.1 31116.1 81.1 I
EMISSICN lliVENI'PY
REGluNIDO~
POLIIICAL JURISDISCTIDNI 2
IPAMIITlYkIISOUIIU,ICClllnl IHClTlYRI INOJIIIYkllfUcL DM HFUSLI~'II.
PROCESS I IH.I "7~ ]8.1 u.1 v.1
fUEL C'MBUST I 1831.1 tH.1 --. .)U.L_...J8~.I.._.0018H.1
PO-EM PUNT I a.1 0.1 0.1 G.I C.I
BITUMINOUS tOALI C.I C.I 0.1 0.1 ...1
ANTHMACITE CCALI 0.1 0.1 0.1 0.1 C.I
RtSIOUAL OIL I 0.1 0.1 0.1 0.1 0.1
DISTILLATE OIL 1 0.1 G.I 0.1 0.1 u.1
NATU~ALGAS I a.1 C.l ........0.1._.0.1__.... C.I
OTH[~ 1 0.1 0.1 0.1 0.' 0.1
IND,CUMMoiNST. I 1831.1 '''''.1 36J.1 38901 1B~201
8ITUMI00U5 COAlI 0.1 0.1 0.1 0.1 c.1
ANTHKACITE COALI 0.1 0.1 0.1 0.1 0.1
AE51DUAL CIL I 0.1 0.1 0.1 0.1 C.I
DISTILLATE OIL I 0.1 " .0.1.. ...... O.L....___..O.I._.._- C.I .
NATURAL GAS I 3.1 0.1 0.1 6.1 26.1
eTHER I IBie.1 "'" 36301 JU.I 1816.1
SOLID WASTE I 1Q.1 c.1 'O~.I ~l.1 11.1
MUNtlP INCINEA I 0.1 0.1 0.1 0.1 0.1
OPtN eUAlilNG I 61.1 0.1 119.1 H.I 8.1
ON-SiTi .INCIN..I 0.1 dO.l..-...-.II..oL-_--'l...l_oo. ..0.1.....
OTHER I 18.1 0.1 U'.I lB.' 3.1
TOTal UISSlOliS I l085.1 J83.1 90J.I. .HI.I IUJ.I
..--.-------"-.-
A-19
I
I
1
I
~. Hld":-./VcAIoII I
J. ItTC~~/YI.M'1 I
v. 1(1(.0'... t"..1 I 'f,'. I
o. Ie. Jv.,J L:.j ,.,;.. I
.. .. IlIo;lv~LU' t/nll
I
I
Ie TO'>I.. ... I
IITO'S",'-' I
1110"" GALl'" I
1110';0 ~'L/'.' I
It IOtJOC'Jf 1/0'1
I
I
I
1
I
1
I
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1810.
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IIleOSIYE'-'

-------
EMISSION INVENTORY
Region: 005
Political Jurisdiction: 3
  Part. SO CO He  NO Fuel Or  
  (T/Yr) (T/Y~) (T/Yr) (T/Yr) (T/Y~) Refuse  Unit
~ON 58444. 9828. 150. 7996. O.   
it> I    I: ~ =-   
 I~ ~.   i-'- -,r'f!;: ons Year
         lear
          Gal, rJ
          Gal/' r
     18 . 18'. 938 .  ~uf' r
  £ Em!: 327 . 176 .    
   I-'--  4.  nrn. ons ear]
        O.  ons Yearl
    zs .     16~ . I GallYrJ
 ill IT          Gal/YrJ
      ~: 11: 13013. ED!> Cuft/Yr
~ fE 18  2 3' 65~ .   
Iq .  30~ .    
 IN.        O. ons Year
     Z~ .    4627. ons ear
     2793. 2:   ~. ons ear
 HER  O.  O.    O. ons ear
'-- TOT  B471  19308 . 7532. IU58. 66YF.   
-----
----- ~ ..~. -
'..-.-----
"'" .._--~_.__._..__._.__....
. ~------_.._._---_.
lot" I ~ I 0IL...11UU1 Wl'W
aIUIOII'OO.
'-.no ---,OLlUU.. JUt.UCUtl1011' 1
-1'ARtI I/YRIIUJllLlii .ItII.1lLIA1.._-II1U1LIJ!L HauIJUl1 FUiLJILiUUUJUIIIU_.
'IOCiSS , 9972.1 0.' 0./ ~.I 0./
-..'U£L 'C"8U~t ----___1-'.1 061 Ual (J.I Q.I
,ewER'LAIIT 1 0.1 0.1 0.1 (,.1 0.1
8ITU.lhCUS COIl.I--o.I-.-_O.I_".1 ~.I Cd
ANTHUCITE Call.I ~.I 0.1 ~.I ~.I. 0.1
AtSlOUU OIl. 1-_.0.1._0.1 0..1-_'.1_0..1
OISTILLATe all. I ~.I 0., C.I ~d 0.\
____.._IIUUKIL-U1--1-C.1 0.1 0.1 :..1 0.1
orH.R 1 0.1 c.1 C.I ...1 0.1
1110.CO...11I5r. .1--.-. 0.1.._0.1-0.1_0.1 0.1
8ITUHIIIOUS COAl. I 0.1 C.I ~.I v.1 0.1
IhTHK"ITE .'.CAI.I---..-_o.I._.o.l_o.1-__o.1 0.1
HSIOUAI. OIL 1 0.1 0.1 0., v.1 '.1
DI!.TU.UIE.-nu I IJ I GAl tJA. 0..1 0.1
..TURA.. '" 1 0.1 0.1 0.1 0.1 C.I
01H.I --..--1-- 0.1__0.1-_..1;.1 "..1---.0..1
10LIe WASH 1 115.1 1.1 ..fl.' 11>.1 102.'
.. MUNC1'.IHtIHiU-- 0.1-.-__0.1_--.11.1 W_OLI
O'EII aUIIIIIIG I "2.1 10.1 20)).1 160.1 12.1
___._QH-$111 11II'c .81... I .0.1 1I I c. I a..1 Q.. I
OTHER I 1-1.1 1.1 2U9.1 22301 zo.1
.. rOfAI..tIlUIIQ'lf1 I '''9GJ.1 ,..t-tUl.a1 "LU-~02.1
.D--LLT.ONSl'UI\I
1021 T. II r"HS/nUI
O. I IT IIIISL.r.tAll
'Htt. I no.../Yua I
I
I
I
I
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u. \I TON$/yUAI I
° .-, 11000..".."..1. .I
O. 111000 GUIYat I
O. II ".OtCUflllkll

-- -. ..- ......-1
O. \lTUN~/HAAI I
OA-JC TONS In ".1 -. 1
O. 111000 GA../III 1
O. 1 Il~OJLG~I.tnL I
O. IIIUE~.C"fT"U I
I
I
1
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I
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A-20

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._.illUU'N_IIIVIN'~RY -..-...-
-'--~--_.'--'-
.~.._.__._~--
---.
RUION"06
'OLI HCAL .IURUaUUICNI. Z ....--
..-- - .~. ..-.---
..----.--..--. "'-----""-"-
l'UIUIYRIISOIIIIYlI ItalllY.1 l"tlUIRI INOUJLYPllfU£~tfuStluNIU.... . ___1_-
'ROCHS 1 0.1 0.1 0.1 l~q.1 ~.I 1
fUlL ""duST. _.n --1_0.1-0.1--".1_'.1 0.1 1
,o.e. PLA~T 1 0.1 0.1 0.1 0.1 ,.1 I
BlTUIIINOUS coul. ....... 0.1 ....... 0.1.---_...0.1- CI.I.__.O.I o.__IITC~S/YtARI ..'--
6OTN"'CITE COALI 0.1 0.1 0.1 0.1 C.1 ,. InONSIYE.w, I
RUIOUU CIL 1 O.I..._.n. 0.1 ___0.1_. ".1 -_._.C.I____'..__III"O GAll'"' 1.-
OISTILLATE Oil I 0.1 c.1 '.1 0.1 11.1 II. 1110011 "L/'w' 1
IIATU'6L .'AS._.I-O.I--O.I_o.L--.~..l_U.1 o. IUu~o6'!I.llI.tll-
OINeR 1 11.1 0.1 0.1. 0.1 11.1 I
IIIO.CO"".IIIS!. I 0.1 '.1.__- 0.1__... C.I__o.1 ..-.. ..__.1-
.ITU-INCUS CCALI 11.1 0.1 0.1 0.1 ..1 C. IITOIIS/'(ARI 1
ANINRACITe coul :. 0.1 C.I._.__.-.O.I.-. 0.1.._11.1 _.O._ICTUIIH'
-------
__-UUUICN _1/lU/lrg"T_______. ----------
.". ..--.----..--.
Ale 'ON 1 006
'01.1 lICU ~U/lUOUC tlCU 5---.
.-.------. - .------..--
. - .-. ..- ----.
IPAATII/U,ISC..TlU. 'COUJu, IH'UiYAI I/lOIUJ_TRllfUU__GILIi'USUUh'U _._..__1_-
,"OCtH I .110.1 0.1 0.1 0.1 u.1 1
fUlL C'/l8un -- .._---.--0.I-C.'-0.-1--0.1-0.1 1
'O,EO PLANT I 0.1 0.1 0.1 0.1 0.1 I
8ITU/li/lOUS COA~I-...- ----- 0.1 c.I.-_o.I_- o.I_-_o.I--_o._IITON~/vEAOI 1__-
ANT"uelTt COA~I 0.1 0.1 0.1 0.1 0.1 O. IIIChHYEUI I
RlSlOUU C'~ 1--- - 0.1 0.1 ---Q.I--._.o.I--C.I__c.__.IC'ooO GAL/TO'_I
CIHILLAH Ol~ I 0.1 c.1 C.I 0.1 0.1 o. 111(;00 callY.' I
haruu~ C8I-.-..--I_o .1_0.1 c.1 0.1 O. I o. 1 11 Qf.u6cuf.I.lllJ I 
OT"" I 001 0.1 0.1 0.1 0.1 I
'ho.eUM.'NSI. 1 0.1 -- c.1. 001- 0.1-.0.1.._--_- . - 1.--
811uoi/lCUS eOALI 0.1 0.1 0.1 0.1 C.I ~. /lTOhS/HUI I
Ahl,,'AelTE COA~I 0.1 0.1 ...-- 0.1_-_- o.'---_._.O.I__.Q.._IITo/,S/n"'l - 1
O
-------
.-.tusua- .UVUTt-Y ..-.
-.----.-- _..
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.-.---------.-.- .
UGIONIOOJ
'OLIJICAL ~ulllsaucllal\l..l_...
---------_..-u.. .~ - ..--
.- ------
l'A..11IY-IIICII1IUI ICCll/nl IHCnlY'I l"OIl"Y.II'ukL.g~.UfUlllu"IU 1
'laeiSS I HIU.I 18~" a~7.1 Il~C.1 ~~I.I 1.."..--.
'un 'C~bUn 1._U.02.1-..15JO.~.I---!QU..I-HC.L--!UH.. I
PO.t. 'lA~T I UOH.I 1t6.23.t 100..1 J..I.I IIOU.I .--1
UTUMINQUS CUAll.. .UOH.I U'~lJ.I_--1'O..I.__JQI.I._lIa7Z.I-lOO.OOO,--IITC~S/YURI 1
UT"."ITI COAll 0.1 0.1 0.1 0.1 0.1 O. IfTCU/nARI .....--_.
RtSlOUU Oil I..... o.L._..... C.I._O.I_. o.I_..._...o.I__._O.._..IIIUOO GAL/YR, I
OISTiLLnE OIL I 0.1 G.I 0.1 0.1 0.1 0. tClOOO GAllY.. I-
.... hATURALGU.._1- O.l-O.I O.1-C.1 0.1 a. IIl.0LC6'-i1f..1illl1
0'''1. I a.. 0.1 0.1 0.1 0.1 I
l~o.CO~"IHST. 1 HR.I u.. 6H.1 ..-- J.I--_.._.19.I__~.).I__... . I
BITU-INOUS COUI )]).1 ..02.1 ".1 J.I 80.1 '~".-lcioH.SIYUAi...-1
A~T..."IU CUALI .--..-.0.1 ...-. 0.1 _..._.0.1._... c.I.__.. 0.1_...0._1 ITCHs/nul .1
USICUAl Cil I 0.1 0.1 0.1 0.1 0.1 O. ICloe.. 'GAl/Yiil-'
..... -- OISlIllA.U 1111.-1- ,.L--!9.I_Q..1-..L.L--...JB..I---'l6.'~OOO GALIYAI I
NUU.Al GAS I n.1 1.1 1.1 h.1 oH.1 uu. IClOIO"cu,f/U,1
aT..EM ..1- - 0.1. .C.I.._._.. 0.1...._..0."'__..001 I
10lia .A5I1 I '1.1 2., 'H.I 62.1 11.1 .--.--...-....-- I
MUNCI' IHCIHIR.I--... 0.1. ..0.1_._.... 0.1._._... ".L--- 0.1.__- o._Ic.,aAS/YEul--1
O'EH BUAHIN' I 98.1 2.1 'H.I u.1 18.1 &a..... ICTGHSIYURI I
QN-Illt...1IIC1.II~I-.G.I.-_.c.J OLl-C.1 0..1 U. IltCU\S/.lli&1 I
eTHtO I c.. 0.1 0.1 0.1 C.I O. IITU5/yUA, I
. TOTAL UIJUIOIU . -....1 ..-~..U9.1.. .UTlJ2.I.._-llU.L._l692.1-aJ;U~.1 1
. --. -..--- .. ___n.. - - -." . - . .------. - ---.--.. "..
--------------------------
. ..-. .-- .._.____._0______---
-.-... -".- ....--
.__.UU51tlL..lHlI.U8T.cU
.1&'IONI007
. 'OllTlCAl ~UAlI01ScrIC~LL-.. ---..----.
l'UTIT/YRlltQllT}YRI ICG.U1.JBI 1 PtUUTII 1 UtlU1.WAllfUfL.JI8..IIU_ulUUNIJ.L___1
,accESS I Un.1 0.1 0.1 ~.I 0.1 .
.'UIL CCIIBUIL.- I 'a].L---hl.1 I l..1-...6.L--.JI9..1 I
PC... PLAIIT I 0.1 0.1 0.1 C.I 0.1 I
BIT~IIIII~~S tCAll ..... . - 0.1.-..- t.L- 0.1- 0.1.- C.I__O,--IITON5/HA.I__1
"TH..tllt CCAll 0.1 e.1 U.I ~.I 0.1 u. IIHN~"IA"I 1
.lSlO~AL Oil I C.I....--.. C.I ..___0.1._. O.I.__._C.I___.'._.lCI'~~ GAL/'RI I
OIHllUTE OIL' e.1 e.1 U.I c.1 0.1 O. III~OU OAllY.1 I
....-.. Ur~RAL GAS._L--_.C.I C.I C.I 0.1 C.I o. IIJ~EC6CUf"YUI
OT"t. I 0.1 0.1 0.1 0.1 0.1 I
I~O.COMII.IN5T. '...__..18J.1 ._...267.1._.__12.1___. ~.I_.99.1___n- ..-.. . .._.1_-
BITUMINCUS CCAll T8~.1 lH.1 Il.1 ~.I 90.1 12000. ICTCNSIYEAM' 1
ANTHRACITE tOul..--....C.I-- ... O.L.__u.I_- 0.1 ___.0.1_.0,_IITCN5/YEA.1 ....1
'HIO~Al Oil I 3.1 H.I ~.I 0.1 ~.I 100. 1110"" 'Al/YRI 1
-. _'.015T1LLUl.0IL1_0.1 0.1 C.I 0.1 0.1 o. IUOOILtAV-'...L I
NATU"l 'AS I C.I 0.1 0.1 0.1 0.1 o. IIICEQ6CU'''YA'1
. aTII.:. .. _1_-_....0.1---.- . ~.I ._.~.I__.O.I_.C.I ----.-.1
SOLlO.05l1 I 0.1 0.1 0.1 0.1 C.I I
MUNCI'INCINIR.."__- C.I .---.. 0,"_-.0.L--_0.1___.0.1__G.,_I.ITON5/.YUAI._1
OPEN BUANING 1 0.1 0.1 0.1 0.1 C.I O. I ITtNSIYUA I I
-. ---..OH-UTLII1UIt. 1 0.1-0.1 0.1 c.1 C.I o. .UafULUA~1 I
OTHt. I 0.1 C.I 0.1 0.1 0.1 O. IITONI/yUAI I
. TOTAL UIJUICII5---I..- __2)58.1..._.- . l61.L.-__U..L-_6. L__' 90.1  -1
--
---
-.
-
..--...------..---
-.. -.- ---------
-----
..111.IUlI.......11lW£JltCtl~
---- . .--
. AtGICNIOOJ
... .. .-. ,our lUL ~U.150J5" IONL4_-
.._._--
.. . ....,AlUI/Y.IISII1U/UI lc..tlUJl1..IIIUWI.1 .1_UllLrJlllfUiI.-'.LA1fUU.luhIlS -.-1
'RaCISI I ..on.1 0.1 0.1 0.1 0.1 1
..'U£L 'Q"8"-51.... . c.l 11 I 11..1-Q.1 11.1 I
'O.IA PLANT I 0.1 c.1 0.1 C.I u.1 I
BITUMINOUS "All-o..._o.I-O.I_c.I_C.1 o._llrO"S/YfA~I_._.1
ANT...OCITe coui C.I 0.1 0.1 0.1 0.1 U. ICTO~S/YlA.1 I
HSiCUAL CIL ...1.-__0.1-_0.1-.0.1_.0.1_,.1 0._1 II coo. OO~/YA.I.I
OISTIlUTI Oil I 0.1 0.1 0.1 0.1 0.1 O. IIICOC "Al/YRI I
_""fUR" CAli. I '.1 CI.l 0_1 u..1 0_1 u.. HIO~.J6CUF..1L.J&J.1
OTHE. I 0.1 0.1 0.1 Cd 0.1 1
.- ..111O.Cc~~.INn. 1-..0.1.-_0.I._U.1-..0.I_o.1 ..-. - ....._1_-
BITUMINOUS COAll 0.1 0.. 0.1 C.I ~.I o. IITtNS/nAR' I
UT:OUCITE CCALI.----. O.I-...C.I-O.I_.c.l~o.1 O._IIH~SlYEOAI__1
.t510UOlOll I 0.1 0.1 0.1 0.1 0.1 o. IC'OCOCOlIYAII
-.- _...015TILLAU 1I1L-1--_0.1._0.1-0.I-.C.1 ~.I ~t-..-I.l10CC.tAl/YJ\I..1
NATUUL 'u I 0.1 0.1 0.1 0.1 0.1 ~. IlIOI06CUHIYIII
. OT"£R 1-- 0.1...-...__0.1...- 0.1-_..0.1__.".1___-... .n .. ...__.1.___-.
10LI0 .ASIi I ~l.1 1.1 1.0.1 ...1 ...1 I
IIUN'I' IHCIN... 1.---.. 0.1 .._.---.0.1 ...._-_..u.I.-_. C.I._-..__C.I..___',__IITO"SlYtAAI__L._.-....-.
O'U 8UINING I 0.1 001 0.1 0.1 0.1 O' I"O~S/YU.I I
... OH-IIT'.18CIH.-I-.o.l-o.I_.-A.1--.c.l-CL1-_.0---_.l\.T.J:_S/.YtAA I_I
OTII£I I 42.1 1.1 780.1 66.1 6.1 12000. IIIO""Y£A., I
. TOU~-'"IUlgllS...-!_.ur.1-----..1..1.-2IA..1-,,"'._"'1 1 ,
A-23

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.----.--
.. . ......---.
-.-1I11UIOILJIIVUI CR V..---...-.
-...---
UUCN.001
P04.llleAL ~UAUOUCI10U..J---.
..,--.,
.._._----_.- .--
IPARlitlYR,lIUltlYRI ICClUUI (HCULfPl INI1Ur"R/lfUfl..J1I\..AlifUJUUIIITI 1
'ROCUS I 111J6.1 II.' H.I 17.1 0.1 . .-----.-.,
.. .'UIL CCMdUST .-..-- .-1--.li10b2.1--4"UO~.I--llU.1.-1U. '--JH21. 1 I
'O.tR PLANT I illllJ.1 H'lO'.1 i1l6.1 6~6.1 JU".I I
BlluNINCUS COAL I.. ..UlIl1.1 ..-HUO..I.~IU.I.__"6.I---.JUA8.I~QQO._ICTCNS/YEU '__.L
ANTHRACITE COAL I 0.1 0.1 0.1 ~.I ..1 O. IIIONS/YEA" I
'HIOUAL OIL I _n._. C.I..----O.I..-.O.I.-- . 0.'-----0.1___0._11 lOCO CAlIYR,..!
OISIILLATt OIL I 0.1 0.1 C.I 0.1 C.I O. 111000 'AllYN' I
UTURAL '01..-.-1__".1_0.1 O.L-..O.I._C.I Q. I II 0l061.UUI.JJI.J..I
OTHE' I 0.1 0.1 0.1 0.1 11.1 1
aO,CON,INH. '........19.1. .1., .1.'__f7.1__..J.7~.1. -- . .--'
81TUMINOUS COAL I 0.1 0.1 0.1 11.1 11.1 O. ICTONSIYEAPI I
.NTHR'ClTE CIIALI C.I . C.I. 0.'-___. C.I__._O.I___.O.._ICTCNS/VEAP' .1.-----.----
'tSICUAl OIL 1 0.' 0.1 0.1 0.1 C.I O. 111000 CALI'" 1
OIHILLATE 011...1--. C.I_C.I_O.I_O.I_o.1 O. 1.11"0 "LIY'.!..!
NATU.AL US I ".1 1.1 1.1 IT.I JU.I un. 11I0&OOCUfT/YlII
. O"lHtR I... 0.1 .0.1 --.. 0.1........-.. 0.1._..._......0.1____._-.. '.'_00'.__"_1.
'OLIO ..STE I H.I 0.1 Ahol J8.1 J.I 1
MUNC" INCINiA I. 0.1 0.1 "00_.- 0.1.__.. Ool.._.._...O.I__O--ICTONS/Y£II"__J____n._..
OPt~ BU'NI", 1 0.1 0.1 0.1 0.1 C.I O. ICTeNS/YtUI I
ON-S I H..1IiIelH~l- C.I----.- O.I-._.cLI.-.. C.I 0..1__.0 ----.J.IT ClIsl.nAIlL-1
'IHt' 1 H.I 0.1 "'.1 18.1 ).1 1011. ICtCNSlYU~' I
fDfAL &IIIIIIOIIS .-. I. lUU1.1 l'UO'.1 U...I-..-.- U7.1.__.1I1Jo.L. ...... --..---........1--...........---
---,_..-:.._-~--=-----
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..- .IIIUSICh..1IlViNTCRY ---.---..--- ...-----..-------
.. ------ ._---
"'IDN.001
. 'OUlleAL ~uUSDUeHCH L- qu_.
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-,-..--..--.----..
.IUAfCflYRIUUIf/YAI ICOU/YU I KeUL1R I IlIaJI r/.1RIIF~Ct.--Q&J\ff.~U.IUIIIU.. ---._.._1__.-
"oeESS I IAJ.1 Q.I ~H.I ".1 8.1 I
..'~iC. "MBUsr .._.._.I-O.I-C.I-o.I__,.1 0.1 1
'Oot. PlINT I 0.1 0.1 .,.1- ~.I 001 I
BITYMINOUS OOALI...--.-.. Q.I .--.... '.1.----".1.- ..;.1.--.0.1 o,_ICTUhSlYtU,.--.'-----
AhT"RACIH "'LI 0.1 0.1 0.1 c.1 e.1 o. II ICIISIYtU , I
RESIULAL CIL 1...---.-.0.1.---.0.1 _.__0.1-_- O.I.__e.1 0._..111'1.0 GAL/U, 1
OIHIH.rE OIL I 0./ c., «101 c.1 u.1 Y. 11100'; 'AL/YR' I
..._... UTU.AL.'AS_I-O.I-O.I 0.1 0.1 '.1 Q. IUOtC6'~ULUU
OlHER I 0.1 11.1 0.1 0.1 Q.I I
IhO.COIIII.INST. 1 -.-....- 0.1 - ...-.- C.I 0.'-- C.I__.O.I ... . ._1
UTU~INOUS COAlI 0.1 0.1 0.1 0.1 0.1 O. IIICNS/nAA' I
ANIH".ClTE CD'LI......- 0.1---..,0.1 0.1_- u.I_-.O.I._O.._ICTONS/nA.'... L
..SIeUAL OIL I 0.1 C.I e.1 0.1 U.I O. 1li00U CAL/YRI I
.-....-. OISTlLUr&..OIL-I_..O.I-O.1 0.L-...1l~1 . C.I o. IUC'C..."L/.YRLI
NATUAAL 'AS I C.I 0.1 C.I .,.1 ';.1 o. IClOL06CUfflYRII
OlHtA .1 0.1 .0.1.--._.0.'-_. ..;.1._.0..,- -..--.._.___1
SOUO IoASTE I 14.1 0.1 'U.I ~G.I 1.1 1
NUNCI' INClNU.-1. 0.1.. ..-.. O.I----...O.I_.O.I_-.Q.I Q.---' !fehS/HARI._1.
CPtN BU'IIING I 0.1 0.1 0.1 0.1 '.1 O. IUONIIYi'" I
....- ON-5IfE.1IIC11I I 0.1--.Q.1--..Q..1-.Q..1 ~.I Q. "lONS/.UAAI I
OTHEA I 1..1 0.1 "1.1 IC.I \.1 '&l0. 1 UONS/YEAR I 1
fOUL UlUS10NS.....--.--.~Jf.I.._.._.--0.1._-1Ul.L-'0.1 11.1 I
~-:-";':'--~:.;;;-:..;...~.WiI;----
---------------
----
---....-- ----.
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_uUll~rUIl.Y
-- ....,-..--....-
aUla", 001
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. .1,aUIT/YAlI SOIiIlYRI "DLU.1R1 IKI.UJYk. .llIlinU.1R'IF~IiLU...Aif.~SIIUhITL-1
'ROCESS I 11010.1 0.1 0.1 IH.! 0.1 I
.._.fUIL COMBUn ._-L---l~~.~1.~1..'----iQS,,-.1 101.\ I
'0.(' PLINT I 0.1 e.1 '.1 ..;.1 0.1 I
blTUlIlNGUS cc"I-.O.I- 0.1_.0.1_- O.I_nC.'_C._ICTChS/'~AA'_.I
.NT""ICITE CO'll C.I 0.1 0.1 ..1 0.1 O. IU~NS/nu. I
MESICUAL elL. 1._..0.1 -----.c.I_.c.I.-_..Q.I_.c.I_- 0._111000 'AL/YAI...I
DISTILLATE OIL I 0.1 0.1 0.1 0.1 '.1 O. 11'"00 G'L/'" I
__._NATUMAL..001-J_O.1 0.1 0.1 O,j 0..1 O. IIIOL06CUFTIY~11
OTH~R I 0.1 0.1 0.1 .;.1 '.1 1
INO,COMM,IIIST. 1--1H.I--.J.1T.I-UU.L-1o~..L---.-lOI.1 .-... ... ......-.1
BIIUMINOUS COALI 0.1 C.I 0.1 .,1 0.1 O. IITONS/YUA' 1
A~THk.ClTE (IIALI...-__o.I_. O.I_o.I__...v.I__C.I___O._IITOIISlY~A" I
MHIUU'L OIL I 1.1 n.. 0.1 0.1 J.I '8. 1000U CALIYRI I
_._..OISTiLLAU.nll I 1.1 ..1 0.1 0.1 1,1 UL-.lUOo.L,~LlUI I
N.TURAL CA' I l.f 0.1 II., ..1 11.1 I". ICIOfG6'UfTlYoli
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A-24

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'RO'U5 I Iltu.1 UU.I ,~.I lU4.' 001 I
-- ""L CC~8~1I. 1_16.1-0.1 '.I_.S.I-l6.1 I
'OlltOPLANI I 0.1 0.1 0.1 0.1 0.1 I
8ITu~l~eUI COAL I 0.1. -..-. 0.1 -- ,.1---_- 0.1.____. CoI._.O..__1 nell"YURI . ..1
ANI.UCITI COUI 0.1 0.1 0.1 0.1 0.1 O. I IIONIIYUR I I
Rt51eUAL OIL 1.---- u.I.. ...-..- 0.1.-..-- e.I._.- c.1 ...----.0.1-__.- O. __1110011 UL/VRI 1___-
OISIILLAtE OIL' 0.1 0.1 0.1 0.1 0.1 O. 111000 CUIY.. I
NAIURAL.liU.. ...1_. O.I-o.I-O.I-.o.I_Q.1 o. IIUto6tuFJI.YAU
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afruMINUU5 COALI . 0.1 0.1 0.1 c.1 0.1 o. IIICIIIIYtul I
ANI"MACHt 'II.LI. 0.1. 0.1.___.0.1.___. 0.1___.. Ool.__...o._llrc""'EARI _I
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oaIILL.rt.OILI-_O.I-O.1 0.L--".! 0..1 0a-J.11000_0AL/_YALJ
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lOLl a IIAUI I HI.I 1.1 IlIO.1 11).1 11.1 I
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OISTILLAtE OIL I 0.1 0.1 0.1 11.1 0.1 O. 111000 OAL/YRI I
--- __.IIAtUNAL C.&1-I_O.1-0.1 0.1 C.I C.I o. IIlQU"ilfJ.Ll!.lL-
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A-44

-------
SOURCE NUMBER: 7 REGION NUMBER: ~ POLITICAL JURISDICTION: 7 COUNTY NAME: JEFFERSON COORDINATES X 0.0 X 0.0 Area: 0
 PARTICULATES SULFUR OXIDES CARBON ~NOXIDE HYDROCARBONS NITROUS OXIDES FUEL 1'I)TAL
 ACTUAL EXPECTED ACTUAL EXPECTED ACTUAL EXPECTED ACTUAL EXPECTED ACTUAL EXPECTED ACTUAL' EXPECTED
DOMESTI C           
COAL 79  ~27  562  135  56  22~1IO
OIL 2  73  6  ~  15  252~
NATL.GAS 133  ~  148  59  555  1~797
COMM&IND           
COAL 274  556  /41  174  89  JU135
RES. OIL 19  453  1  12  110  2791
DIST. OIL 61  602  2  24  294  10203
NATL. GAS 113  4  104  24  381  103 8
NON-PT 5113          
COAL   4460  2~7  124  1740  lJJllb4
RES.OIL 62  744  0  0  128  5146
DIST .OIL 58  430  0  0  185  5767
NATL. GAS 4  0  0  58  186  2045
WOOD 66  0  69  27  217  21667
OPEN BRN 2618  164  13906  4908  982  321210
INCINER 0  0  0  0  0  0
SOLVENT 0  0  0  4170  0  4170
VESSELS 0  0  0  0  0  0
RAILRD 184  48  517  369  553  14758
DIESEL 369  664  4798  960  5020  29527
OTHER 0  0  31  0  0  746
AS 25 MPH 0  0  0  0  0  0
AS 45 MPH 0  0  0  0  0  0
OTHER 427  0  1255  100  50  50200
ADDPOL           
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2 0          
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A-45

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AREA SOURCES
SOURCE NUMBER: 3 REGION NUMBER: 5 POLITICAL JURISDICTION: 3 COUNTY NAI'!E: Mobile COORDINATES X 0.0 Y 0.0 AREA: 0.0
  PARTICULATES SULFUR OXIDES CARBON MONOXIDE HYDROCARBONS NITROUS OXIDES ruEL TOTAL
  ACTUAL EXPECTED ACTUAL EXPECTED ACTUAL EXPECTED ACTUAL EXPECTED ,\CTUAL EXPECTED ACTUAL EXPECTED
DOMESTIC               
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RES. OIL 16  236   0   1  46  1659 
nISI. UIL   1,'1   0   1  52  1876 
NA"'L. GAS 2     0  11     6\6 
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OPEN 8RN 1460  91  7756     ~I.   I O?
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A..60

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APPENDIX B
PROJECTED EMISSIONS FOR EXAMPLE REGIONS
This appendix presents the existing (1971) and future (1975 for Set 1
pollutants, 1977 for Set 2 pollutants) emissions for each pollutant
analyzed in Section 4.0. These consist of:
Regi on 004

. Particulate Matter
. Carbon Monoxide
. Hydrocarbons
Region 005
. Sulfur Oxides
. Hydrocarbons
The data are categorized by major source type on a county-by-county basis.
B-1

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CJ
I
N
      EMISSIONS (tons/year)    
REGION 004   Particulate Carbon r.lonoxi de I Hydrocarbons 
SOURCE TYPE I Existing 1975 Existing I 1977  Existin9! 1977 I
I 
BIBB (1)           
Fuel Combustion         
Wood Products  999 150 74 74  74 74 
Industrial Processes         
Crushed Limestone  546 40 0 0  0 0 
Minerals & Earths  519 62 0 0  0 0 
Solid Waste           
Open Burning  353 0 161 0  13 0 
Incineration  36 28 416 416  56 56 
BLOUNT (2)    I~O SOURC S      
.           
CH I L TO N (3)           
Fuel Combustion  NONE       
Indus tri a 1 Processes         
Minerals & Earths  450 58 0 0  0 0 

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OJ
I
W
     EMISSIONS (tons/year)  
 REGION 004  Particulate  Ca rbon r,jonox ide liydroca rbons
 SOURCE TYPE  Existing 1975  Existing I 1977 Existiny 1977
  I 
 Solid Waste  I      
 Incineration  28 24  423  423 37 37
 Open Burni ng  75 0  5  0 5 0
 FAYETTE (4)         
 Fuel Combustion         
 Asphalt Batching  4 4  1  1 0 0
 Industrial Processes         
 Di mens i on Stone  75 42  0  0 0 0
 Asphalt Batching  2660 48  0  0 0 0
 Asphalt Felts&Coatin s 0 0  0  0 356 356
 Cement Manufacturing  3534 115  0  0 0 . 0
 Solid Waste         
 Incineration  57 17  169  169 14 14
I          

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OJ
I
~
     EMISSIONS (tons/year)   
 REGION 004  Particulate Carbon Honoxide Hydrocarbons I
r SOURCE TYPE Existing 1975 Existing 1977 Existiny I 1977 
 GREENE (5)        
 Fue 1 Combus ti on       
 Electric Companies 3082 3082 683 683 205 205 
 Industrial Processes 325 27     
 Solid Waste        
 Incineration 7 5 130 130 11 1 
 HAL E (6)        
 Fuel Combustion NONE      
 Industrial Processes NONE      
 Solid Waste        
 Incineration 110 56 1435 14-35 121 121 
 JEFFERSON (7)        
 Fue 1 Comb us ti on       
 Sawmi 11 s  450 19 30 30 38 38 
 Indus tri a 1 Chemicals 125 27 55 55 23 23 

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o::J
I
11'1
   E~lISSIONS (tons/year)  
REGION 004 Particulate Carbon r"lonoxi de Hydrocarbons
SOURCE TYPE Existing 1975 Existing 1977 Existing! 1977
Mineral Wool 3 3 0 0 4 4
Iron & Steel Mills 9412 424 86 86 319 319
Electrometall. Prod. 2248 43 11 11 10 10
Gray Iron Foundries 23 23 15 15 23 23
   i   
Fab. Structural Steel 6 6 0 0 13 13
Aircraft Manufacture 37 14 3 3 3 3
Steam Supply 10 10 0 0 11 11
Industrial Processes      
Bituminous Coal MininJ 0 0 0 0 1 2000 12000
Crushed Limestone 1300 96 0 0 0 0
Industrial Chemicals 50 37 0 0 0 0
Fertilizers 12 12 0 '0 0 0
Chemicals, General 89 0 0 0 0 0
Asphalt Batching 55 55 0 0 0 0
Cement Manufacture 66790 633 0 0 0 0
Clay Refractories 1433 132 0 0 0 0
Ready-Mixed Concrete 181 69 0 0 0 0

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to
I
0\
   EMISSIONS (tons/year)  
REGION 004 Particulate Carbon r.lonoxi de Hydrocarbons
    I   
SOURCE TYPE Existing 1975 Ex is t i ng I 1977 Existin~ 1S/77
Minerals & Earths 1382 297 0  0 0 0
Mineral Wool 3406 119 0  0 0 0
Iron & Steel Mills 52382 2157 6344  6344 10266 10266
Electrometall. Prod. 912 22 0 -  0 0 0
Gray Iron Foundries 9460 641 80727  0 418 418
Steel Foundri es 388 83 0  0 0 0
Second. Smelting &       
Refining(Non-Ferrous) 165 7 0  0 0 0
 - .     
Non-Ferrous CastinQs 868 11 0  0 0 0
Metal Fasteners(Bolts       
Nuts,Screws,etc.) 52 17 0  0 0 0
Coating & Engraving 0 0 0  0 48 48
Petro. & Petro. Prod. 22 22 0  0 6126 256
-       
Solid Waste       
Open Burning 24 0 127  0 46 0
 -      
LAMAR (8) .-      
Fue 1 Comb us t ion NONE      
Industrial Processes NONE      
\.

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OJ
I
.......
   EMISSIONS (tons/year)  
REGION 004 Particulate Carbon r"lonoxi de Hydrocarbons
SOURCE TYPE Existing 1975 Existing 1977 Existing 1977
Solid Waste      
Incineration 32 23 582 582 50 50
Open Burning 35 0 103 0 8 0
PICKENS (9)      
Fuel Combustion      
Sawmills 227 34 17 17 17 17
Natural Gas Co. 9 9 0 0 24 24
Industrial Processes      
Household App1. Mfg. 0 0 0 0 100 100
Solid Waste      
Incineration 336 158 3206 3206 269 269
51. CLAIR (10)      
Fuel Combustion NONE     
Industrial Processes      
Cement Manufacture 2800 108 0 0 0 0

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CP
I
C1J
   EMISSIONS (tons/year)  
REGION 004 Particulate  Carbon "Jonoxi de Hydrocarbons
SOURCE TYPE Existing 1975 I Exi sting 1977 Existiny I 1977
Asbestos Products 6 6  0 0 0 0
Solid Waste NONE      
  ,     
SHELBY (11)       
rue 1 Comb us ti on       
Electric Companies 17820 4010  1638 1638 492 492
Industrial Processes       
Lime Production 16802 465  0 0 0 0
Gray Iron Foundries 14 8  205 0 0 0
Cement Manufacture 9600 219  44 44 0 0
Steel Foundries 539 61  0 0 0 0
501 i d Was te NONE      
SUMTER (12)       
Fuel Combustion       
Wood Products 167 54  11 11 16 16

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t:D
I
1.0
    EMISSIONS (tons/year)  
REGION 004  Particulate Carbon r.lonoxi de Hydroca rbor.s
SOURCE TYPE Existing 1975 Existing 1977 Existiny! 1977
J       
Industrial Processes      
Crushed Limestone 50 50 0 0 0 0
Minerals & Earths 87 57 0 0 0 0
Solid Waste       
Incineration 131 32 346 346 37 37
Open ~urning 247 0 725 0 58 0
   .    
 I      
TUS CAL OOSA (13)       
Fuel Combustion      
Hardwood Dimension      
& Flooring  83 12 6 6 6 6
Kraft Pulp Mills 7488 43 340 340 347 347
_.       
Asphalt Batchinq 5 5 0 .0 6 6
Industrial Processes      
Kraft Pulp Mills 8382 178 12190 12190 0 0
Industrial Chemicals 0 0 0 0 0 0
Asphalt Batching 368 19 0 0 0 0
Gray Iron Foundries 3541 93 52521 0 0 0

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OJ
I
--'
a
   EMISSIONS (tons/year)  
RJ. r~ IN 004 Particulate Carbon f.'1onoxide Hydrocarbons
SOURCE TYPE Existi ng 1975 Existing I 1977 Existiny T 1977
Solid Waste NONE     
WALKER (14)      
Fuel Combustion      
Electric Companies 56827 3230 930 930 279 279
Industrial Processes NONE     
So 1 i d Was te NONE     
-      

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...
..
OJ
I
......
......
    EMISSIONS (tons/year) 
REGION 005  Sulfur Dioxide Hydrocarbons
 --- ..    
SOURCE TYPE  Existing I 1975 Ex is tiny 1977
BALDWIN (1)       
Fuel Combustion       
Surface active agents 3  3 40 40
Industrial Processes      
Soybean oil mills 0  0 0 0
Wood products  0  0 2625 2625
Surface active agents 6  6 346 346
Gray iron foundries 0  0 0 0
So 1 i d Wa s te       
Open burni ng  0  0 15 0
ESCAMBIA (2)       
Fuel Combustion       
Textile goods  0  0 4 4
W09d products  6  6 7 7
Kraft pulp mills 194  194 358 358

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IX!
I
--
N
    EMISSIONS (tons/year) 
 REGION 005 Sulfur Di oxide Hydroca rbons
I SOURCE TYPE Existing I 1975 Existin~ 1977
 ESCAMBIA lCont'd)     
 Industrial Processes     
 Kraft pulp mills 169 169 0 0
 Gray iron foundries O. 0 0 0
   :    
 Solid Waste      
 Incineration 0 0 28 28
 Open burning 0 0 14 0
 MOBILE (3)      
 Fuel Combustion     
 Animal feed  0 0 8 8
 Sawmills  20 20 20 20
 Kraft pulp mills 12702 12702 1462 1462
 Indus tri a 1 chemicals 0 0 6 6
 Plastics  0 0 28 28
 Aspnalt      
 felts & coatings 1 1 49 49
 Primary smelting     
 non-ferrous metals 24 24 11 11
 Internal combustion     
 enQine mfQ.  0 0 22 '22

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OJ
I
--'
W
  EMISSIONS (tons/year)  I
REGION 005 Sulfur Dioxide Hydrocarbons 
SOURCE TYPE Existing 1975 Existiny 1977 
MOBILE (Cont'd)     
General industrial     
machinerv & ecot. 172 172 2 2 
Electric comoanies 170191 69178 387 387 
Services not e1se-     
where classified 141 141 759 759 
Industrial Processes     
Animal feed 0 0 0 0 
Wood furniture 0 0 409 409 
Wood products 0 0 211 211 
Kraft pu1 p mi 11 s 1211 1211 0 0 
Building paper ~     
building board mills 0 0 0 0 
Chemicals 6967 2196 0 0 
Plastics 1650 "1650 0 0 
Paints, varnishes &     
allied products 0 0 45 45 
Asphalt batching 0 0 14 14 
Asphalt felts     
& coatings 0 0 33 33 
Ready-mixed concrete 0 0 0 "0 
E1ectrometallurglcal     
products 0 0 0 0 

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EMISSIONS (tons/year)
REGION 005
Sulfur Dioxide
I
Hydrocarbons
co
I
......
~
I SOURCE TYPE I-Existing 1975 Existiny, 1977
!    
 MOBILE (Cont'd)    
 Stee 1 foundri es 0 0 0 0
I Primary smeltlng  I  
 non-ferrous metals 4 4 0 0
 Internal combustion    
 engine mfg. 0 0 27 27
 Petrol eum T    
 petroleum products 0 0 7257 6894
 Non-classifled    
 establ ishments 0 0 0 0
 Solid Waste    
 Incineration 2 2 237 237
 Open burning 3 0 80 0

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