y? SI Poi nt \MPLE PORT /f- Pi tot (AP" h2o) Stack Temp. °F SA Poi nt *1PLE PORT ^ Pi tot (aPm H?0) Stack Temp. °F 6 -3£> J 3 d" r y^r — ^ /s^r s ' ^ 3 J40 ' 'JT • & /V# ' y ko S* /Y*' V ¦ & y Jyjra 3 3 ' 77 /0*~ 2. . 7-2- -*Q 2 t jT* /yt>~ / / 'SO /3.S- ° ¦ \ Remarks: A £ A if *yp2^jl>\/s!l&AAAg /?• 6 if fL. Ce f^O/MTS C~r A -TT .. f>a /~*/ >75- 0 £ e.T h e a. ) 4/13/78 49906T
-------
VELOCITY TRAVERSE
Plant B(SAs,f^?/? A// £ ¦<-
Location #£61 //) A hz
Station No. -V?7	
Date /? 2. /-7 Z
Pitot No.
Static Pressure J• z7
Null Check	$
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Point
M-1PLE PORT /4
Pi tot
(AP" h2o)
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Temp. °F
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(APM H?0)
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VELOCITY TRAVERSE
Plant	/•/ / L t.
Pi tot No. -jT - y
Location /Sf J-L o w "7/^V
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SAMPLE PORT J?
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VELOCITY TRAVERSE
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Location ff-t*/ 2- e / t>s4 h *
Station No.	6 *7	
Pitot No. £ — V
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VELOCITY TRAVERSE
Plant	////-£-
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VELOCITY TRAVERSE
Plant KVA,/(f/Z ////-^-
Pitot No. -±> — V
Location fat* J. I- ff, ^ //?A ha
Station No. -J-/if 7	
Static Pressure _
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VELOCITY TRAVERSE
Plant BvAsAc/z /V/^
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Location /i1 ? <*k 5TA ~r 1 c
439086
4/13/78

-------
VELOCITY TRAVERSE
Plant /?>,7 /L-t ib 	 Pitot No.
Location	//&c ¦—z^-p Cj_
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(APU h?o)
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VELOCITY TRAVERSE
Plant 8^/L-/j& /?„
Location /f&><*<££- /D/l J?
Station No. ^.

SAMPLE PORT /f" |
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Remarks:
<7*
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439090
4/13/78

-------
VELOCITY TRAVERSE
Plant BuAshdfo Si/it-
Location	/DA}]?
Station No. f g' 'y €9*7	
Date J5" /a V/"7 ^		
Pitot No. S- V
Static Pressure /• *7
Null Check	O
Time & V
Signature / /^i^i


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-------
VELOCITY TRAVERSE
Plant
Location /¦?
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Date ^T—^2. 
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Remarks: fj {?£-	5'S c' Ji- (
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4/13/78

-------
VELOCITY TRAVERSE
Plant	H/J-O
Location /f 
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-------
VELOCITY TRAVERSE
Plant 3 OA.-' /?-£ A-
Location /-f	/J)A/i
Pi tot No.

Station No.	0 7
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Null Check &
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Date ^S~-j2. ~ 7 ^
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Signature 7^>t7
SAMPLE PORT A 1
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VELOCITY TRAVERSE
Plant SL'AJAd'A.
Pitot No.	- Y
Location	p £<£. /r>/£ p7T)
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Date 5/2
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-------
VELOCITY TRAVERSE
Plant 2>JA/J,e&. /7 / 	 Pitot No. JT-^/
Location U/?L £	/ P A/? O	 Static Pressure A z7
Station No. ^ f & 7	Null Check 7)	^
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Temp. °F
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(aP" Hj>0)
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Remarks: j j^ ^ fj. j /4)fe£ .
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-------
VELOCITY TRAVERSE
Plant B/S/;//?/?
Pitot No.

Location /j £ J. Z. /P A /l
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-------
VELOCITY TRAVERSE
Plant	ft ,
Location	Z.Z/PA /l&
Station__No.	*9&*"? Q "?
Date -J>A
Pitot No. -J? " */
Static Pressure /• ^
Null Check &
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si
Poi nt
\MPLE PORT /\-
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(AP" h2o)
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Temp. °F
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Remarks: -^fc Lo 3' I A J~! C T /is v L~
fKesz O%X:?
439104
4/13/78

-------
Molecular Weight Determination
Station Number	f & 7	
Method of Analysis: Fryrite
Orsat ^	
Sample Type: Grab 		
Integrated 	
{>
Run
No.
Time
co2
°2
CO
Collected
Analyzed

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Leak Check:
O2 Check	0	% against /1
C02 Check 	q	% against /?#7
Si gnature: -A /m»-»	Date: sAd t^/y fr
Remarks:
409 24

-------
Molecular Weight Determination
Station Number ^ ^ ~7	
Method of Analysis: Fryri te	- O ^
Orsat
Sample Type: Grab
Integrated
Run
No.
Time
C02
°2 -
CO
Collected
Analyzed
Pl!
f1?i>
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pi!
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C02 Check / > 0 ~*	O % against A is\ R /^ /u~l
Signature:	nit
/ / ^ t-
Date: -fa/6- l/7
Remarks:
439 28

-------
Molecular Weight Determination
Station Number % <7 £>7
Method of Analysis: Fryrite 0%
Orsat d~J
Sample Type: Grab 	
Integrated 	
Run
No.
Time
CO2
°2
CO
Collected
Analyzed
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CO^ Check
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Signature:		 Date: 3?
Remarks
489 26

-------
Molecular Weight Determination
Station Number e] C ~7
Method of Analysis: Fryrite^^?" jt> ~*/f
Orsat
Sample Type: Grab
Integrated
Run
No.
Time
co2
°2
CO
Collected
Analyzed
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D
0
-------
Molecular Weight Determination
Station Number 4Si-o7
Method of Analysis: Fryrite !2> "	
Orsat
Sample Type: Grab 		
Integrated 	
Run
No.
Time
C02
°2
CO
Collected
Analyzed
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Leak Check: tint*
C>2 Check	Dt	% against A
tt
% against 	
CO-, Check
Si gnature:
Remarks:
489 29

-------
Molecular Weight Determination
Station Number ^^ 7	
Method of Analysis: Fryrite '-/-/J?
Orsat
Sample Type: Grab 1 	
Integrated 	
Run
T i me
CO?
°2
CO
No.
Collected
Analyzed


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0
Leak Check:
02 Check	/< ()	% against Am b f
-------
Molecular Weight Determination
Station Number H & ^		
Method of Analysis: Fr.yri te	^
Orsat 	
Sample Type: Grab 	
Integrated 	
Run
No.
Time
co2
°2
CO
Collected
Analyzed
n
H/v
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-------
Molecular Weight Determination
Station Number J? $7	
Method of Analysis: Fry rite ^
Orsat •2~ ^
Sample Type: Grab
Integrated 	
Run
No.
Time
C02
°2
CO
Collected
Analyzed
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& f/2-
a 1! Z
£


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Leak Check:

Check
JL/> *
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O
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% against A/f/3/e/LjT-
% against
c—r	/ ^
Signature:		 Date: S~/2-S/7£r
Remarks:	j	filU
439 38

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI *	2.	DATE ^ /XI / 7%
MINIMITE #// 3/2-3	NAME \ k»0O..f1^£>
MINIMITE
DTI
MINIMITE
DTI
READING (°F)
READING (°F)
READING (°F)
READING (°F)
50
60
700
(*<* °l
60
Lo 0
750
ISO
70
70
800

80
3 0
850
is z
90
<1 o
900
<\ 0 '
100
10 o
950

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI #_JL	
MINIMITE § // 3 / 2.^
MINIMITE	DTI
READING (°F)
READING (°F)
READING (°F)
50


700
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60
6,-0

750
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70
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800
% D ^
80
8" O.

850
?3 2-
90
f /

900
f d /
100
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125
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1000
J 0p7>
DATE	7^ •
NAME ^	/fA
MINIMITE	DTI
READING (°F)
150 /jrl
200 3-D 2-
250 ^-5-2-
300
350 53-/
400 *4/
450 9^
500 -*dT>
550 >yf
600-5" f #
650 fay
]fu v-pf 'Z~
1/ o l
< i
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43302"

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI # //-3j q''£>	DATE S~- J/ - ~7&
MINIMITE #	NAME,
MINIMITE	DTI	MINIMITE	DTI
READING (°F)	READING (°F)	READING (°F)	READING (°F)
50	^	700
60	60	750
70	70	800
80	£0	850
90	900
100	IOO	950
125	1000
150	i<_[cj
200	gO\
250
300	3o I
350	351
400	3cicf
450
500	^/99
550
600
650
UP
489028

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI §	DATE
MINIMITE § //S
V 2-2-
NAME

MINIMITE
DTI
MINIMITE
DTI
READING (°F)
READING (°F)
READING (°F)
' READING (°F)
50
JSTO
700
7&o
60
Go
750
~7S~/
70
70
800

80
erO
850

90
90
900

100
/oO
950

125
/2^
1000

150
/s~o


200
2-OQ


250



300
3o 2__


350
3tt-


400
aSO/


450
^5"/


500
svo


550
S^c/


600
s?
-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
2
DTI #	X.		DATE ,
MINIMITE § //3/ 2~~i-—	NAME
t£2-
J2.5 2-
r3 & /
3^3
4e 3
450	4/ z_
500	—
550
600
650
/ZUA/	Of
MINIMITE	DTI	MINIMITE	^ DTI
READING (°F)	READING (°F)	READING (°F)	READING (°F)
50	^	700
60	6 /	750
70	7 ^	800
80	*3	850
90	900
100	J0!	950
125	^	1000
150
200
250
300
350
400
439030

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
YHo (
DTI § 1 		DATE			~
MIMIMITE	MAME	^	^

MINIMITE	DTI	MINIMITE	DTI
READING (°F)	READING (°F)	READING (°F)	READING (°F)
50	700
60	c?° 750
70	& 800
80	"I 850
90	y<-i 900
100	^ *1 950
125	\-LiT 1000
150	) w ^
200	2o">-
250	t. s" "L
300	1 o3>
350	3 S" "2-
400	W o I
450
500
550
600
650
489031

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI # -//_-/ j?. ^	DATE ,T- ^ - 7

200
/??

250
3S~/

300


350
.S57

400
•39 &

450
V 5~0

500
S'OQ,

550


600


650


moi
489038

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS	o
DTI §	I		DATE ^ n	V

-V
MINIMITE # ,/3/ iz-	NAME 3.
	 ^	
MINIMITE DTI	MINIMITE	DTI
READING (°F) READING (°F)	READING (°F)	READING (°F)
50
w S
700
60
O
750
70

800
80

850
90

900
100

950
125
1^/
1000
150
1 S"C

200
2 O O

250
h s-c

300
3>c^-

350
3

400
c/ o 0

450


500


550


600


650
^ T,°'
n.,./**- /a

499040

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI # 2	DATE vjTV Z2Z -IB
' /SL.
3 - -7g
MINIMITE # //3/ -X.-2-
NAME^ /—Y.
MINIMITE
DTI
MINIMITE DTI
READING (°F)
READING (°F)
READING (°F) READING (°F)
50

700
60

750
70
6>?
800
80

850
90
Sf
900
100

950
125
/-2/
1000
150
A/f

200


250


300


350
3£~/

400


450
V

500


550


600


650



-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI §	DATE	7 g
MINIMITE § //3J3-2-	NAME_
MINIMITE	DTI	MINIMITE	DTI
READING (°F)	READING (°F)	READING (°F)	READING (°F)
50

700
60
6/
750
70
V/
800
80

850
90
?o
900
100
/6Z>
950
125
/as'
1000
150


200


250
J2^2~

300


350
3

400
*-/¦&/

450


500
Jy&O

550
jvS~/

600


650



439043

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI §
_aL
MINIMITE #_
MINIMITE
//-?/-? -2.
DTI
50
y ?
60
sr
70
cr
80

90
n
100
9Y
125
1*3
150
Wr
200
71 o O
250
P-S"/
300
3 oi
350
3S~f
400
t/o o
450
L/*ro
500
,soo
550

600

650

1#^' Oj


DATE	vA'F*
NAME
MINIMITE
READING (°F)
700
750
800
850
900
950
1000
DTI
READING (°F)

439044

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI § ^^2		DATE7B
MINIMITE #
MINIMITE	DTI MINIMITE	DTI
READING (°F)	READING (°F)	READING (°F)	READING (°F)
50	^TQ 700
60	*57 750
70	^ 800
"7C-
80	7 ' 850
90	^ 900
100	950
125	/SUj- 1000
150	/c^(j
200	J2 Oj
250
300	^6/
350	3S~\
400	V
450
500	5Z? /
550	5^
600
650	0^'

v"*"? £ /
499045

-------
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-------
CHEMISTRY DATA

-------
o " 0
ENVIRONMENTAL PROTECTION AGENCY	'^— <*/*/"">*
OFFICE OF ENFORCEMENT
NATIONAL ENFORCEMENT INVESTIGATIONS CENTER
BUILDING 53, BOX 25227, DENVER FEDERAL CENTER
DENVER, COLORADO 80225
o Mr. Tim Osag	DATE June 7, 1978
Field Operations Branch
ROM
R. C. Ross
iubject Results of Method 8 and Field Blank Samples, Bunker Hill Survey
The subject samples were collected from the second and third impingers for
each test and combined respectively into one sample per test. Field blanks
were collected as described in the survey report. Appropriate aliquots
from each of these samples were analyzed in accordance with the titrimetric
procedures referenced in Method 8, 40 CFR 60.
Results
Table 1 reports the total number of milligrams (mg) of SO? per sample based
upon the original volume of the sample. From this data plus the volume
sampled, SO? concentrations may be calculated. Results from reference
standards obtained from RTP plus gravimetric calibration of the class A
pipets used during the determinations indicates a consistent bias of -.5
to -1.0% in the determinations, i.e. the reported results could validly be
multiplied by 1.005 to obtain a more accurate number.
Quality Control
Field blanks were sent back for analysis to indicate the effectiveness of
glassware cleanup between sample runs. Results are presented in table 2.
Although there is some variability between blanks, the amount of SO2 (as
S04=) present in the blank samples is negligible in comparison with actual
sample values. Results of these blank samples demonstrate that the sampling
crews gave careful attention to cleanliness under adverse conditions—a
difficult and praiseworthy achievement.
All titrations were performed in duplicate. Difference between duplicate
titrant volumes ranged from 0 to 0.09 ml with an average difference of
0.02 ml. For a typical 15 ml titrant volume, this 0.02 ml would amount to
0.1% difference between duplicates.
Four samples—one from each site—were spiked with H2SO4. Recoveries ranged
from 99.5% to 102% with an average of 100.9%; however, the precision of the
spiking technique used to determine recovery was approximately +2%.
A reference sample obtained from EPA-RTP was analyzed just before analyzing
the subject samples. The true value of this sample was unknown to me until
results had been reported to the NEIC QA coordinator.

-------
-2-
Sample Number: 2172
True Value: 4347 mg/dscm*
Reported:	4349 mg/dscm
Results for the other RTP reference samples analyzed previous to this had
been about 0.5% to 1.0% low using the same BaCl2 titrant. Thus, it is
estimated that a bias of approximately -0.5% may be applied to the subject
sample results.
The class A volumetric pi pets used during all of the determinations were
calibrated gravimetrically at 20°C using distilled water. The volumes
delivered ranged from 0.1 to 0.3% low. This would, in part, account for
the systematic error described in the previous paragraph.
Richard C. Ross
Attachments
*dscm = dry standard cubic meter
cc: Meiggs
Young

-------
TABLE I
Sample Number
Sample Volume, ml
Total SO
489-01-01
1000
7580
489-01-03
1000
9570
489-01-05
1000
10500
489-01-06
1000
10200
489-01-07
1000
9580
489-01-09
1000
3820
489-01-10
995
4800
489-01-12
1000
4580
489-01-13
1000
3640
489-01-15
1000
6290
489-01-16
1000
15400
489-02-01
1000
5800
489-02-02
1000
5900
489-02-03
1000
7010
489-02-04
1000
4720
489-02-05
1000
3310
489-02-07
1000
3140
489-02-08
1000
2050
489-02-09
1000
4080
489-02-11
1000
3990
489-02-13
1000
79Q0

-------
TABLE I, cont.
Sample Number
Sample Volume, ml
Total SO?*
489-04-02
1000
4190
489-04-03
1000
7030
489-04-04
1000
4020
489-04-05
1000
4640
489-04-06
1000
3190
489-04-08
1000
3440
489-04-09
1000
5170
489-04-10
1000
3340
489-04-11
1000
3300
489-05-02
1000
1 3000
489-05-03
1000
5980
489-05-04
1000
20600
489-05-06
1000
18300
489-05-07
1000
19400
489-05-08
1000
13600
489-05-10
1000
29600
489-05-11
1000
21700
489-05-12
1000
12200
*Mean value of the field blanks (1.75 mg) subtracted.

-------
TABLE II
Blanks
489-01-04
489-01-08
489-01-11
489-01-14
489-02-06
489-02-10
489-02-12
489-04-07
-04-12
489-05-05
-05-09
-05-13
Sample Volume, ml
1000
990
1000
1000
1000
1000
1000
1000
1000
1000
1000
1000
Total SO?, mq
.64
1 .28
1.92
-0-
5.73
.61
-0-
.64
.64
5.57
.96
3.02
Ave = 1.75 mg

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-------
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MCTP./I / 7Q

-------
APPENDIX A
GLOSSARY OF SYMBOLS
This is a glossary of the symbols used in this document.
Symbols used and defined in the reference method (section
5.11.1} are not repeated here.
Xq	Given wavelength of light.
d	Difference between average measured concentration
value of calibration gas A and the continuous
measurement system reading during calibration error
test.
Difference between average measured concentration
value of calibration gas B and the continuous
measurement system reading during calibration error
test.
SUM 1 Sum of the values determined in a calibration
error test.
?
SUM 2 Sum of the squares of the dA values (dA ) used in
the calibration error calculation.
SUIi 3 Sum of the dB values determined in a calibration
error test.
2
SUM 4 Sum of the squares of the ds values (dB ) used in
the calibration error calculation.
d	Difference between the reference method value (ppm)
1	and the average analyzer measurement for the i.tn
interval in an accuracy test.
d 2	Square of d^ value for it*1 interval.
SUM 5 Sum of the d^ values for nine accuracy test
measurements.
2
SUM 6 Sum of the squares of the di values (dx 3 used in
a calculation of continuous system accuracy.
SUM 7 Sum of the reference method measurements determined
in an accuracy test and used in the calculation of
system accuracy.
AZ	Difference in zero reading from zero reading taken
two hours before.
2
6Z	Square of 6Z value.
(10)

-------
8
9
. 10
; ll
4
2
4
2
; 12
; 13
[ 14
1 15
[ 16
1 17
Calibration drift calculated using the 2-hour span
drift (pp.i) minus the zero drift (ppm) for the
corresponding time period.
Square of 2-hour calibration drift value.
Sum of the AZ values taken in a series of 2-hour
zero drift tests.
2
Sum of the squares of the AZ values (AZ ) taken m
a series of 2-hour zero drift tests.
Sum of the calibration drift (C) values calculated
from a series of calibration drift tests.
2
Sum of the squares of calibration drift values (C )
calculated after a series -of 2-hour calibration
drift tests.
Difference in zero reading from zero reading taken
2 4 hours before.
Square of the 24-hour zero drift value.
Calibration drift calculated using the 24-hour span
drift (ppm) minus the zero drift (ppm) for the
corresponding time period.
Square of the 24-hour calibration drift value.
Sum of the 24-hour zero drift values taken from a
series of 24-hour drift tests.
Sum of the squares of the 24-hour zero drift values
tuken from a series of 24-hour zero drift tests.
Sum of the 24-hour calibration drift values.
Sum of the squares of the 24-hour calibration drift
values (C242'•
Sum of the upscale response time measurement values
(seconds).
Sum of the downscale response time measurement
values (seconds).
Sample size for the auditing.
Upper quality limit determined from performance test
data and used in assessment of routine calibration
data.
Lower quality limit determined from performance test
data and used in assessment of routine calibration
data.
(11)

-------
G 1-e BLAST FURNACE 1
(STATION 48906)

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-------
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-------
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VELOCITY TRAVERSE
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439049
4/13/73

-------
Molecular Weight Determination
StatSon Number V'Vf/^"
Method of Analysis: Fryrite	
Orsat 	03>
Samp&e Type: Grab 	
Integrated 	
O I, D3~
Run
No.
Time
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Date:	7^
Remarks: ::
489 02

-------
Molecular Weight Determination
Station Number		
Method of Analysis: Fryrite_ o4: as~
Orsat 	
Sample Type: Grab ^	
Integrated 	
Run
No.
Time
C02
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CO
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-------
Molecular Weight Determination
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Method of Analysis: Fryrite Q _ Z5~/
Orsat O ^
Sample Type: Grab ^	
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Run
No.
Time
C02
°2
CO
Collected
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/PIS"
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-------
Molecular Weight Determination
Station Number	— <5 5~
Method of Analysis: Fryrite
Orsat 	
Sample Type: Grab 	X	
Integrated 	
Run
No.
Time
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439 18

-------
Molecular Weight -Determinati on
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Method of Analysis: Fry rite	//
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-------
Molecular Weight Determination
Station Number
Method of Analysis: Fryrite /3 ¦
Orsat / 3
Sample Type: Grab		
Integrated 	
Run
Time
co2
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CO
No.
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-------
Molecular Weight Dtettermi nation
Station Number	S~	
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Method of Analysis: Fryrite /6"
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Time
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CO2 Check 	%	against ///;) A	
Si gnature: /.		 Date:	<5 tW7F
Remarks:
489 14

-------
Molecular Weight Determination
Station Number	& J-?"	
Method of Analysis: Fryrite /7^ / $
Orsat
Sample Type: Grab		
Integrated 	
Run
Mo.
Time
C02
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489 15

-------
Molecular Weight Determination
Station Number -		
Method of Analysis: Fryriter^?
Orsat 	
Sample Type: Grkb ^	
Integrated 	
Run
No.
Time -
C02
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CO
Collected
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Signature: /		 Date: S'/ft/lfi'
Remarks:
489 22

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI § /		DATE	
MINIMITE # /fSf^	NAME
MINIMITE	DTI	MINIMITE	DTI
READING (°F)	READING (°F)	READING (°F)	READING (°F)
50

700
60

750
70
70
800
80
7?
850
90
fo
900
100
ff
950
125
/M
1000
150
/4V

200
2 CO

250


300
2pI

350
3^2-

400
t/o!

450


500


550


600


650


489CC0

-------
DTI §
MINIMITE # //g/£4L
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
_/		dat-e_
NAME_
MINIMITE
READING (°F)
50
60
70
80
90
100
125
150
200
250
300
350
400
450
500
550
600
650
6	/
7
/ oo
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-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI # /		DATE S'Z/^'hT
MINIMITE f //3/$X	NAME		
MINIMITE DTI	MINIMITE DTI
READING (°F) READING (°F)	READING (°F) READING (°F)
50

700
60
Co
750
70
70
800
80
7?
850
90
?0
900
100
?¥
950
125

1000
150
Z/5^

200
£oi

250


300
3o/

350
357

400
Yoo

450
500
550
600
650
489010

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI §
L
MINIMITE # I/3/ZL2.
MINIMITE
READING (°F)
DTI
READING (°F)
DATE_
NAME

MINIMITE
READING (°F)
er-
-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI §	/		DATE	
MINIMITE t 1/3I2-3—	NAME		
MINIMITE	DTI	MINIMITE	DTI
READING (°F)	READING (°F)	READING (°F)	READING (°F)
50	700
60	CpO	750
70	~7Q	800
80	850
90	7 f	900
100	/O O	950
125	1000
150	/5o
200
250	£L£3
300	3ox^
350	^^2-
400	J
450
500
550
600
650
489011

-------
CALIBRATION,Q$y DIGITAL TEMPERATURE INDICATORS
DTI §	/			DATE j/zo /yT
MINIMITE # //3/X9-	NAME
MINIMITE	DTI	MINIMITE	DTI
READING (°F)	READINM°F)	READING (°F)	READING (°F)
50	J>7	700
60	£>0	750
70	800
80	8*0	850
90	900
100	950
125	/£t//	1000
150	/5q
200
250	£*T/-
300	J?C (
350
400
450	l/Lf^
500
550
600
650
499012

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI #	/		DATE S//L~/y?-	
MINIMITE # //3/^^	NAME
MINIMITE	DTI	MINIMITE	DTI
READING (°F)	READING (°F)	READING (°F)	READING (°F)
50	y
-------
CALIBRATION OF DIGITAL T£f#£RATURE INDICATORS
DTI § J' PATE &/f-?A-"^	
MINIMITE #	!NAME_
MINIMITE DTI	JfflJNIMITE DTI
READING (°F) READING (°F)	[READING (°F) READING (°F)
50
37
700
60

750
70
70
$00
80
fro
$50
90
?o
900
100
/oo
950
125
/£¦£"
1.000
150
N?

200
ZLoo

250
£&-

300
3°/

350


400

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI £	I		DATE >no— P	^
3 ^	13,; o
MINIMITE § 1/3/-LTL-	NAME A CVx-r	^
		—^x
MINIMITE	DTI	MINIMITE	DTI	ifgfoS
READING (°F)	READING (°F)	READING (°F)	READING (°F)
50
.SO
700
60
G?o
750
70
7 o
800
80
h-l
850
90
*1 1
900
100
l o I
950
125
>1 if
1000
150
)S O

200
10 o

250
-I g'V>

300
3 oi

350
3^3

400


450
7 5-2.

500
S°3>

550


600


650


439021

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI §	/ /		DATE_
MINIMITE § //2ll 3-0-	NAME	/FLo /X.
MINIMITE	DTI	MINIMITE	DTI
READING (°F) ~J_ - READING (°F)	READING (°F)	READING (°F)
50
So
700
60
Cd o
750
70
7D
800
80
So
850
90
5?
900
100
??
950
125
/?¦
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SUM 2

CALIBRATION
II00
GAS MIXTURE "B" : (^?4~ ppm) *
Reading
Time
Measurement Sys. Reading
¦ft*
dD
*B2
/? Vtrt-fcs
ppm
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sun A

Average value determined in analysis of calibration gas
mixtures.
* *
d = Difference = Average Value (ppr) - Measurement. Syst.
Reading (ppm)
Note See page 2-52, 5.11.3.5.1, Guidelines, Vol. XV, EPA-65Q/4-7A-0C5-O. ^
(1)

-------

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CALIBRATION GAS niJ.TLJHE 'J

/76S?
SUM 1



sun 2
mmmmMMit 2*7

9

Reading
Time
Keasurcaient Sys. Reading
* *
dB
-B2
Volts
ppm
1





2





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v-.- - ¦¦•v.
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*
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Note See page 2-52, 5.11.3.5.1, Guidelines, Vol. XV, EPA-650/4-74-0C5-O.
(1)
«irif 4 do
02

-------
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NOTE:See page 2-52, 5.11.3.5.2, Guidelines, Vol. XV, EPA-650/4-74-005-O.
ur ir_/i /70
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11



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14
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63
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SUM 16
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AVERAGE
mmmm
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Concentration
(ppn)
Do /nscale
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(seconds)
1

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Note: See page 2-59, 5.11.3.5.3, Guidelines, Vol. XV, EPA-650/4-74-005-o.
22
(5)
ncir.^ /"70

-------
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SUM 16
mmmmm

AVERAG—
mmmm
Vest No.
Concentration
i /7Q

-------
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HOURLY AVERAGES FOR TECO SO? SOURCE MONITOR
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(8)
38
Mrrr.a no.

-------
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39
~.irrr.a /70

-------
APPENDIX A
GLOSSARY OF SYMBOLS
This as a glossary of the symbols used in this document.
Symbols used and defined in the reference method (section
5.11.1] are not repeated here.
XQ	Given wavelength of light.
d	Difference betv;een average measured concentration
value of calibration gas A and the continuous
measurement system reading during calibration error
test.
dB	Difference between average measured concentration
value of calibration gas B and the continuous
measurement system reading during calibration error
test.
SUM 1 Sum of the dA values determined in a calibration
error test.
2
SUM 2 Sum of the squares of the values (d^ ) used in
the calibration error calculation.
r.UM 3 Sum of the dg values determined in a calibration
error test.
2
SUM 4 Sum of the squares of the dg values (d0 } used in
the calibration error calculation.
d.	Difference between the reference method value Cppm]
1	and the average analyzer measurement for the itn
interval in an accuracy test.
d^2	Square of value for ith interval.
SUM 5 Sum of the d^ values for nine accuracy test
measurements.
2
SUM 6 Sum of the squares of the dx values (di ) used in
a calculation of continuous system accuracy.
SUM 7 Sum of the reference method measurements determined
in an-accuracy test and used in the calculation of
system accuracy.
AZ	Difference in zero reading from zero reading taken
two hours before.
2
AZ	Square of AZ value.
(10)

-------
i 8
; 9
I 10
; li
4
2
4
2
. 12
; 13
; 14
: 15
: 16
: 17
Calibration drift calculated using the 2-hour span
drift {p^.'O minus the zero drift (ppm> for the
corresponding time period.
Square of 2-hour calibration drift value.
Sum of the AZ values taken in a series of 2-hour
zero drift tests.
2
Sum of the squares of the AZ values (AZ ) taken in
a series of 2-hour zero drift tests.
Sum of the calibration drift 
-------
G 1-d SIMER MACHINE V/EAK STREAM
(STATION -8305)

-------
G 1-d SINTER MACHINE WEAK STREAM
(STATION 48905)

-------
..It

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Date	
Operator	
Sample box No.
Meter Box No.
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-------
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PRELIMINARY FIELD-DATA
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Plan-	^
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Comments:
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Sample box No..
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PARTICULATE FIELD DATA
IMPORTANT-FILL IN ALL THE
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the start of
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48SCI0

-------
Plant
Run No.
Location
Date
Operator	
Sample box No
Meter Box No.
Meter AH
, ttAhO
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PARTICULATE FIELD	DATA
VERY IMPORTANT-FILL IN	ALL THE BLANKS
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Time: Start Time fOQ-^
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Ambient Temp. °F_
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-------
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-------
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Run No
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ID.
K^LLc^ , T&fihb
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Operator v¥-r£^j2	
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Post-Test Leak checkup /6	tOoT(Lffa C'fVo)

-------
Plant - 	Lju-^. mJU? c.
Run No. //
Location	3cL*/~x>~
Date
v\^
Operator p>

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Sample box No. " \
Meter Box No.	[_
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PARTICULATE FIELD DATA
VERY IMPORTANT-FILL IN ALL THE BLANKS
Read and record at the start of
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Time: Start Time \H W /
End Time <-h£	
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'^1
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Bar. Press. "Hg"~
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Temp
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-------
V i an u
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Location"
Date

	/L	
End Time } HL>	
Ambient Temp. °F {,2-
Bar. Press. "Hg" nl>lX
"C" Factor
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Post-Test Leak checkfjg?	~ ,QQ3


-------
SAMPLE CLEANUP SHEET
Plant: Gv—I CU) >
Address: ^tiiSLyy ^ S/,
Station No.: 1!r'S a 	
Run No. : o~*-	
Barometric Pressure: m ."2-1 " H^
	Date:	1 ^ \ 1 ^ ^
_0perators:
_Ambient Temperature: Q ~J
Sample Box Number: /	
Impinqer 1
0
Final Volume	£3/, O jyd'oK V*/-		,3^
Initial Volume	U
Initial Volume
Volume collected -¦	mN
Impinqer 2
Final Volume	7 >	> S"	z- 0 i	
Initial Volume	nd-^
Volume collected / <7 ) ml
Impinqer 3
Final Volume	7 yrtijof	*		
Initial Volume srs.c
Volume collected 3! 7 ¦ 7 ml
Impi nqer
Final Volume	ml of	
Initial Volume	ml
Volume collected	ml
Impi nqer
Final weight	6 L3 3 qm of		
Initial v/ei gh t o.	^
Weight col lected	qm
Total Volume Collected ZLC),
-------
SAMPLE CLEANUP SHEET
Plant:
Address: tvJuU-^s, \-Aci) .
Station No.: <^y Sr osT	
Run Ho.: 03	
Barometric Pressure: I.'). ?> i
	Date '•	1 \ 1 ^ ^ ^
Operators:
_Ambient' ^Temperature:
Sample Box Number:	/
Impinger 1
Final Volume	V %?. 6 ml of
Initial Volume ^1S."2- .jwtc.-
Volume collected-*-3 # /y!-ml
-f.O
Impinger /£
Final Volume	ml of	
Initial Volume	ml
Volume collected	ml
V . O
Impinger Z "2-
Final Volume		ml of	VQ \A-l O
Initial Volume S31.S	
Volume col 1 ected /3 • °} c/< ml ^
Impinger 3
Final Volume S~£s. ! ml of ) s °/a Mt_0^
Initial Volume S3,3 S
Volume collected- 7-^- ^ml
- ? T
Impinger
o 0
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Final weight	& f S~. 3 gm of S
Initial v/eight CgMT.3 gm
Weight collected 3 %. o gm
Cf
Total Volume Collected	ml
Fi1ters
Height
No. Final Weight Tare Weight Collected
	 	gm		-_gm 	gm
_gm		jm 	gm
Cleanup performed by ^		on 5/xr/7 y
w Jet—		 P/T-jOlM
^Sl i^rX4) ' u 0 J 5/i5/~>>r
489011

-------
SAMPLE CLEANUP SHEET
Plant:	I-J,LL-	Date:
Address: ^g,C-Lc ^, r>i&hh,	Operators :
Station No. : ^
Run No.:	Q */	Ambient Temperature:
Barometric Pressure: 0^7,3~1	Sample Box Number:	[	
Impinqer 1
Final Volume StLml of	c< 	
Initial Volume	3—
Volume collected ,2.3 1 . ml
Impinqer 3
Final Volume S&b-L? ml, of	/-/t-Oi.	
Initial Volume ^L>o.~7 pn^rvs
Volume collected 3- r,£;	ml
Impinqer
ml of
Fi nal
Initial Volume_
Volume collected
Impi nqer
Final weight	~~72-Q- O	gm of_
Initial weight u9o 2—	gm
Weight collected 3 / . r	gm
Total Volume Collected	ml
Fi 1ters
Wei ght
No.	Final Weight	Tare Weight Col 1ected
	 	gm		gm 	gm
	 	gm		gm 	gm
Cleanup performed by		on	f
vJ -s-vJ-sjb	t-i jutjcfejL-^ ,0 2_i o |V
uiLSLJUL <3s°
\, U/O-
~b	439012

-------
SAMPLE CLEANUP SHEET
Plant:	//i LC	Date":
Address:	, -C?lAho Operators:"
Station No.: U"J	
Run Mo.:	OL> 	Ambient Tepiperature: */tyc/*
Barometric Pressure: 2Z? 	Sample Box'Jtjumber: j	
Impinqer 1
Final Volume	^/J^7 £>	ml ooP(^>0A-ooi—
Initial Volume ^3 ^ ft	''
Volume collected - Q <-/, X	mlv
Impinqer 2
Final Volume		m. I jnl of_
Initial Volume	pXaro
Volume collected	2.3 f m"H
Impinqer 3
Final Volume	^ S ml of A4- Cj cu
Initial Volume
Volume collected zl 	qm
Weight collected /if <3-	gm
Total Volume Collected	ml
Fi1ters
Weight
No.	Final Weight	Tare Weight Col 1ected
	 	gm		gm 	gm
	 	gm		gm 	gm
Cleanup performed by		_on_ tA/vit
439013

-------
SAMPLE CLEANUP SHEET
Plant:	l-Vl^	Date: ^	-
Address : ytJU... f		Operators : ~C/T
Station No.: 3 - £ V c	:	
Run No.:	c Lz o") ?1'v	Ambient Temperature: A V ' i'
Barometric Pressure: i7,£3	Sample Box Number: /	
Impinqer 1
5^7 j/7 m1 °f	~T*70pPn {?/?-,
£C^m	1 '
	 if '1	ml
Final Volume	5 / 4/^ ml of L>7o Ld>Ot>Pr>£PA^c,(—
Initial Volume	^
Volume collected - it. 7 ml'
Impinqer 2
Final Volume	ml of /jT'/£,
Initial Volume *,'£/.
Volume collected / V, ' m'M
Impinqer 3
Final Volume	 S'V'Q -5^"rnl ..of /3^ U. O,
Initial Volume ,
-------
SAMPLE CLEANUP SHEET
Plant: A,//uu££ z//o^	=	Date:	 , <1- s-?jt
Address:	/r>4*o	Operators :	k Jh
Station No.:	'-f,R'9h <""
Run No.:		Ambient Temperature:	-
Barometric Pressure: SL*7. t>o	Sample Box Number:	
Impinger 1
f i.
Final Volume	3 ml of . /$ & /V? c> /~14asq C
Initial Volume £.5~&.6~
Volume collected	ml
Impinger 2
Final Volume	Sir/- 6 ml of /S~	& r>
Initial Volume 5'^'/. /
Volume col 1 ected 3 c , <-/ ml
Impinger 3
Final Volume	ml of /3" ^o
Initial Volume	C 7. / ..arfcrA
Volume collected	! y ? m"M
Impinger
Final Volume	ml of		
Initial Volume	ml
Volume collected	ml
Impi nger
^ r77 gm
Total Volume Collected	ml
Fi1ters
Weight
No.	Final Weight	Tare Weight	Col 1ected
	 	gm		gm 	gm
	 	gm		_	gm 	gm
Cleanup performed by V Yv j	^ ,	on
T/^JyR-
439015

-------
SAMPLE CLEANUP SHEET
Plant:	M>LL	Date: 4^7/7^~
Address :		Operators : cAvW/>a^j6
Station No.: VSvo ^C"	•	
Run No.:		Ambient Temperature:
Barometric Pressure: .3.7,7/0	Sample Box Number: /
Impinqer 1
Final Volume		»r of 80%
Initial Volume	. ;3 '
Volume collected ^ y, 6	prr
Impinqer 2
Final Volume	 3^wf of /K*% A^7.0o-~	
Initial Volume	y .art Am
Volume collected / / r
Impinqer 3
Final Volume	_5^7,5T prT"of	A/t-O
Initial Volume 33^ mf
Volume collected ^ 3
Impi nger
_Final Volume	ml of
iTnTTaT-Vt^l __
Volume collected
Impi nger
Final weight	~7-t>^ Am of ^7<" =¦ "3-	439023
/C	--	/CC.o^

-------
SAMPLE CLEANUP SHEET
Plant:jr	\<<=r? h)yL-\—	Da te: £~/\ iJl 8^
Address:	. XTd^lo^ Operators: JY-bL^ Jh
Station No.:	'•	
Run Ntk :	//	Ambient Temperature: V
Barometric Pressure: J2-7,~7/	Sample Box Number: /
Impinqgr 1
Final Volume	N ^ 3>. ^	of V"# /£
Initial Volume	^	'
Volume collected - J *" k ¦ 3 ^ 0f l5"/^ /ft-C) a-
Initial Volume j53V-J2-
Volume collected

jjii
•5
m
Impinger 3
Final Volume
Initial Volume
of y^r /y^D'
57. -a . I frT
iU.O.U. VW.U.Mt	
Volume collected a.-?. , '( rQ^L/
I ;pp
Impi rrcrer
Fi naTM/UiUime
Initial Vo
Volume collected
Impi nqer
•Final weight_
ml of
7 3
Initial weight ToT-V
Weight collected w *-/ 7
gm of_
gm
gm

Total Volume Collected_
Fi 1 ters~
ml

No.
Final Weight
_gm
_gm
Tare Weight
	gm
	gm
Wei ght
Col 1ected
gm
gm
CI eanup'performed by ^	O- Q^c-c^	on ) &*32 Sf] ~J jl
499027

-------
SAMPLE CLEANUP SHEET
Plant:	
Address:
Station No.
Run No.:

£? O G> -	on 5~/f
439025

-------
VELOCITY TRAVERSE
Plant /3 Qi^i r 14 . I /
Pitot No. S"- *-(
>v \
— \ ' V /» .c
Location IfntA I cA
Station No.
Date 
/ .£>
a. 5
11
- 34
1 3/
h
3
3,54
//
.37
2. 3*r
lo
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la

a 3,7
W^f
S.
C> M
^jl.Oow
439008
4/13/78

-------
VELOCITY TRAVERSE
Plant	|-f» LL-
Pitot No,

Location Kg-CLogc?
Station No.	C> ^
Date
^3
V/^ / 7 (T
Static Pressure —/. ^o x K? 4^ 1
Null Check 	-j2Jp~	
Signature		
SI
Point
\nPLE PORT /9
Pi tot
UP" h2o)
Stack
Temp. °F
)
SA
Point
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Pi tot
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Stack
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//
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/?3>
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439007
1/13/78

-------
Plant 7*7/( ~~ lb
Date /?//,?/ 7V	
T -irnn V c ' "	—
Static Pressure / 7O
Null Check -tr^*
^^7
		y ' >/
Signature /.
SAMPLE PORT
i
SAMPLE PORT >£>
Point
Pi tot
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Stack
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Point
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(AP" HpO)
Stack
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4/
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/-44
r '
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34

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Remarks

J5"
-v P..
-3	._<
l.o

439009
4/13/78

-------
VELOCITY TRAVERSE
Plant
[3*CJ h
Pitot No.
£~- V
4-
Location
Station No. >-{<;<, T>ST
Date 	tr//v
Time
/V/
Static Pressure
Mull Check
Si gnature
"X. 2

7^

Si
Point
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Pi tot
(aP" h2o)
Stack
Temp. °F
SA
Point
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(AP" H20)
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a
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3/5"
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17 
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c: 7
. 

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7c z~

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8
, £
& 6
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7

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a
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3.2.-7

. £4


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a a/
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XZi
3
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2

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/
CVS"

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/
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/
/

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lemarks:

S- c-
439019
4/13/78

-------
VELOCITY TRAVERSE
Plant	//
Pitot No. T> "V
Location	_y
Station No.	yb^>	
Date	*/ 7-V — 	
Time //		
Static Pressure
Null Check
L-jL
Signature /
SAMPLE PORT ^

SAMPLE PORT sS*

Point
Pi tot
(aP" H20)	-
Stack
Temp. °F
Point
Pi tot
(AP" H?0)
Stack
Temp. °F
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9
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Remarks:
, 'Jr Jr (
>T
(V.
-*	¦ T»l i

439020
4/13/78

-------
VELOCITY TRAVERSE
plant	//, 1/
Pitot No. fj - *-/
Location	L.rJ.
Station No.	-OS"
Date
Time
Static Pressure A
Null Check CD1
SignaturcQr
Z^^,y?r
SI
Point
ViPLE PORT Q
-
Pitot
(AP" h2o)
Stack
Temp. °F
i
SA
Point
MPLE PORT ZT?
Pitot
(AP" H?0)
Stack
Temp. °F
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3,/X
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'.emarks
/o pi
439024
4/13/78

-------
VELOCITY TRAVERSE
Plant y?/y/7^- a///
Location	-Zc^/aA
Station No.
Date ^r//.

Pi^pot No. -6 	
Static Pressure < d^rT"* V XV ^ i
BV, Check ^ >A /
SI
Poi nt
\MPLE PORT /I
Pi tot
(AP" h2o)
Stack
Temp. °F
SA
Point
MPLE PORT £?
Pi tot
(AP" H?0)
Stack
Temp. °F
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.Srf
/<£/
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- 70

//-?
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/ /
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4
. 70
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$
x->o
3/y.r
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/
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S><'6
/
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3/3
£
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Remarks
J)

*•
/wsr
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,,ivlTr
4/13/78
439025

-------
PI ant
Location £p//n/?fJ- -Left?/?/)
Station No.		
Date -5~// '/	
Times .—'
VELOCITY TRAVERSE
	 Pitot No. 6"-*/
Static Pressure £.} /; \	^
Null Check ^ ^	
Signature /. it^C
: i /' /.
SAMPLE PORT A I
1 r>
SAMPLE PORT /?
Point
Pi tot
(AP" h2o)
Stack
Temp. °F
Point
Pi tot
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Stack
Temp. °F
/'*/
. 3'5*

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/93
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sr?
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emarks
k
VVO

439027
1/13/78

-------
VELOCITY TRAVERSE
PI ant
Pitot No.

Location /^>^/. -Zcz/c?/j£>
Station No. '-/&-/	
Date
Static Pressure / £? Jty&y
Null Check
T i me / ->c.
*1
Signature /, /^'cZd^^r-
SAMPLE PORT /}
SAMPLE PORT ^
Point
Pi tot
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Stack
Temp. °F
Point
Pi tot
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Stack
Temp. °F
/V
. 5Z>

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.:*/
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33A
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//
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439028
4/13/78

-------
VELOCITY TRAVERSE
Plant £?U/? £<1'/- /-////
Pi tot No. ^~>

Location A"e>//^^r7 J^7d//?Q
Station No. VXfZ?^'	
Date o//>,-/7:
Time	icj
r/~y
»;£/
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O y~-7
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1 £r

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77
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lemarks:
^Sl
Jr A I
A "P-
,o(3tP ^
439034
4/13/78

-------
VELOCITY TRAVERSE
Plant	» /?&//
Location JL'~?-
~ —~ .s . y Lr-
Station No,. <£$sy
c.
Da te .fy/yr? / /•$
T T mo -jy'.-'
Pitot No.		
Static Pressure / ±T \ p.;
Null Check .	
T i me /-%Vv.
Signature j.
'L
SAMPLE PORT
/
SAMPLE PORT /?
Point
Pi tot
(aP" H20)
Stack
Temp. °F
Point
Pi tot
(APM H?0)
Stack
Temp. °F
/-/
.*5* -
-.
/V
6>^/
/7D
.Jr>3
/~2

- 3/C-7
A-
, 6 3
.0 vTA
//'
/.o
L 3/6
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A-'
, <7* .
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/£
, 7
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3"
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/
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10$






Remarks

V^v • 0 r f ->^r
o I
0^^
ill'
439035
4/13/78

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI #_r£		DATE	- PS^
MINIMITE #
T
MINIMITE	DTI	MINIMITE	DTI
REAPING (°F)	READING (°F)	READING (°F)	READING (°F)
50
-—

700
^ ^L


350

3 5 2-


400




450

yvf


500




550

S£> 0


600


-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI §

MINIMITE #
DATE	~ ^ V
NAME
MINIMITE
READING (°F)
50
60
70
80
90
100
125
150
200
250
300
350
400
450
500
550
600
650
DTI
READING (°F)
J5~~0
Co
~?a
tS"D
9o
/0O
/&~£>
^uOi
P^2_
3S"7
Voo
vv?
,5V?
-5~?ST
MINIMITE
READING (°F)
700
750
800
850
900
950
1000
DTI
READING (°F)
&7f
7S~&
2ro/
9o/
?vf
???
/eaA/ ^
489015

-------
DTI #
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
MINIMITE #
MINIMITE
READING (°F)
DATE_
NAME
DTI
READING (°F)
MINIMITE
READING (°F)


DTI
READING (°F)
50
.ST?
700
yc>cj
60

750
7^~0
70
70
800
8*0/
80

850
Sir/
90
9o
900
?o/
100
/O0
950

125

1000
/ooo
150
/
-------
DTI §
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
MINIMITE §
DATE A~~ / 7-
NAME	stSL
MINIMITE
READING (°F)
DTI
READING (°F)
MINIMITE
READING (°F)
DTI
READING (°F)
50
£~0
700

60

750
ysz>
70
7 a
800
^0 f
80

850

90
?o
900

100
125
150
/oo
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/ST>
950
1000

200
cPOO


250



300
30^


350
3^~(


400
VOO


450



500
550
600
y??


650
^^7


£oa/
489017

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI # ^ DATE ,^7/7^ - V3-/
700
<2 Tf
60
L 0
750
7.5-0
70

800




80

850



S5V
90

900


9*

9 ^ .p
100
fc 0
950

125

1000
V
150
ISC


200
2° /


250
a 


500
*7?


550
.5V 'f


600



650
& s-J


fro ^ /
tfxl -
499019

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI §
MINIMITE #
MINIMITE
READING (°F)
, *
DATE_
NAME


e/-Y-
DTI
READING (°F)
MINIMITE
READING (°F)
DTI
READING (°F)
50
3 d>
700
6 ? 7
60
& v
750
7 6o


400
Z'Tf


450
44 f


500



550



600
f <7 V


650
L, 4 7


l/f? -
439018

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI §

MINIMITE #_
MINIMITE
DTI
DATE ^//7/7 ^ — /£#<
	/	t.	-a	
NAME
MINIMITE
DTI
READING (°F)
READING (°F)
READING (°F)
READING
50
^6
700
ft
60
6 J
750

70
7#
800

80

850
5" SO
90
r?
900
y? f
100
7 f
950
74 f
125

1000
9f/
. 150 ~
a/7


200
SLt>!


250
eu.5 /


300
•3# S


350
3 5/


400
<4*0


450
1


500
.


550
jsr^r-


600
^9 7


650
A? '-f ^


t/Srq-oy	43902

-------
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-------
VELOCITY TRAVERSE
Plant St'/t/Ag/Z. /-/ / I, 	 		Pi tot No.	2^
Location	o	/PA in z>		Static Pressure ®
Station No.. ^tT*?  V
/2-
.2-1

//
•X 3
12-& ' r
J/

M/S" /=
jo
•2-±
/ 0^' /=
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f
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Remarks:
4/13/78
439021

-------
VELOCITY TRAVERSE
PI ant Bu/vAep ti/t-t-
Pitot No.
~~2-
Location MJ DA//) -q
Station No. -1/ % 7 0 V	
Static Pressure
Null Check
Date ^5~ - - 7 &-

Tire /-yyj.
Signature ~7Shi
Point
/ ^
iL
i£_
f
T
"7
I	
4
2.
L
SAMPLE PORT
Pi tot
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, / &
•2 2-
.2- ±
j 2-S
>X(,
- 2-7
.2 £
•/3
Stack
Temp. °F
0
ho'
us'
/3 0°
/So'
/-S--0 '
/s
o
/J o
/S o '
/s 0~
/J-o-
SAMPLE PORT
Point
13L
JJ_
/0
f
r
-7
/p
~JT_
IX
/
Pi tot
(AP" H?0)
.23
, 2. ^
. 2 7
<3®
. 3 &
'33
>2 f
•3
-------
VELOCITY TRAVERSE
PI
ant RL'//60)
Stack
Temp. °F
/z-
'/ 7
//

//* *
/0
¦JL6
M/s"
1
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3
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2
rP- 7
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M~a"
/
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/57Z? '
/
>J2- 7
t


















Remarks:
439030
4/13/78

-------
VELOCITY TRAVERSE
Plant R(/AjAak /-J s2
A Jl D
Station No.	/> 	
Time lojo
Static Pressure /¦
Null Check ' Q/
tL
Signature
s/
Poi nt
WPLE PORT /f-
Pi tot
(AP" h2o)
Stack
Temp. °F
\
SA
J Point
-1PLE PORT
Pi tot
(AP" HpO)
Stack
Temp. °F
/z-
.X 2'
•r
JJS

•2!
/&a '
//
¦P-2-
!3S '
//
* 2. S
/£> 6 "
10
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/so '
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Remarks:
439033
4/13/78

-------
VELOCITY TRAVERSE
Plant JZl1 jL'&t?/>¦ M/M. L-

Location	? £>A-h d
Station No.	-V £> V	
Date
Time
~/~JT - "7 5-
Pitot No. 	
Static Pressure /.
Null Check	c~)
Si gnature	'Yb.
SAi iPLE PORT /4-

SAMPLE PORT C.

Point
Pi tot
(apm h2o)
Stack
Temp. °F
Point
Pi tot
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Stack
Temp. °F
12-
• /S

tz


//
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K

/jr£>
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1 /
-------
VELOCITY TRAVERSE
Plant 31''A//<&& //~/ Z. 		Pitot No. ^3-2-	
Location	/DA-Jn$	Static Pressure /¦r
Station No.	J V	Null Check /?
Date	72- 2>
/ ZjT '
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1 .

Remarks:
439032
4/13/78

-------
VELOCITY TRAVERSE
Plant J^Uh/Lw ///Lt—
Pitot No. "")
Location j[,P ('toc^cj Tel
Station No.
Date

Static Pressure /,
Null Check (	
s/
Poi nt
\MPLE PORT
Pi tot
(AP" h2o)
Stack
Temp. °F
SA
Point
-1PLE PORT C_
Pi tot
(aPm H?0)
Stack
Temp. °F
/X
.//
jUL
/ 2
. N
/ 5.-V
//
,lU
1 H I
//

/ .3?
b
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\H
10
,/X

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9
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W/
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7
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b
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s
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3
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Remarks:
4/13/78
439044

-------
VELOCITY TRAVERSE
Plant hU/U k€{? (4- i L ^
i-> —
Location /(gJ_J ot-£. / Q A- ho
Station No. ^	f
Date JF-Zy -7&-
T1 me / / 3^X>
Pi tot No. 	
Static Pressure t
Null Check /& '
Signature jfiw	.
SAriPLE PORT J§-

SAMPLE PORT ^
-
Point
Pi tot
(AP" h2o)
Stack
Temp. °F
Point
Pi tot
(AP" h?o)
Stack
Temp. °F
It-
'
/V
1 2- ft

1
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&
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f
-26
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m> '
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I
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Remarks:
4/13/78
439045

-------
VELOCITY TRAVERSE
Plant	/i /
Pi tot No.
~-2_
Location ) 7 	
Static Pressure 	
Null Check • /0 7
1-7
Signature jr/vu/ 7^
SAMPLE PORT /f-

SAMPLE PORT

Point
Pi tot
UP" h2o)
Stack
Temp. °F
Point
Pi tot
(AP" HpO)
Stack
Temp. °F
ti-
* / h
<*

-ZY
/zo'
ll
¦21
J & s

'77
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a.
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/ 
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Remarks:
4/13/78
439046

-------
VELOCITY TRAVERSE
Plant &U&>/*>-£ /*- J~f < /-£*	
Location /J- & £ 
Hi f rt i-l _ /	'
Static Pressure
Null Check
Date / 7--; ^
Signature 9^;

SAMPLE PORT /f
SAMPLE PORT

Point
Pi tot
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Stack
Temp. °F
Point
Pitot
(APM H?0)
Stack
Temp. °F
l^
•(?
//y
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.z 
/3 a
r
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//£> '

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3
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2.
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/ 2^- °
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Remarks:
4/13/78
439047

-------
VELOCITY TRAVERSE
Plant Bo*A.'kf a?.
Location fig//. £. /Pj- U 3
Station
Date
No. '/$??{?
Null Check $
SI
Point
ViPLE PORT
Pi tot
(AP" h2o)
Stack
Temp. °F
SA
Point
1PLE PORT C-
Pi tot
(aPm H?0)
Stack
Temp. °F
72-
¦/7
9£~
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to
. 2.3
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>2. '
/
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Remarks:
4/13/78
439048

-------
Molecular Weight Determination
£-4
7-?i.
^ftat^on Num^^T


- yS
Method of Analysis: Fryrite_
Orsat
Sample Type: Grab
Integrated 	
(4\
%
Run
No.
Time
co2
°2
CO
Collected
Analyzed
0/
/^/3
/so
/' 0
/3-S

'Mo1
/SM
/sH
0
lis-


/SX\
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£' 0
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Vff






















-












Leak Check:
O2 Check
CO2 Check
_% against
% against

Signature: */j^.
Remarks: „ ^
A -
Date : Z//zh?
489 03

-------
¦7
M4
0 • b?
£>}
/b£S
!?%!
J. c

& < C?
Jo
f\
£
K I
7
Leak Check:
O2 Check
CO2 Check
% against
_% against
Si qnature: "/
Remarks:
Date: -*/A /7 fT
,y^
>V
/ ^ T'	\
£ f* r" ( poa Fl^f\l11)
489

-------
Molecular Weight Determination
Station Number
Method of Analysis: Fryrite	^
Orsat 	
Sample Type: Grab 	ts
Integrated 	
Run
No.
Time
co2
°2
CO
Collected
Analyzed
4f
OS
/OS 3
/P33
X Z>
/£.o

C?5
A13 7
/03 '7
/.0
u &

06
j<: 
//. 
-------
Molecular Weight Determination
Station Number	O
Method of Analysis: Fryrite £
Orsat
Sample Type: Grab
Integrated
Run
Time
co? ¦
°2
CO
No.
Collected
Analyzed


07
ID',2.0
/D>o
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tf'O

0 7
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ion
3.z>
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07
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2-d
jz.o

Leak Check:	
O2 Check 	% against
CO2 Check 	% against
Si gnature: '/		 Date: 3 // 'z7 ^
Remarks:
489 11

-------
Molecular Weight Determination
Station Number	c! 0 V
Method of Analysis: Fryrite
Orsat 	
Sample Type: Grab j/	
Integrated 	
/turf fjo
//
/ZJtS A/C.
s /o

Run
No.
Time
co2
°2
CO
Collected
/
Analyzed
yi7//


2.P
n.~K

wii
nit.
/1%G
'x.b
/I.7S



ft {Li
2S
1 D.7T

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/43£>


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/?34
£.8%
/3.0 e/o
,s%
/o
/•9JO
/£?7
<9.5%
/*&%
/3 Yd


















Leak Check:	
O2 Check 	% against
C0o Check
% against
Si gnaturer
Remarks:
489 06

-------
Molecular Weight Determination
Station Number
Method of Analysis: Fryrite
Orsat ^===^7'71-
Sample Type: Grab
Integrated
Run
No.
Time
co2
°2
CO
Collected
Analyzed
/X
fair
dq?S

//.*

/%
0 'Mv
01yd

/J,d

/X

cy-l/Zs
<3* v
M- 0

W
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ns>

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/
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//*>"
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ii.r)

/$
1 *	=	
13^5"''
/1S3
/- *
/¦-" •-
•

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; ^
c
/
• *?

#

47 '
1 "¦ » 0

12.0

Leak Check:	'
O2 Check A/- ^ 	% against A ^ i T* / /S /
CO2 Check 	% against 	
/
Signature: ^ f	 Date: ^ //-' / '/ ^
Remarks: ' v ¦*-	k -
< * -' 1 1	j
' , 1 '

-------
Molecular Weight Determination
Station Number M ^ 0^1
Method of Analysis: Fryrite_
orsat i 0
1
c J


"T S
13 or>

f) r) *^1	
17 5?
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j?dd



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/£	'
Signature:\\ fj?
•;/
Date: £> /f S /^7)(
Remarks:
489 12

-------
Molecular Weight Determination
Station Number	$ 'Y	
Method of Analysis: Fry rite ^ /9 ^ ^
Orsat
Sample Type: Grab ^	
Integrated 	
Run
Time
CO?
°2
CO
No.
Collected
Analyzed


/*
of/s-
£>?/S
J
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IT
07/'7
07/7
J'jT
1?-^

If
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Leak Check:	'
02 Check / ^^	% against AS] B!		
C02 Check	<¦'	% against AM$1 T' >'	
Signature:		 Date: S'Jz-fc/y 5~	
Remarks : /" Y ft / 7"€— P l- U "7 I 0	V ~T~
409 07

-------
Molecular Weight Determination
Station Number ^-f £& V
Method of Analysis: Fr.yrite 1.1-
Orsat
Sample Type: Grab 	jy
Integrated _
Run
No.
Time
co2
°2
CO
Collected
Analyzed
XI
IL> 45
n3>a>
0
IL 4
1.1

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o
Ik'1!
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Leak Check:	,	
Op Check 	O	% against
2
CO2 Check 	% against _
Signature:9Vvi^		 Date: ~S//•&/2r~
Remarks: fy^/f£. 5 £ A . 5
489 19

-------
Molecular Weight Determination
Station Number £5 c{ O V	
Method of Analysis: Fryrite 9=C^L ,	^ ^
Orsat 	
Sample Type: Grab 		
Integrated 	
X3
^3
*3
v\
xS
Run
No.
Time
co2
°2
CO
Collected
Analyzed

0 <
\I.O


0

*£-3
1113
// /3
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// <5

V^3
// / V
/// 5^
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1 -
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1 5*
ftt 0


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I - /
/3 2.S
!.S
;o. c>

Leak Check:
O2 Check
CO2 Check
Si gnature:
U-
n.
agains
t Ifynibr&J\
% against,
c
/ r

Date:
Remarks: R-o u J2.3
Q.'t7 -3- M 'CJeUcf-	¦sr-'l-?*'
489 20

-------
Molecular Weight Determination
Station Number U Sri of-
Method of Analysis: Fryrite_
Orsat _
Sample Type: Grab 	
Integrated 	


/
/i; )
2JblzS-
18
Run
No.
Time
co2
°2
CO
Collected
Analyzed

i^IDD
TOD
X,0
ix.v
0

IHOV
t$/S
1,9
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0
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/£> 0 2.
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i. ?
133,7
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yt
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Leak Check:
°2 Check		% against J
/ g n
C02 Check f*) .0	% against (fli'l'J/y r.t) j~~
t
Si gnatu re:

Date: \ //
Remarks
489 21

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI #


MINIMITE §
MINIMITE
READING (°F)
DTI
READING (°F)
DATE_
NAME
/ST~-

—
/
MINIMITE
READING (°F)
DTI
READING.(°F)
50

700
60
6 O
750

70
70
800
80
%o
850
90

900
100
joo
950
125

1000
150
ItTl



200


250




300
3o/


350


400
Vc3"2.

450


500
S~Dt

550


& O i

600


650


489005

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI #	%L
MINIMITE §
MINIMITE
READING (°F)
50
60
70
80
90
100
125
150
200
250
300
350
400
450
500
550
600
650


DTI
READING (°F)
y
/
6/
7 /
W
/I'O
/ 2 Lj
2	£-2.
3*2-
3	5/
*/
-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI # ^
MINIMITE #
MINIMITE
READING (°F)
50
60
70
80
90
100
125
150
200
250
300
350
400
450
500
550
600
650
DTI
READING (°F)
(=> X)
7/
/ /
<=?€>
/tf'O
/0-4
A/?
P-cz> ¦;
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DAT75-
NAME *

MINIMITE &
READING (°F)
700
750
800
850
900
950
1000

DTI
READING (°F)
489003

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI i__o£		DATE	/«/ -
MINIMITE #		NAME	yt/ S
MINIMITE	DTI	MINIMITE	DTI
READING (°F)	READING (°F)	READING (°F)	READING (°F)
50
^"O
700
60
(jCJ
750
70

800
80

850
90
?o
900
100
/oo>
950
125

1000
150
/S~C>

200


250
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300
3 o (

350


400
3^rf

450


500
c5&c>

550
fry?

600


650


489C07

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5£>zo
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SUM 2

CALIBRATION GAS MIXTURE "B" : ( ^ ppm) *
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f.casuronent Sys. Reading
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dD

Volts
ppm
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Average value determined in analysis of calibration gas
mixtures.
* *
d = Difference = Average Value (ppn) - Measurement Syst.
Reading (ppm)
Note See page 2-52, 5 11.3.5.1, Guidelines, Vol. XV, EPA-650/4-74-0C5-O.
(1)

-------
T G.C.O



I ilOJECT CODE
STAT 10.1 f
SI fJUEHCE ,<' ¦-

mm
SUM 4

Average value determined m analysis of calibration gas
mixtures.
* *
d = Difference = Average Value (ppr) - Measurement Syst.
Reading (pp-n)
Note- See page 2-52, 5 11.3.5.1, Guidelines, Vol. XV, EPA-650/4-74-005-O.
0/
(1)
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Mote• See page 2-52, 5.11.3.5.2, Guidelines, Vol. XV, EPA-650/4-74-005-O.
(2)
07
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VA.VPV'-^W
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SUM 17
Mmmmm
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J.VERAGE
mmmrnm
0 Mi
Note: See page 2-59, 5.11.3.5.3, Guidelines, Vol XV, EPA-650/4-74-005-o.
MC 1P./1 tl O
(5)
22

-------
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-------
APPCJ3DIX A
GLOSSARY OF SYMBOLS
This is a glossary of the symbols used in this document.
Symbols used and defined in the reference method (section
5.11.1} are not repeated here.
XQ	Given wavelength of light.
dft	Difference between average measured concentration
value of calibration gas A and the continuous
measurement system reading during calibration error
test.
dg	Difference between average measured concentration
value of calibration gas B and the continuous
measurement system reading during calibration error
test.
SUM 1 Sum of the dft values determined in a calibration
error test.
2
SDH 2 Sum of the squares of the d^ values (d^ ) used in
the calibration error calculation.
RUM 3 Sum of the dg values determined in a calibration
error test.
2
SUM 4 Sum of the squares of the d^ values (dg ) used an
the calibration error calculation.
d.	Difference between the reference method value pm)
1	and the average analyzer measurement for the itfr
interval in an accuracy test.
d ^	Square of d^ value for ith interval.
SUI1 5 Sum of the d^ values for nine accuracy test
measurements.
2
SUM 6 Sum of the squares of the dx values 
-------
8
; 9
I 10
I 11
4
2
4
2
; 12
[ 13
[ 14
[ 15
1 16
1 17
Calibration drift calculated using the 2-hour span
drift (pf>.n) minus the zero drift (ppm) for the
corresponding time period.
Square of 2-hour calibration drift value.
Sum of the AZ values taken in a series of 2-hour
zero drift tests.
2
Sum of the squares of the AZ values (AZ ) taken m
a series of 2-hour zero drift tests.
Sum of the calibration drift (C) values calculated
from a series of calibration drift tests.
2
Sum of the squares of calibration drift values (C )
calculated after a series of 2-hour calibration
drift tests.
Difference in zero reading from zero reading taken
24 hours before.
Square of the 24-hour zero drift value.
Calibration drift calculated using the 24-hour span
drift (ppm) minus the zero drift (ppm) for the
corresponding time period.
Square of the 24-hour calibration drift value.
Sum of the 24-hour zero drift values taken from a
series of 24-hour drift tests.
Sum of the squares of the 24-hour zero drift values
taken from a series of 24-hour zero drift tests.
Sum of the 24-hour calibration drift values.
Sum of the squares of the 24-hour calibration drift
values (C24^ *
Sum of the upscale response time measurement values
(seconds).
Sum of the downscale response time measurement
values (seconds) .
Sample size for the auditing.
Upper quality limit determined from performance test
data and used in assessment of routine calibration
data.
Lover quality limit determined from performance test
data and used in assessment of routine calibration
da ta.
(11)

-------
G 1-c ACID PLANT 3
(STATION 48904)

-------
PRELIMINARY FIELD DATA
1/ ' e
Stack Geometrv
n -	dj2r.£^
Location V & */
Date _
r	'
A. Dist. frntr inside of far wall to outside
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Inside diameter of stack = A-B €TY
Stack Area =
Comments:

Sketch of stack cross-section
showing sampling holes
Calculations:
v4- C_
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Time: Start Time //
End Time /A-^,
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Operator	
Sample box No,
Meter Box No. .
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PARTICULATE FIELD DATA
VERY IMPORTANT-FILL IN ALL THE BLANKS
Read and record at the start of
each test point.
Time: Start Time
End Time
Ambient Temp. F c^O
Bar. Press. "Hg"^z
"C" Factor	
Assumed Moisture	
ProbeTip Dia. In_
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Date . s~-/ 6 - 7-r	
Operator fJzrr-'i c//g- ^ ^>"
Sample box No. <2-	
	in " r"" ) ir
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Read and record at the start of
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Meter Box No. Q-
Meter AW
Time: Start Time /axo
End Time // .3.9

Ambient Temp. F 	
Bar. Press. "Hg" 2.">.£~a-
"C" Factor
Assumed Moisture	
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Filter No.
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Meter, CF
Pi tot
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7
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Pre-Test leak check , QQ b fZM (p /I m. -£z>(? 1 v»J
Post-Test Leak check ,onZ~	/! m -4>r /m,rJ
Revised 4/11/78

-------
Plant ~ <_>?iz.
Run No. __
Location^
Date
t4i

-/ O
-"i-Afi/r- "J&Y Q'/~
S ~ Hr
Operator ,5	Mr^gc
Sample box No
Meter Box No._
Meter AW 	"

l2=_
PARTICULATE FIELD DATA
VERY IMPORTANT-FILL IN ALL THE BLANKS
Read and record at the start of
each test point.
Time: Start Time 7^3$H
• Arfjiril
Tpl pt.
Dut.l pf.

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-------



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Date	«yg
Operator	
Sample box No.
Meter Box No._
Meter AW
S. sy?• A^£» p*)
Bar. Press. "Hq"x?7,j5"7
"C" Factor
Assumed Moisture	
ProbeTip Dia. In ./?&
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Probe Length/type q/qss>
Filter No.
1
Point
1
Clock
Dry Gas
Motprj PF
Pi tot
in.H.O
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A1
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t emp.
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Probe
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Oven
Temp
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Impinger
Temp.
°F
Dry Gas Temp.
°F
Pump
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T \! rln
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°F+4fiO
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-------
P>U K/ K^i2. K I L I
Plant 	
Run No.
Locati on ^ySjr- Oj-
AuD Pc^t
Date .C-/7-7S-
Operator ^ pgi/g~
Sample box
Meter Box
Meter
AUefm cr1
No.
No. '

PARI 1CULATE HELD DATA
VERY IMPORTANT-FILL IN ALL THE BLANKS
Read and record at the start of
each test point.
Time: Start Time 09V3>
End Time /Q*/3
Ambient Temp. °F
Bar. Press. "Hg"'
"C" Factor	]
Assumed Moisture_
ProbeTip
Pi tot
52
J27. 7/
Dia. In_
Tube No.

ci>
-3
Probe Length/type
Filter No.
y- - '
l
Point
Clock
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Meter, CF
Pi tot
in.Ho0
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in. H„0

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Temp.
°F
fk
Oven
Temp
°F.
Impinger
Temp.
°F
Dry Gas Temp.
°F
Pump
Vacuum
TN,"Hg
Stacii
Temp.
°F+4fin
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ct	
Run No. (9 9	
Location yf?- oy
Date	?;//?/far	^	:	
Opera tor /K„j> rJ<
Sample box No. 2	
Meter Box No. -;?	
Meter AW	,	
	I i'w	h I'""' "1 l}"r"
vcRY ii'itORTmu i-FILl iN All iHE i
Read and record at the start of
each test point.
Time: Start Time tr.s~Z***,
End Time y?; 5-
iKS Ambient Temp. °F j>~J2
Bar. Press. "Hg"_2LZJZ/—
"C" Factor	
Assumed Moisture	
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1
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Clock
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Mpfpv, PF
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in.H_0
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Temp.
°F
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Temp
°F
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Temp.
°F
Dry Gas Temp.
°F
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Revised ^/11/78

-------
/3i/iUK.e/z /-ull
Plant
Run No.
Location	Plmr y$-? oy
Date sr- / ?¦
JO
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PARTICULATE FIELD	DATA
VERY IMPORTANT-FILL IN	ALL THE BLANKS
Read and record at the start of
each test point.
Operator jq~.
Sample box No.
Meter Box No._
Meter AH
/>? A./	'	k\ A Ow
¦ 	_	
^		Time:
Start Time_
End Time
/4/r
/oT/' ff
5~3
Ambient Temp. CF		
Bar. Press. "Hg" ,27. 7/
"C" Factor	
Assumed Moisture	
ProbeT i p
Pi tot
Dia. In_
Tube No.
>/f?~
/9-=3
Probe Length/type_
Filter No.
A

1
Point
1
Clock
Dry Gas
Motets TF
Pi tot
in.Ho0
A
',0.rf.i c,£ 4
in. H„0
it1
Stack
Temp.
°F
Probe
Temp.
°F
Oven
Temp
°F
Impinger ,
Temp.
oF
Dry Gas Temp.
°F
Pump
Vacuum
t\i «Hg
StacH {
Temp. «
°F+4^n
Dpc;t r^H
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l> 1 L» K I O •
Pre-Test leak check ,op"7 Q 4'" )
Post-Test Leak check ,aoC- cf* (p )] 1 n~Al , o
489019
-d /?;

-------
ViquC -pup he a, H / 	
Run No. /J
Location Hfiu,/ DAU-o H&ioy
Date -sr-/7 -76		
Ope rator T A/'awMA A/ /
Sample box No. 2-	
Meter Box No. 2—	
Meter AH	,	
"ICI
" F"" " D/
vtRY iivuRTanI — FILL in ALl iHE BLANKS
Read and record at the start of
each test point.
Time: Start Time / *7/ "7
End Time	7
Ambient Temp. gF
Bar. Press. "Hg" ^27. ~7>
"C" Factor
Assumed Moisture
ProbeTip Dia. In ,/rl
¦ Artnal
T nl pt.
Out.1 pt.

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Post-Test Leak check, M^ /I	roe I m,iJ ^
4SfC:3
Vised 4,Jl/78

-------
SAMPLE CLEANUP SHEET
Plant:_ t3*o-vJU»—	•	
Address : jJUL^ c, , «t
Station No.: yy ow
Run No. : Q 2_	
Barometric Pressure: 7.7,-fc^" Hv
	rrs	r
	Da te: M ) £ i S "> S?
Operators:	o 1
_Ambient Temperature:	
Sample Box Number:	/_
Impinger 1
Final Volume jg^s" fe-7	ml of ^
Initial Volume  vi
Volume collected - o>j. 9 ml
Impinqer 2
Final Volume ^os sV	ml of s'L (H <_ O
" V
Initial Volume	i snlc^
Volume collected /*, 4 ml
\ 	— 	
Impinqer 3
Final Volume ^sr~7./(? ml of ^5"% \4 v Pi.
Initial Volume S,s~
Volume collected //. 7 ml
Impinqer
Final Volume	ml of

Initial Volume	ml
Volume collected	ml
Impi nqer
Final weight C?-S^ -/qm of_
Initial weight ^2^	qm
Weight collected /(¦>.¥	qm
Total Volume Collected /O, c ml
Fi1ters
Wei ght
No.	Final Weight	Tare Weight Collected
Cleanup performed by 	
'/^	P J 2./ o
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vn-v-t-XAzr, ^	Ho A 1 £>"") \
>si — , ,co «¦ \>	'
--sS~-72T
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COc3^ _
iooyw	 IC°.0 1^ J,	woL^

-------
SAMPLE CLEANUP SHEET
Plant: Q-—M-vAA Ce-	 	Da te:	IS" N i Hi #
Address:	r , ^ o 1. I	
Volume collected ,"X,f ml^
Impi nqer
Final Volume	ml of
Initial Volume	ml
Volume collected	ml
Impi nqer
Final weight	%¦	gm of
Initial weight toc.2, *-	gm
Weight collected	(c- gm
Total Volume Collected /"X,2. ml
Filters
Wei ght
No.	Final Weight	Tare Weight Col 1ected
gm		gm 	gm
gm		gm 	gm

_ml of	A  |"L. M ^
S c—Si	IfLO) S" I 1 *~P 5
£89008

-------
SAMPLE CLEANUP SHEET
Plant: BuMKen U ill.	Date:_
Address: Kelco^- iC^-mo
Station No.: gsr? 	
Run No.:	s>/
Barometric Pressure: Zl~?. s~3-
_0perators: gTe/
-------
SAMPLE CLEANUP SHEET
Plant: /-?(/> /L>/{ s~~	
Barometric Pressure: :z 'A
	Date:	£ ~ 7 %
Operators:
_Ambient Temperature: yo
Sample Box Number:	.
Impinger 1
Final Volume	ml of / SafrfeP 	
Initial Vol ume	y ftMrrl
Volume collected	-jc/S" ml , 0'-7i
Impinger 2
Final Volume	ml of ^  aa®	Ci co ¦£>-/&¦'?&
489017
No.
Final Weight
_gm
_gm
Cleanup performed by

Tare Weight
	gm
	gm
on

-------
SAMPLE CLEANUP SHEET
Plant: J) Ufc/46P- /y/^_
Address :	/tort a/n
Station No.:		
Run No. :	Q(,-	
Barometric Pressure:	&
	Date: .Q~7 nil of / 5 PA A PyL
Initial Volume rT 3/. / ml
Volume collected_
Impinqer 2
Final Volume
3*T, C-
ml
Initial Volume
ml of
J
Volume collected_
Impinqer 3
Final Volume	
Initial Volume	
Volume collected_
Impi nger
Final Volume

_ml
ml

y
*/ml of	c>~2 5

ml

//. O ml
Initial Volume
ml of_
_ml
ml
Volume collected	
Impi nger
Final weight	fv7^ qm of <£r
Ini tial weight /, T.-j" <7 qm
Weight col lected /> ^ qm
Total Volume Collected_
Fi 1 ters
b ml
No.
Final Weight
Cleanup performed by
,T/S
i.*
Tare weight
Wei ght
Col 1ected
_gm
_gm
od p /?&/)	/)
4CS018

-------
SAMPLE CLEANUP SHEET
Plant:
Address?
Station No
Run No.:	^ 3	,
Barometric Pressure: SL7.7/
	Da te:	/zf
_0perators:
—	: - 3. r/3 gm of -
5 (Aje-f^ATf	srv^efCeA b/QL^/uce (_o/^/9 £7 J
/. 0	—	/ oj>~^
=- /e
-------
SAMPLE CLEANUP SHEET
Plant: /J A / /^ (£ j2. /4/C.C
Address: a?
Station No : yj-<9- p s*
Run Mo.:	/ £>	
Barometric Pressure: 	
	Date:_ ¦^//y/yS
Operators:
_Ambient Temperature:
Sample Box Number:	
Impinqer 1
Final Volume	/fdT V1/	ml	^ PA q^a^c <-
Initial Volume ,f3o; o	ml
Volume collected - c~	ml
Impinqer 2
Final Volume		ml of rS""/7^ //3 02.
Initial Volume „5C//, 2-	ml
Volume collected /j>t V	ml
Impinqer 3
Final Volume	fylb-	ml of S~
Initial Volume ^ o g/ / ml
Volume collected /;2.,s" ml
Impinqer
Final Volume	ml of	
Initial Volume	ml
Volume collected	ml
Impi nqer
Final weight	fa?4. 03 qm of  ~7 ml
Cleanup performed by	—
Tare Weight
	gm
	gm
on
Weight
Collected
_gm
gm
_£~-/7- 7#
48902:

-------
SAMPLE CLEANUP SHEET
Plant:	/-f / l 	Date:	Y
Address : Mt-c- &<., . n A r4 c> Operators : -5" 4. /6 s-P/Q/v*
Initial Volume *r-vs4 ^ ml
Volume collected - 37. y ml
Impinqer 2
Final Volume	,<""^S"^nl of £	//g 	
Initial Volume_ ^¦C ? ml
Volume collected / j ml
Impinqer 3
Final Volume J=>C-d. C?*/- ml of_
Initial Volume	I	ml
Volume collected /'3 ,-f ml
Impinger
I
Final Volume	ml of
Initial Volume	^ftl
Volume collected
Impi nger	r
Final weight	6/^^qm of S/C /<- <4 6ef^	
Initial weight	y qm
Weight collected -:?/ y qm
Total Volume Collected "7. 3 ml
Fi Iters
Weight
Mo.	Final Weight	Tare Weight Collected
gm		gm 	gm
gm		gm 	gm
Cleanup performed by
on cT~-s~?~ y
f? d
489022

-------
VELOCITY TRAVERSE
Plant	ft li I L.L.-
Location & L .	jP^rllO	
Station No. J$>	£> $ *
Pitot No. JT — 2—
Date
<2-}-7r
Static Pressure 3' /
Nul1 Check < d /
Signature c7^.
SI
Point
^'-iPLE PORT ^
Pi tot
(AP" h2o)
Stack
Temp. °F
1
SA
Point
MPLE PORT /4
Pitot
(apm H?0)
Stack
Temp. °F
/*
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Remarks:
fiQ £K*cTi o 'v-e- T°
fA^o fAtTs rz.	* 17 ^ ^
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439002
4/13/78

-------
VELOCITY TRAVERSE
Plant fi/JA'jscz /-} J/-
Location	? 

n
•
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//
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V-
/D
. 3 J
"7 o ' F
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f-5 " /="
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Remarks
\.V^
ju*~
•0~ -
0
439003
4/13/78

-------
VELOCITY TRAVERSE
Plant Ri'/sJrf H
J> -
Location A* f S-2^ /PAh &
Station ^^c)f^
~ ' _s»"> / 2 - 7 ^ 		
Pitot No. 	
Static Pressure yl > ~7
Null Check
a
Date
Si
Point
M-iPLE PORT C
Pitot
(AP" H20)
¦
Stack
Temp. °F
SA
Point
MPLE PORT A-
Pitot
(AP" HjjO)
Stack
Temp. °F
/2-
>25

/2-
• 2-°?
<5V ' F
//
>3^
go *F
//
. 2-7
~7Jr'F
1#
• 3^
% 3" F

. 3 5
.% <5 'F
7
•3/
£>-5 f-
&
. 32-
f 6' F
6>

6>S' F

.3 3
S a° F
£
. 3 &
/¦=

• 3 £
to 'F
y
- 3JT
k>-5
3
¦ 3 ^
To ' F
•?
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~7S ' /=

' 3^
w a->
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2.
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8* >
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/¦(? 0° F
/
. ^-"2-
f-S'F

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	r~:	V
J)		

Remarks:
\>~-§

a • &
\

489004
4/13/78

-------
VELOCITY TRAVERSE
Plant ' VA'AfL ii 		
Location	£6 JDAIi &
Station No. V/,f 9 ^ jT 4^/^ V %'lj-
Date _5 - / 2- - 7 ^
Pitot No. S~~ 2-
Static Pressure
Null Check

SAMPLE PORT A 1
\
SAMPLE PORT
Point
Pi tot
(AP" h2o)
Stack
Temp. °F
Point
Pi tot
(AP" H?0)
Stack
Temp. °F
/fc-
. /g
^ '/*"
i^m
, 2-7

//
< 25

/1
'32
7JZ" F
to
r Z-Z
j55' F
!°

JJS-' F

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55° F
1
'33
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f
' Z°J
j?5<* r
&
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7
•2-1
35 * F
7
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'St S
b>
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J>S " F

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v
$
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S
¦ 3f
F
H
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6,5* F
y ¦
<37
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• 3_r
70 ' F
3
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2
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2.
,
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i

Remarks:
\)J^v
c>^N
-x 0-' ~ V*
^ .0^
439005
4/13/78

-------
VELOCITY TRAVERSE
£tLLo^, ,DN-io
Plant ~P~*J/JK£kL £f/iL CaciD put/Jr )
Location Lf-fttf-Ci'l Ma# /t^AJT
Station No. Vtiff- £>/
Pitot No. <"-,2-
¦ LP*	*"¦'
Date	f.3
Time /A 1%.
Static Pressure 3. 3
Null Check 	» &t
Signature

77
SAMPLE PORT £_
SAMPLE PORT A

Point
Pitot
UP" h2o)
Stack
Temp. °F
Point
Pi tot
(AP" h?o)
Stack
Temp. °F
/2
.2/
c^76
Jl-
,

//
.27

il
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^«3o
JO

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to
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i
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r


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7
-
£ii
u
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Cr
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j? 2- a
£
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.


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. 3-5~ -

3
.
-*5$
3
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t

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1

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Remarks
l^vvip. rcftdicwf'tfrt probably iv\correct-
due to miction 0f P*«+;wtkr^lroi£!)
^ W**" MBA **
439010
4/13/78

-------
VELOCITY TRAVERSE
Plant		 Pitot No. g"

.&(
/•»
it

to*
ft


/€>
,2V
sG^r
10
• 8.fo
/•sr
?

step
9

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IT
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r


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a

i^S
1
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B82.
i
. BS
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iemarks:
439011
1/13/78

-------
VELOCITY TRAVERSE
Plant	"4/U,
Location fa/ / a )3 ~
y	Z ~~ZTJT%
Static Pressure 'T^b	£¦ ¦ / 7-7/
Mull Check • ^ V
s
Point
WPLE PORT /*f
Pi tot
(AP" h2o)
Stack
Temp. °F
SA
Point
MPLE PORT
Pi tot
(AP" H?0)
Stack
Temp. °F
/z-
¦2-H
/£>-?
/-
•27
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fi
Ob
/OS
/'
'3^2-
!-P~T>
to

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0
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1
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4
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r
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'7
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2-
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12-5~
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Remarks:
<-

)
i* (

439012
4/13/78

-------
VELOCITY TRAVERSE
PI ant
Location M CiftP /£>A h o	
Station No.	<9 	
D?te /jjA? £'	-^r 7 7/
Pi tot No.
S~-
/•?
Static Pressure
Null Check	# 0 2_
St
Point
ViPLE PORT 4
Pi tot
(apm h2o)
Stack
Temp. °F
SA
Poi nt
MPLE PORT C*
Pitot
UP" H?0)
Stack
Temp. °F
/2-
>12,


¦ li-

//
/13
«—
/'
¦F7
•^js/V=
/»
¦ /S

/°
¦ n
3 k' F
1
>/s

c/
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4° F
8
,/jr

r
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l/*'Ky
7
¦ 10
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7
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1
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—

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/LJ J 7~ lVt> /< K/fc?.
439013
4/13/78

-------
VELOCITY TRAVERSE
Plant .?)(//,'J<£ JZ 14 ! 11^ 	
Location	6	/P A- In &
mo. 4 rf D4	
—721- /6r jr-JH— ?r '-T - J1 ¦
Pitot No. —^
Station No
Date
Static Pressure
Null Check ¦ Q 1

SI
Point
\MPLE PORT
Pi tot
(aP" h2o)
Stack
Temp. °F
SA
Point
MPLE PORT
Pi tot
(AP" H?0)
Stack
Temp. °F
/ z-
•
r
/z-
. -23"
/J-r

¦ P ?
bF'F


/ss
/*
, o %
&d°F
/^7
- 39
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f
, /0
SS° F
f
'3/
/VJT
r

p. 6 ' F
f
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/2-jr
7
./d
J&oF
*7
'33

If
¦JV
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&
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£
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y
-IX
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V

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1

Remarks
a y /f - ? d k. i
n®>
*
•>
\
1
rO"
1&- „ ^
0~ '^V
439014
4/13/78

-------
VELOCITY TRAVERSE
PI ant
QonH*.

Location

Pitot No.
Station No.
Date
Ti me / crn r>
Static Pressure
Null Check
Si gnature^_ .f{,
s
Point
\i-iPLE PORT
Pi tot
(AP" h2o)
Stack
Temp. °F
s/
Point
	
•1PLE PORT O
Pi tot
(AP" H?0)
Stack
Temp. °F



/ 2
¦ ft




U
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Remarks:
y->*y
3
439016
4/13/78

-------
VELOCITY TRAVERSE
piant		//V//
Pitot No.
Location «
-X-l
s;
Point
r ¦¦¦ ¦ ¦ r
\MPLE PORT /I)
Pi tot
(apm h2o)
Stack
Temp. °F
.. 	 VJ
SA
Point
	
MPLE PORT C_
Pi tot
(aPm h?o)
Stack
Temp. °F
n
¦>ci
/\/D
l~>
.ft
77
//
1
. 2 CT
I^Id
l r*
1/


fn
. Ok
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70 \

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70 \
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Remarks
v

NO

5V
Pi
b( (
1 ?
4/13/78
439015

-------
VELOCITY TRAVERSE
PI
ant 3lW/^/2 /if ^^
Pi tot No. 3'-^^-
Location H&/J a £<£ JDj-Jn n
Station NoT	£ &
Date JT//2-/!t Sr~T	
y	-
Static Pressure
Null Check	- £' /
SAMPLE PORT A
SAMPLE PORT  / ^ /
Y ^ /
//

\ /

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A »¦ /
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\ /
1
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f
i3 3
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P


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7
i

1/
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r
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i i Z-

<*
/
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/ \
3
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2.
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/ I
£
, V7

/
• 2-2-
1 - \
/
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*















Remarks: £ d o 
-------
t h/Cr f-f,1/
H.
VELOCITY TRAVERSE
Plan
Locati on
Station No. Li?)e] b~
Date
Pi tot No. .S " "X
Static Pressure t, C1
Null Check	O
	: ~	l
S
Point
WPLE PORT
Pitot
(AP" h2o)
Stack
Temp. °F
SA
Point
/j
MPLE PORT C'
Pi tot
(aPm HpO)
Stack
Temp. °F
I ?

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Remarks: ^ i	^ i ^	U/6y<

439023
4/13/78

-------
Plant -	}J,LL
Run No.	n $	
Location y&¥o3-.
Date
Operator ^(rL^XX	
Sample box No. I	
Meter Box No. )	
Meter AH ffc? *
PAR!ICULATE FIELD DATA
VERY IMPORTANT-FILL IN ALL THE BLANKS
Read and record at the start of
each test point.
Time: Start Time !L>3^
End Time I 7 3%*"
Ambient Temp. °F 7O
Bar. Press. "Hg" 2-1.3%
"C" Factor
Assumed Moisture_
ProbeTip Dia. In]
Pitot Tube No.
,py
Probe Length/type -TVA/"7r-S>5
Filter No.
1
Point
i
Clock
Dry Gas
Meter, CF .
Pitot
in.H.O
AP^
\0rf.i ce A
in'. H„0

Stack
Temp.
°F
Probe
Temp.
°F
Oven
Temp
°F
Impinger
Temp.
°F
Dry Gas Temp.
°F
Pump
Vacuum
T\| "riq
StacR 5
Temp. ;
°F+4Rn
rWirM
• Actual
Tnlpt.
Out!ot
m,A
O
T76. 3 75"
.ex.*

.c/.^

3-7
67

7.0



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>/r

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-dr.

XIK
u


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. *i
-
MY
JV. _
112-
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6»<
66
1-^


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i iLi s 1 •
fvrL > ?> f*)/*-" fit • *80
40SCJ4
Pre-Tcst leak cbeck/^p) )?¦ ¦ 5^ - , nfyJ ^/"h
Post-Test Leak check^) ^ ^3 ' .00^
R
[ 7i

-------
I t U I I t "	
Run No.
Location]
Date	
Opera tor_
ty-» f\ rn /.L
t \ a r» T- j i
1
D7
Sample box No 	
Meter Box No. J
Meter AH /. fry
~E FTr" " d;-"
vc.RY ii-trORT/mi i -FILl in ALl iHE dlmhKS
Read and record at the start of
each test point.
Time: Start Time //3 I	
End Time /3-^3 /		
ambient Temp. °F
Bar. Press. "Hg" XIJV
"C" Factor
Assumed Moisture	
ProbeTip Dia. In , fi- "^7
Pi tot Tube No. f-C
Probe Length/type
Filter No.
Point
Clock
Dry Gas
Mpfpr TP
Pitot
in.Ho0
AP*-
'iQ.rf ic,£ A
'in'. HlO

Stack
T e'mp.
°F
Probe
Temp.
°F
Oven
Temp
°F
Impinger
Temp.
oF
Dry Gas Temp.
°F
Pump
Vacuum
T\' "rig
Stacl
Temp.
*F+4fin
Dp<:i rpd
Artiial
In! pt.
Ont.1 p+.
C?.d
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£ff^ f/o/o) Post-Test Leak check/ff/X"^ > .ocn f/n (jMl) Revised 4/U/78


-------
Plant -
Run No. or

Location
Date
Pl*slT q r? ox.
$- 3i-7r
Operator
Sample box No.
Meter Box
Meter
No
IM-
PHK! 1.LULM 11 MLLU UAIA
VERY IMPORTANT-FILL IN ALL THE BLANKS
Read and record at the start of
each test point.
Time: Start Time /V<3 3
End Time ts iT
Ambient Temp. °F sC
Bar. Press. "Hg" 1.1 z-i
"C" Factor	
Assumed Moisture	
ProbeTip Dia. In_
Pi tot Tube No.
23 f
Probe Length/type
Filter No.

$ 7cu5?
1
Point
1
Clock
Dry Gas
Mptpr fF
Pi tot
in.Ho0
|0rf i,c.£ xl
in. H„0

Stack
S 1 r
Temp.
°F
Probe
Temp.
°F
Oven
Temp
°F
Impinger .
Temp.
°F
Dry Gas Temp.
°F
Pump
Vacuum
T N "rig
Stacft
Temp.
°r+4fin
Dp<; i r$rl
Artnal
Tnl pt.
Out! pf.
/V 'cl
0
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Post-Test Leak check	c ^ QCOO )
/ 7 i


-------
Run No.
Location"
Date
¦ .ifc ,, . L-L-
:=ggF
Opera tor_
Sample box No
Meter Box No.
Meter	/.£•*?
7
L
i> n it j | f i M a ^ i i 1 i "J [J i» r a
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Read and record at the start of
each test point.
Time: Start Time IIIQ	
End Time ) O
Ambient Temp. F /	
Bar. Press. "Hg" 71^7-U
"C" Factor
Assumed Moisture	
ProbeTip Dia. In t 3-3?
Pi tot Tube No.
Probe Length/type
Filter No.
I
Point
Clock
&?4?
Mptpfc, TF
Pitot
i n.Ho0
Ap^
p,0rf.i.ce A
in. H"„0
n
Stack
Temp.
A
Probe
Temp.
°F
Oven
Temp
°F
Impinger ,
Temp.
°F
Dry Gas Temp.
°F
Pump
Vacuum
T\! "Hq
Stacil
Temp.
°F+4fin
Opo r£rt
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Revised ft, U/78
Pre-Tcst leak check (3 /
-------
Plant -	bf'U.
Run No. il 	
Location	u Wo CP-
Date p
TO
 oc,
. c)Cs>

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'11
¦s —-
3-11
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jXr^> {r^>fZ^> ~7p>/2c-u^jr) CA&bo
-------
i 3
Run No. 	
Locati on *7^7-^ ^
Date	r
Operator £
Sample box no,	
Meter Box No.	
Meter AW hYl
RY
m
FIL. .,1 .HE 	!KS
Read and record at
each test point.
the start of
Time: Start Time /4/T
End Time ! 9)r
Amb.w..- Tbinp. F	.?
Bar. Press. "Hg" li./i
"C" Factor	
Assumed Moisture	
ProbeTip Dia. In /
Pitot Tube No,
Probe Length/type S'/c.(.*n
Filter No.
1
Point
1
Clock
Dry Gas
Mp+pt r.F
Pitot !
in.H.O
'iO.rfi.cfi 4
ISn. Ho0

Stack
T emp.
°F
Probe
Temp.
°F
Oven
Temp
oF
Impinger .
Temp.
°F
Dry Gas Temp.
CF
Pump
Vacuum
TM Hfl
StacH
Temp.
°F+4fin
|")p<; i rprl
¦ Artnal
Tnlr-f.
Diif 1 pt
/*? 16
0
7 71.3 7
C>

>
s

• ?}

,25V
2 m
* >
7 Wile


¦ 7H
"s
*
272
2~?7
77
0*7
7a
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v
r


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CC^CiTS
ft*
tC-p
/T^

Pre-Test leak check
0 /Z
*/
- ,&/G Cfc/n
CN02J
j/Kjf, ftco	7 A /w4
CoLo««	@ %0'U^ 0
4C0C43
Post-Test Leak cheekily I ~l"u„ - -oo7 c. (is ZIP )
Revised
1/78

-------
SAMPLE CLEANUP SHEET
Plant:_ L~$	1-J-lLL	Date: ^/2)/7j?
AddressT	Operators: sA
Station No. :	:	
Run Mo.: Qj		Ambient Temperature:	r
Barometric Pressure: Q-7< f	Sample Box Number:	/
Impinqer 1
Final Volume	(=>	prf of *$Z> % yo	L
Initial Volume .63^-3	M
Volume collected - /X'7	jh-1 ^
Impinqer 2
Final Volume	uri of_	/AjO>2~	
Initial Volume iVo./	xsX .
Volume collected xi. u	i^T 3
Impinqer 3
Final Volume	bc>3• pf of b'^o /4C£*>
Initial Volume .*>7-3> 7 Ptf
Volume collected ,3.<'/ , 5" ~>roJ
Impijiger
Final^To^uiTie	ml of
Initial VoluH
Volume collected
Impi nger
Final weight		_gm of_ ^j^iCLPr G& L-	
Initial wei ght	^ ~gm
Weight collected	l/ 7, gm
Total Volume Collected 9cj. X. ml
Fi 1 ters
Wei ght
No.	Final Weight	Tare Weight Col 1ected
	 	gm		gm 	gm
	 	gm		gm 	gm
Cleanup performed by	on ^
rzg-foecL 4
0?^	O/7/fJ ChzaK&d.
!.a\r\	»• 0 Q/vn
/oo oJo&.o^r^	489028

-------
SAMPLE CLEANUP SHEET
Plant: Si/rt&r /J///
Address: Jf&Z.J-£/s?/?0
Station No.
Run Ho.: /0^i~ 	
Barometrie Pressure: ,27'/-5
	Da te:		
_0perators:
lAmbient Tempe^r'^^^^
Sample Box Number: / .
Impinqer 1
Final Volume -53/» / ¦wt* of	'5>E>/~075&'/7£/
Initial Volume	-S~~ x&c	'
Volume collected - X*7 - Ff
Impinqer 2
Final Volume —^ . 3-5 of	/S-7 07^
Initial Volume	ffrt w,.
Volume collected ; f¦/ >- fflty '
//T7
Impinqer 3
Final Volume <£/>#< V2- -flrt-of
Initial Volume 37^-iQ m-h
Volume collected 26-^^ Jfl- ^

Impi nger
nTTa^Stalyme	ml of
Initial Volur
Volume collected
Impi nger
Final weight	&/ D <¦ 0 V qm of ^S7/^ Zrif?/	
Ini tial weight	qm
Weight collected*/?, im- f • o- 6"/z"7g~
Total Volume Collected 6c3,3-Z ml
Fi 1 ters
Wei ght
No.	Final Weight	Tare Weight Collected
	 	gm	_____	9m 	gm
	 	gm		gm 	gm
Cleanup performed, by //>*/		on JK2>Q — ^T/jZ-Z J7&
ZO S~0 Z<4e-ZZ Zs	M&Z//&S- i3s>/&s7C<2_,
/	/
/oo	fin 439029

-------
SAMPLE CLEANUP SHEET
Plant:	M 3-	=r^r
Run No.:		Ambient TenipeVcifure:
Barometric Pressure: £L7-3L/	Sample Box Number:	/ .
Impinger 1
Final Volume	• *7* rat of	-/Sc>pr'cOprts?&/
Initial Volume SB/). Y s£r
Volume col 1 ected -
Impinger 2
Final Volume	3 /ffi- I of 3 ^ //> /))
Initial Volume	Sf>/¦ ±T &r „
Volume collected /&,£=> ofr *
fsr>
Impinger 3
Final Volume	<7T^ •£> -fflT of 3 7/? //> $>
Initial Volume	wt
Volume collected	. / ffrf t//r1
Impinger
n" ti a 1 VQjLwrrg
iLume-^ol 1 ected
Final Volume		ml of
Ini
^fllume-^ol 1 ected	ml
Impi nqer
Final weight	-fTgm of	£-74?/	
Initial weight	~7	gm
Weight collected	cXgm
Total Volume Collected	. O ml
Fi1ters
Weight
No.	Final Weight	Tare Weight Collected
	 	gm		gm 	gm
	 	gm		gm 	gm
Cleanup performed by	'J~>	on j£7t
sr
u(J/&:<^-/7rS <-?	(/
u At
yf-	JJL 439037

-------
SAMPLE CLEANUP SHEET
Plant:	t/iLL
Address : Ke/^-qg , -Zo/^ho
Station No.:	Vi^/oa
Run No.:	O1/	
Barometric Pressure: 13 *7. 13
	Date: ^7^,2/7 P
_0perators: 77 UK/s#,-*
_Ambient Temperature:
Sample Box Number:	/ -
Impinger 1
Final Volume	9_J ( • o ^ of */<& ?/QQ /
Initial Volume +>c.iy > / -flrt
Volume collected - J ?, / jfrt ¦/
Impinger 2
Final Volume	^ V ^ -rftf of	^	
Ini tia 1 Vol ume	f .7 "flrt
Volume collected	/ *T /
Impinger 3
Final Volume	^23 3,-rH- of		
Initial Volume	^
Volume collected Zt , j" sd <7'"
Impinger
Final Volume		-— ml of_
Initial
tumecol 1 ected_
Impi nger
Final weight	f S~-~- of J>/ J/C^f dtt?/	
I ni ti a 1 v.-ei ght ?? 5f). -T ~qm
Weight collected	OL_Z_gm
Total Volume Col 1ected S~T. 7 ml
FiIters
Weight
No.	Final Weight	Tare Weight Col 1ected
_		gm		gm 	gm
	 	gm		gm 	gm
Cleanup performed by	on
43903T

-------
SAMPLE CLEANUP SHEET
Plant: /3,yoKgr2 //, LI..	Date:
Address: K^ZZo<^?,		Operators: /. Uf,2^tsn
Station No.:			. 	
Run No.:	CX*} 	Ambient Temperature: 7Z&t~
Barometric Pressure: ^-"7. 	Sample Box Number:
Impinger 1
Final Volume	4^7-3 -wt of	-/SOpf&p&s?D/
Initial Volume -mfr c^rT
Volume collected	g ml v
Impinger 2
Final Volume	^ fitf* of	?	
Initial Volume	.z> ^
Volume col 1 ected	X t* , H
HP"
Impinger 3
Final Volume
Initial Volu 	 	
Volume collected 	27 -3
Impinger
art of ^a7c /J?
Initial Volume	wPr^/n
J-
ml of
col 1ected
Final Volume
Initial Vo
Impi nger
1 ~7Q. 4?gm of ^T//c
-------
SAMPLE CLEANUP SHEET
Plant:	f? j-I.LL.
Address:
Station No.: U#t7cO-
Run No.: Ol	
Barometric Pressure: J2*7,7^
	Date:	
Operators: jf\
_Ambient Temperature:
Sample Box Number: / -
Impinger 1
Final Volume	f
Initial Volume 'TVf*. o
^¥-3.~7
H ,1
Volume collected -g/ o£ P- ^ 0f^5'Z V-r.Ot-
A <1 > 5"

Fi nal
ml of
Initial Volum	
Volume collected
Impi nger
Final weight	
Initial weight	
Weight collected
gm of_
yz>7. / "qm

TO ¦ 1
_gm
Total Volume Collected_
Filters
9l 9
ml
No.
Final Weight
_gm
gm
Tare Weight
	gm
	gm
Weight
Col 1ected
_gm
_gm

Cleanup performed by	on
oB^s	fp/£-/o>J dJ-)£
-------
SAMPLE CLEANUP SHEET
Plant:	^	Date:
Address:	. Operators :
Station No.:	:	
Run No.: Ofr	Ambient Temperature: C y
Barometric Pressure:	1+^ Sample Box Number:  l{ x. O
Initial Volume
Volume collected 2 ? - % 7 ml
Impinger 3
Final Volume 5 ¥5,4J ml of S" /l |-(v Q t-
Initial Volume sc,o.l	
Volume collected JZi.jT3 ml
Impinger
ml of % ^ '°
_ml-
ml
Sr

~ ^ -S J 2 3. j *?
'$* jivL u^J	43904J
' - KCO y—	n n

-------
SAMPLE CLEANUP SHEET
Plant:	^ KyJ£- /J
Address: IS£.U-o«f\, 7d.alno
Station No.: y&yo3-
Run No. :	D? 	
Barometric Pressure: 3-~7. ZK&
	Da te:
-Operators: yQ/ZiSCS?
_Amblent Teniperature:	/
Sample Box Number: /
Impinqer 1
Final Volume	/>**7 prf of )f&/o ^-5f//Z	ni>\i
Impinqer 3
Final Volume	j^V- G jaf of /T/o*		
Initial Volume
Volume collected 2 3" 3
Impi nger
Volume	ml of
Ini t i a 1 vcrHroe^ 	ml
Volume collected -——ml
Impi nger
Final weight	*7"?~? -1	qm of jc£~ P/$.jo*~> Le-vzL&ci- 4
43904"

-------
SAMPLE CLEANUP SHEET
Plant:		Date:	~7^
Address : /&z. ZZ.A,	Operators : jrf Cy-LjCJh_
Station No.:			:	
Run No.:	(]_	Ambient Temperature:
Barometric Pressure: ^7./P-	Sample Box Number: / .
Impinqer 1
Final Volume	9- Y	of	XkcnV^nP
Initial Vol ume S33-, C-, ktT ~	1 u
Volume collected - z jftTo'
Impinqer 2
Final Volume	^76-9	^ of		
Initial Volume S57, Q	ffrf ,
Volume collected / ,<7	jarf
Impinqer 3
Final Volume
Initial Volume jTu&.H dtT
Volume collected 1 n.T
.{C?9L1 wrof	/<.£lL-
Final weight	
Initial weight ~7(n>5~. Q. qm
Weight col lected 3" w . 5" gm
Total Volume Collected ~7!>1	ml
Fi 1 ters
Wei ght
No.	Final Weight	Tare Weight Collected
	 	gm		gm 	gm
	 	gm		gm 	gm
Cleanup performed by		on
03^£~ 7-£-l2o£00$*	&qQO£C
/Oo oo	/OtJ,oc>^rf\

-------
SAMPLE CLEANUP SHEET
Plant:	J-JiL~L~	Date:
Address: kg-L2x->C>	Operators:
Station No.: Lfxy'nCL-	'•		
Run fJo.: /:?	Ambient Temperature: £3
Barometric Pressure: 0.1/l	Sample Box Number: ;
Impinqer 1
Final Volume	^
Initial Volume S3 J. hi
Volume collected -32,/]
Impinqer 2
Final Volume
Initial Volume S3 J,
Volume col 1 ected 1 C- / 7
Impinqer 3
Final Volume
Initial Volume 5'9/.?°
Volume collected 22./3
Impi nger
" rTrrai~-YQlunie		ml of
Initial Volume 			 ml
Volume collected	~ '—ml
Impi nger
Final weight ^/?/,5T	gm of /-idA		
Initial weight	00	gm
Weight collected ri.cr	gm
Total Volume Col 1ected C 7 } ml
Fi 1 ters
Weight
No.	Final Weight	Tare Weight Collected
gm		gm 	gm
gm		gm 	gm
Jfrt of
jrrf of
prt „
/4 a
yi of	//2 O
roT
Cleanup performed by
q g 5~5"	4	^4{
!. o<->
I C v . 00
on
T/S3 V/->T
"1
( OO 60 vt.
4990

-------
VELOCITY TRAVERSE
Plant fic/Aj/CtifZ tf/cc.	 Pitot No. T~ ^	
Location £ o 6 //*)/}/¦/ o>	 Static Pressure .n , -fl vr
Station No. y Zr 9 a 3	 Null Check	Q"^.
Time			 Signature
s
Point
' 'C
\MPLE PORT Z2
Pi tot
(AP" h2o)
Stack
Temp. °F
I
SA
Point
MPLE PORT /3
Pi tot
(APM H?0)
^	
Stack
Temp. °F

 . 3 3
Sf 2.
3



/J. 3 J


^ =?/
9^
/
\ £>' 2. 
-------
VELOCITY TRAVERSE
Plant	7	/-All
Pitot No. 	e>- H
Location	//)?ho
Station No. t-{ ff- o3	
Date 	
Time

Mi*"
Static Pressure , L <-f fac,, jy C 1
Null Check 	t$l . ( pc
Signature ft Os&».r>	.
SAMPLE PORT A-
SAMPLE PORT /3
Point
Pi tot
UP" h2o)
Stack
Temp. °F
Point
Pi tot
UP" H?0)
Stack
Temp. °F
ti-
<*1
7P*
Iz.
, 2,-r
fp"
ff

?y
fr
/
/ Z t
ur
/
> 2 7



















Remarks
43906f
4/13/78

-------
VELOCITY TRAVERSE
PI
ant i'3c;n Kj>Y 1-1(1/
Pitot No.
Location	MX0/
Station No.
Date ^
P3
Static Pressure „
Null Check 	Q
US.1

SI
Point
\MPLE PORT CQ
Pitot
(AP" h2o)
Stack
Temp. °F
SA
Point
'iPLE PORT 0?
Pi tot
(AP" h?o)
Stack
Temp. °F


2W
IH^H
- ^ £s>

/(
, 3> t

u

lOH
to
, ;o
tax
to
. -2.7
m

.
iio
?
.31
1 / u
g-
. 3 O
11<4
£
' 3/
KH
7
, 3 /"*
A- o
7
, 3o
/ZX
(,
- 3 ^
IIS
Q
,
IZJ,
£
, ^
/I 3
5~
, VC7
1 X3
•V
-3k
i^6
V
, -3? '
i/s~

' 35T

J5
,
aiU
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2.
, 2 6
ss
i
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lo 1
/
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Remarks: (pa^,
439071
4/13/78

-------
VELOCITY TRAVERSE
Plant R>
Location <9£-6- /D/4 ft P
Station No. *7 £ 3	
Pitot No. ~ y
Static Pressure 	
Null Check $
7jt
Date
^ / 2-2
C
SAmPLE port A 1
1
sample port B
Poi nt
Pi tot
(apm h2o)
Stack
Temp. °F
Point
Pitot
(aP" h2o)
Stack
Temp. °F
ti-

//o*
/£

/U*
ll
• 33
11^'
)1
/ -2 ^

JD
* 3 t-

/?

J2S'
1
-33
! 2-D °
f
' 2- 7
/3* '
?
< 3/
11-5
r
/ 2 &"
/** '
7
' 3 0
t^ *
7

/7^

¦3 9
A/ ^

. 5/
J3S*
S
'3 2.
; 3 5"*
s
' 3y
J3S *
J/
• 3
yy o *
'/
' 3S
/ 2. S "
3
' 3 7
J7- -3" *
3

/zs r
Z
-33
/7 3" °
Z
'2-7
7'^ '
J
7 "7
//4
/
• /£
^ '




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-
Remarks: 5T/f f/6 M V *- L-
h/<2£ PReSSOfLT
43907'
4/13/78

-------
VELOCITY TRAVERSE
Plant
Pi tot No. «-3 — "Y
Location C(?£- /D A h z>
Station No. S?  3	
Date
Static Pressure . ~~7 V
Null Check 	?) .
"7^
s
Point
V-iPLE PORT /{
Pi tot
(AP" h2o)
Stack
Temp. °F
SA
Point
•1PLE PORT
Pi tot
(APn H?0)
Stack
Temp. °F
/2
« 5S
J 2-5'
/2
.Z V
//jrJ
)l
¦3 f
12- 0 '
II
, 3
/2- d "
)*>
¦31
J 3 vT*
/o
/ 5 ^

f

/S £ '
7
, 3 z.
/ * .£- "
r
¦3V
/3 d'
Z
' 3 ?-
/ 2-^r"
7
• 3 Z.
J3 0'
7
' 3 /
/-2-sS "
Is
• 3-5"
J 3 0*
If
'J ^
/J? <5 '
s
<35
/'/ <3*
5
/ y-z?
/30'

• ^ V
/35°
y

/2.J '
3
¦ 3 7
J ?-S *
3
- 3 5T
/A-T "
i!
¦3/

z
' 3 jt
9S-'
/
•/f

-------
VELOCITY TRAVERSE
Plant SVsi/Atfr/ ///^
Pi tot No. S"
Location	/DA/? &
Station No. ^£> 3	
Date S~/2.-

Static Pressure
3
Null Check
€> .
Signature

SI
Point
WPLE PORT /f
Pi tot
(apm h2o)
Stack
Temp. °F
SA
Point
MPLE PORT Z3
Pi tot
(AP" HpO)
Stack
Temp. °F
/2-
¦ m

7^-
. 3
120'
//
¦-9 &
/2^ '
//
r3S
/ 3 & '
/O

/2-JT'

' 3 "7
/3 O '
7
• ¦yo
c
/ZS
7
'32-
/ 3 S '

/VS'
V
-V7
/3ov .
3
<¦?/
/-as'
3
¦ W
11 o'
2
• 3$:
/** '
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Remarks: ^ ^T/fT/c ^ /t-
free PR# •>$<-'/?£
4/13/78
439076

-------
VELOCITY TRAVERSE
Plant
Pi tot No.
Location	/PA/; -o
Station No.	^	
Date /z>~ z /7?	~
X
Static Pressure 	
Null Check	D

Time /j$-
Signature 9/^
SAMPLE PORT
—
SAMPLE PORT ft
-
Point
Pi tot
(AP" h2o)
Stack
Temp. °F
Point
Pi tot
(AP" HpO)
Stack
Temp. °F
IX
. 3 S
llo'

f3t>
//J"
1/
¦ 37
tXO °
//
'32-
/as'
)0
¦3s
«•
lis
/o
-3/
f2-0 '
f
¦55'
12 0 °
1
¦ 3 ?
/2o '

¦32-
)?- D*
f
'3/
/2.S "
^>7
¦33
1? 0 '

' 36
/OS'
*rL>
-3y
IZ5'

'V/
/2 5~
S
¦si
ITS'
f
-V7
/ 2, S~

¦ 3 S
// f'
f '
-
/2-d '
3

/) o '

' -9 s
//2> '
z
¦2-f
/ *
2

//6 '
/
¦Al

/
, 2 2.:



















Remarks:
51 At /c •? ty is l-L-
}U
-------
VELOCITY TRAVERSE
Pitot No. S~ Y	
Static Pressure . 	
Null Check &
•^^4			X			
Signature
SAMPLE PORT A |
! SAMPLE PORT _B
Point
Pi tot
UP" h2o)
Stack
Temp. °F
Point
Pi tot
(AP" H?0)
Stack
Temp. °F
/-2.
. 3 r
//.£"
/*
-2S
//jtc
//

//s '
//
-3#
/?&'
/o
>yc
/
.3/
/ae> '
f
.3?
/si ^ '
f
>3*>
/2S "
P
. 3 X
ja ^ '
r
-3P
/AS *
7
' 3 6>
/a.5"'
7
• 3/ '
**
/2_r
(p
• 3-r
/^jt *
i>
. 3S
/z-tr"
jT
- 3 S
/3 o '
S
?/
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i







Remarks:
439083
4/13/78
plant BlU'Sss./? /4/^	
Location	J//>A-At
Station No. */f' 3	
Date ~sr/j. 3 /•? fr	
Time 0 X 3 JT

-------
VELOCITY TRAVERSE
Plant BUft/6-e/z.
Pitot No. -5* --
Location he,i-j /£>/1 h 0
Station No. %*} P 3	
Da te _f~>
no- ? -
/2-2 /?f
Static Pressure
Null Check &
?3
SAMPLE PORT A 1
I SAMPLE PORT B
Point
Pi tot
(AP" H20)
Stack
Temp. °F
Point
Pi tot
UP" Hj>0)
Stack
Temp. °F

¦ V/
t/y
/£
/ 3s~
//<*> *
It
¦Vs-
//* ~
/'
r3Z
//.>-*
10
- V-S~
i/ 0 '
/t>
¦ 3 -7
//s"

• y 7
//S*
f
' 3or
/7-t '

-------
VELOCITY TRAVERSE
PI ant

Pitot No.
&-4-
Location
Station No.
Date
Time

4e*I -o;

/c&

Static Pressure
Null Check
Signature
SAiiPLE PORT
A.
Point
Pi tot
(AP" h2o)
Stack
Temp. °F
Point
SAMPLE PORT
Pi tot
(AP" H?0)
Stack
Temp. °F
yz-
JL
to
e_
_z.
Jl.
JT
J.
3
2
.34
. 4o
¦	4-4
¦	36
•37
¦3?
.&T
, fc>
.43
,£z-
.U-
.2
7-
/es~
/or
no
//7
12.1
-IZ4-
!2&
123
IZ4-
HO
_2£1
7-T
J2_
JL
/O
-£l
(r>
JT
4-
o
, 3/
.Is-
¦ 5
,4
!ZQ
12.4-
-IU-
31
Uz_
SB
"bh-tU. + mcdf cjus.h/?&>¦(;£¦! ct^c/A
439087
4/13/78

-------
VELOCITY TRAVERSE
PTant fivL'lssi? }L.t
Pitot No.
lAL
Location K#,J).D£t' t P A In c
Station No. V g f 6 3	
Date . T
"/a. j-
is oJ
7 S
Static Pressure
Null Check £}_
, 73
Signature
SAMPLE PORT £

SAMPLE PORT 3
-
Point
Pitot
(aP" H20)
Stack
Temp. °F
Point
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(AP" H20)
Stack
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ti-
- £ 2.
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./-7

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lemarks: S 7~4 7"/ f A/ V l-L>
pd5
439089
4/13/78

-------
VELOCITY TRAVERSE
ant	U/
PI
Location fa 1*1,3 Oft /DA ^3
Station No., V 03
Date S /2 ^ /-j $¦
Pitot No. S~- y
Static Pressure 	
Null Check O
V/
s/
Point
\KPLE PORT /[
Pitot
(APM H20)
Stack
Temp. °F
SAI
Point
4PLE PORT ^
Pitot
(AP" H?0)
Stack
Temp. °F
/2-
¦ /&

A
¦31
/ /;• JT "
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//
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t (S
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rs '
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fjs- °
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Remarks: pO$iTti/
-------
VELOCITY TRAVERSE
Plant BISA/A /? H /
Location	/PA /? &
Pi tot No.

Station No.	<£>3
Date .S"&/~7 S~
T i me / d> Vjr
Static Pressure
Null Check
J^§T • ~5~ 3 '
7 7).
7>
Signature
SAiiPLE PORT
—
SAMPLE PORT 3
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Point
Pi tot
(AP" H20)
Stack
Temp. °F
Point
Pi tot
(AP" H?0)
Stack
Temp. °F
12-
.
//- L, f- 5TJ~ATIC'¦
TAkff /I ~r
&
439093
h/13/78

-------
VELOCITY TRAVERSE
Plant %!)//jke/Z. J-j
Pitot No.
--y
Location A>/PA-
Station No., u/&c'/ 	
Static Pressure _
Null Check ^
7^
/> ^
Signature

SAMPLE PORT A~
SAMPLE port ^

Point
Pitot
(apm h2o)
Stack
Temp. °F
Point
Pi tot
(AP" H?0)
Stack
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/*-
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TA Me as 4 t Po/fT* A
439095
4/13/78

-------
VELOCITY TRAVERSE
Plant & O'tsAg/Z ^ 	
Location	/ £>/h J? 3
Station No.	£>3	
Date jr/^-y /~7£-
Pi tot No. -g"- V
Static Pressure JH -S
Null Check O
s
Point
MIPLE PORT /f
Pi tot
(AP" h2o)
Stack
Temp. °F
I
SA
Point
•1PLE PORT B
Pi tot
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Stack
Temp. °F
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• JO
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to
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439097
3/78

-------
VELOCITY TRAVERSE
PI
ant BUvA/z/z
Pitot No.

Locati on fcj.jL/) £<£ J PA J) \
Station No. ///? <7 0-3	
Date
Time fj ST
Static Pressure _
Null Check . O
AjL
'¦7F
Signature /S'-ypt,-

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Point
V-iPLE PORT /f
Pi tot
(AP" h2o)
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SA
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(AP" H?0)
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/j-
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Remarks: f> 0 S I T1 V & P2.& i,\s
TTA T t y /s c/J—
TAkff AT	P*> I
'13/78
439101

-------
VELOCITY TRAVERSE
Plant	R. hi <
Location A^V-Z. d> C-C- U>A h
Station No. ^S''7 £>-3	
Date -5"/-? s~
Time / O
Pitot No. ~
Static Pressure /* ^
Null Check 	-
Signature c7fn«-l- 7?^
s
Point
V-iPLE PORT /f
Pitot
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Stack
Temp. °F
SA
Point
¦1PLE PORT 7?
Pi tot
(AP" H?0)
Stack
Temp. °F

• 3-T

/z-
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//
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/ 3«i"~
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•JZ>

-------
Molecular Weight Determination
Station Number	^ "3	
Method of Analysis: Fryrite 1^2
Orsat
Sample Type: Grab 	
Integrated 	
Run
No.
Time
co2
°2
CO
Collected
Analyzed



	&. £ /r—


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/ j fa

/
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O2 Check	3-0
% against 	
CO^ Check
0
% against	^ h /--c7
77-
> C')- (- 5
/pCy'J>4.
V-
Si gnature:
Date: T>/3-/,
Remarks:
439 23

-------
Molecular Height Determination
Station Number f?<7 pjy	
Method of Analysis: Fryrite O^T~ 6 fa
Orsat l/-&y
Sample Type: Grab 	
Integrated 	
Run
No.
Time
co2
°2
CO
Collected
Analyzed


0%'S~S~
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Leak Check:
0.%
O2 Check j2/ d	%	against /fM IB/	%	against AM R /
-------
Molecular Weight Determination
Station Number £c/ P 3	
Method of Analysis: Fryrite 8 %
Orsat ^ 6 7
Sample Type: Grab 	
Integrated 	
Run
No.
Time
C02
°2
CO
Collected
Analyzed
on
/3;jr
i&b
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/tr/4/
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0







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Leak Check: &>7f>
O2 Check J2 J	% against A M3/	
CO2 Check		% against /i //IS / £/s~j~	
Si gnature:^/W^
' yi't'Ci ->7 	 Date: s/zz/ytiT
Remarks:
489 27

-------
Molecular Weight Determination
Station Number 4^*7 3	
Method of Analysis: Fryrite^^9""/'g W/
Orsat 	
Sample Type: Grab 	
Integrated 	
Run
Time
co2
°2
CO
No.
Collected
Analyzed

/??

DW~7
0
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D
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-------
Molecular Weight Determination
Station Number 4$*-- (P 	
Method of Analysis: Fryrite /3	
Orsat
Sample Type: Grab 	
Integrated 	
Run
No.
Time
C02
°2
CO
Collected
Analyzed
/Z
43?s

0
^ £

J2-
/lis
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/2-
y32vT
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Leak Check

O2 Check	$ >S	% against /txA Bi ^ vr
CO2 Check 	0_	% against /(M G> ) ^ A*^T
Signature:
Remarks:

489 30

-------
Molecular Weight Determination
Station Number yY<7 & -3	
Method of Analysis: Fryrite
Orsat
Sample Type: Grab		
Integrated 	
Run
No.
Time
co2
°2
CO
Collected
Analyzed
H
Of 0 7
0?z>7
0
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H
0107
{'e/07
0
S'' 3

H
Oil 1
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//"
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1/07
0
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/// 0
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ll.fr
0.0
lie
///3

1,0
9.k
no
IU
///
/f
-7-
439 .36

-------
Molecular Weight Determination
Station Number H^	
Method of Analysis: Fry rite ^ ! 7 ~~ i
Orsat
Sample Type: Grab 	
Integrated 	
Run
No.
Time
C02
°2
CO
Collected
Analyzed
I'7
/310
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0


n
13 y 2-
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Leak Check

C>2 Check J2. /' ^	% against A7~~	
CO2 Check 	&	% against A A/1 13 / A' T~	
Signature: Isvn "7/k-ti y>L6<. 	 Date: .J? /?- 9/~7 	
Remarks:
489 34

-------
Molecular Weight Determination
Station Number	$3	
Method of Analysis: Fry rite
Orsat 2 Z-
Sample Type: Grab
Integrated
Run
No.
Time
C02
°2
CO
Collected
Analyzed
/?
DgS-Z-
0ZS2-
0
f; 2?

/?

DZSjf
V
y 3

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0 If <£¦
08s~fa
D
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Leak Check:
02 Check J ' 	%	against A MB
CO^ Check 	%	against /! MB/tZASf"
Signature:		 Date: -5 /zshfr
„ . /Slilr
Remarks:
439 37

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI §	I		DATE		j&7?ZJo.o /
MINIMITE
DTI
MINIMI
READING (°F)
READING (°F)
READING
50
3"o
700
60
3?
750
70
&
800
80
To
850
90
V?
900
100
?r
950
125
/2
-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI #
L

MINIMITE # //?/-2-3
MINIMITE
READING (°F)
50
60
70
80
90
100
125
150
200
250
300
350
400
450
500
550
600
650
DTI
READING (°F)
C?0
<£?
^oo
P- s- f
9 c>-zz
3 sr ZZ
y&f
*/ 5~D
JiT ?7~><5xO
i^uaJ &
A
DATE_
NAME
MINIMITE
READING (°F)
700
750
800
850
900
950
1000
DTI
READING (°F)
439025

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI #
L
MINIMITE # J/3/2-9-
MINIMITE	DTI
READING (°F)
50
60
70
80
90
TOO
125
150
200
250
300
350
400
450
500
550
600
650
DATE
NAME	^3
MINIMITE
READING (°F)
READING
$b
700

750
4?
800
do
850

900
??
950
JP-L/
1000
)L/f

2-CO

9-5/

3°/

36-(

t/OO

ft?

m

DTI
READING (°F)
48903L

-------
DTI §
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
	L		DATE 67? d/l '_£> aJ
MINIMITE §	//3'ir?- NAME_g^	
MINIMITE	DTI MINIMITE	DTI
READING (°F)	READING (°F) READING (°F)	READING (°F)
50	££> 700
60	& c) 750
70	-rd 800
80	^<3 850
90	9 <0 900
100	/<&-<£) 950
125	/-£
-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI #
/
DATE
MINIMITE # //.5/^a
MINIMITE	DTI
NAME_
MINIMITE
READING (°F)
READING (°F)
READING
50
So
700
60
&o
750
70
(*?
800
80

850
90
??
900
100
??
950
125

1000
150
/V?

200
O-oo

250


300
3oO—

350
35?

400
Hoi

450


500
Sbo

550


600


650


DTI
READING (°F)
499034

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI #	/		DATE 3/^3/7 P	o>^> P&OJU
MINIMITE # /f3/£-'2—	NAME
MINIMITE	DTI	MINIMITE	DTI
'F)	READING (°F)
READING (°F)
READING (°F)
READING
50
iD
700
60
5T
750
70

800
80
1?
850
90
V
900
100
??
950
125
/£
-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI #	(_
MINIMITE # t/3/ a -2
MINIMITE	DTI MINIMITE	DTI
READING (°F)	READING (°F)	READING (°F)	READING (°F)
50	s~f 700
60	6 / 750
70	7/ 800
80	^ ( 850
90	7 / 900
100	io ( 950
125	/ Z C 1000
150	/>-/
200	0 I
250	s? 2
300	3 o s
350	? Sr 3
400
450	ifST/
500	soO
550
600
650
f. U/J off
/3/7 //Is
4890 [

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
I	DATE ¦£"/>--3/T?	Hryri-icO V??0
MINIM^T^IZZ	wme07
Sk reS'ing CD Sa Rmkm.
700
750
800
850
900
950
1000
50
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60
6 (
70
? -3~
80

90
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100
/O "2~
125
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150

200
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250
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300

350
35"y
400
1/0 3
450
45/
500	S& ~2~-
550	fisf
600	£>&/
650

-------
CALIBRATION OF DIGITAL TEMPERATURE INDICATORS
DTI #	[		DATE rAv/7^ iTl

400
HO)

450


500
£oO

550


600


650


439041

-------
CALIBRATION OF DIGITAL
DTI#	/
MINIMITE # //3/37.
MINIMITE	DTI
READING (°F)	READING (°F)
50
jT<^
60
6 o
70
C 7
80

90
T 9
100
7$
125

150
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200

250
2TI
300
3*/
350
2>JT1
400
(-/ CO
450

500

550
Sif
600
F /3. *-//7s-	
MAME
MINIMITE
DTI
READING (°F)
READING (°F)
700
C<7?
750
7v/
800

850
rsi
900


0) J-O
950
1000

499042

-------
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(8)
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(8)
39
MCTr^A /7Q

-------
APPENDIX A
GLOSSARY OF SYMBOLS
This is a glossary of the symbols used m this document.
Symbols used and defined in the reference method (section
5.11.1) are not repeated here.
Given wavelength of light.
d	Difference between average measured concentration
value of calibration gas A and the continuous
measurement system reading during calibration error
test.
dB	Difference between average measured concentration
value of calibration gas B and the continuous
measurement system reading during calibration error
test.
SUM 1 Sum of the dA values determined in a calibration
error test.
2
SIM 2 Sum of the squares of the d^ values (dA ) used in
the calibration error calculation.
SUM 3 Sum of the dB values determined in a calibration
error test.
2
SUM 4 Sum of the squares of the dg values (dB ) used in
the calibration error calculation.
d	Difference between the reference method value (ppm)
x	and the average analyzer measurement for the itn -
interval in an accuracy test.
d 2	Square of d, value for ith interval,
i	^	i
SUM 5 Sum of the d^ values for nine accuracy test
measurements.
2
SUM 6 Sum of the squares of the di values (di ) used in
a calculation of continuous system accuracy.
SUM 7 Sum of the reference method measurements determined
m an accuracy test and used in the calculation of
system accuracy.
6Z	Difference in zero reading from zero reading taken
two hours before.
2
AZ	Square of AZ value.
(10)

-------
8
9
10
11
4
2
4
2
1 12
[ 13
[ 14
I 15
[ 16
I 17
Calibration drift calculated using the 2-hour span
drift (ppiii) minus the zero drift (ppm) for the
corresponding time period.
Square of 2-hour calibration drift value.
Sum of the AZ values taken in a series of 2-hour
zero drift tests.
2
Sum of the squares of the 6Z values (AZ ) taken in
a series of 2-hour zero drift tests.
Sum of the calibration drift (C) values calculated
from a series of calibration drift tests.
2
Sum of the squares of calibration drift values (C )
calculated after a series of 2-hour calibration
drift tests.
Difference in zero reading from zero reading taken
24 hours before.
Square of the 24-hour zero drift value.
Calibration drift calculated using the 24-hour span
drift (ppm) minus the zero drift (pom) for the
corresponding time period.
Square of the 24-hour calibration drift value.
Sum of the 24-hour zero drift values taken from a
scries of 24-hour drift tests.
Sum of the squares of the 24-hour zero drift values
taken from a series of 24-hour zero drift tests.
Sum of the 24-hour calibration drift values.
Sum of the squares of the 24-hour calibration drift
values (£24^)*
Sum of the upscale response time measurement values
(seconds).
Sum of the downscale response time measurement
values (seconds).
Sample size for the auditing.
Upper quality limit determined from performance test
data and used in assessment of routine calibration
data.
Lower quality limit determined from performance test
data and used in assessment of routine calibration
data.
(11)

-------
G 1-b ACID PLANT 2
(STATIONS 48902 and 48903)

-------

ENVIRONMENTAL PROTECTION AGENCY
OFFICE OF ENFORCEMENT
E PA-330/2-78-018 B

SO 2 Emission
at the
Bunker	Hill
Kellogg,
(MAY 1 2 26,1978]
APPENDIX G
RAW DATA SHEETS AND CALCULATIONS
NATIONAL ENFORCEMENT INVESTIGATIONS CENTER
DENVER, COLORADO
/X*
REGION.X.SEATTLE	I
OCTOBER 1978

-------
Environmental Protection Agency
Office of Enforcement
EPA-330/2-78-018-B
S02 EMISSION TESTING
AT THE
BUNKER HILL COMPANY
KELLOGG, IDAHO
[May 12-26, 1978]
APPENDIX G
RAW DATA SHEETS AND CALCULATIONS
Timothy Osag
October 1978
National Enforcement Investigations Center - Denver
and
Region X - Seattle

-------
G 1-a ACID PLANT 1
(STATIONS 48901 and 48907)

-------
PRELIMINARY FIELD DATA
Stack Geometrv
Plan


Test !$©-».
Location
Date	/^17 y*
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B. Wall thickness, in., =	3~ rf
Inside diameter of stack =¦ A-B_
Stack Area = 7 o ?
Comments:

Sketch of stack cross-section
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Calculator
Point
% Dia. for
circular stack
Dist. from outside
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/
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).Q i —

Run No. I	
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End Time /.^
Bar. Press. "Hg" grp 3i
"C" Factor
Assumed Moisture
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Pi tot Tube No. ^y-,3

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PARTICULATE FIELD DATA
VERY IMPORTANT-FILL IN ALL THE BLANKS
Read and record at the start of
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Time: Start Time /6 OS"	
End Time
/ ?Q>
24.
r?/31
Ambient Temp. F
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Opera tor ¦?	A/^/>r
Sample box No.	^,3-
Meter Box No. ** J	
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Time: Start Time Q9VO
End Time /c
Ambient Temp. °F *¦/?
Bar. Press. "Hg"£7, qV
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Revised 4, U/78
489C29

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Plant -
Run No. c (.	
Location vr?-o/	
Date r/-a -o/~s7	
Operator J> a/
Sample box No.	£_	
Meter Box No. /	
Meter AH 	,	
PAR] ILULAi t HELD DATA
VERY IMPORTANT-FILL IN ALL THE BLANKS
Read and record at the start of
each test point.
Time: Start Time //sZ?
End Time
Ambient Temp. °F _5"%>
Bar. Press. "Hg"
"C" Factor	
Assumed Moisture	
ProbeTip Dia. In ,/f2.
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Probe Length/type s~
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Temp,
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Temp
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Run No.
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Sample box No..
Meter Box No._
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Time: Start Time ) HS3	
End Time \ ^ o o
Ambifc'nu Temp. °F_
Bar. Press. "Hg"
"C" Factor
I
2-~>,
Assumed Moisture
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Post-Test Leak check ,CQ ^ i ^Q ^ ^ v> 'UQ^
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Plant
Run No.
Location'

£25.
/}-CtD PL^<^T	Of
Pate^""-j2.3 - -73
Operator
A/c-
Sample box No.
Meter Box No.
Meter AH
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VERY IMPORTANT-FILL IN	ALL THE BLANKS
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each test point.
Time: Start Time /£>/ 3
End Time // fj.
Ambient Temp. °F |Tr~
Bar. Press. "Hg" o-i >1
"C" Factor	
Assumed Moisture	
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Post-Test Leak check ,00-3 qfm {&> jQ/fvac r>p- /r»
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Sample box No..
Meter Box No.	
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End Time
tmi
Ambient Temp. °F - ^
Bar. Press. "Hg"_
"C" Factor
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Plant - /-?£•/u/4v//
Run
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No. 		
Location */S7 Of *?<-'*£>
Date cfr
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Operator g;. /v *j c-C-
Sample box No
Meter Box No._
Meter AW

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PAKI llULAiE HELD DATA
VERY IMPORTANT-FILL IN ALL THE BLANKS
Read and record at the start of
each test point.
Time: Start Time
End Time /7/
Ambient Temp. °F S~lr5
Bar. Press. "Hg" jpy 26
"C" Factor
Assumed Moisture_
ProbeTip Dia. In_
Pi tot Tube No.
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Filter No.
1
Point
Clock
Dry Gas
Motor TF
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in.H.O
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Temp.
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Date d - ^ 4- 76
Ah
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Sample box No,
Meter Box Mo._
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End Time
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Ambient Temp. tiF Vy
Bar. Press. "Hg" jy / j.
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Assumed Moisture_
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Temp
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Plant - GwU	lAJi C«.
Run No. i-s		
Location nc^i	—V
Date
s( T- v / •> y
Operator	p
Sample box No..
Meter Box No._
Meter AH

PAKI iLULMl h t-itLU UAIA
VERY IMPORTANT-FILL IN ALL THE BLANKS
Read and record at the start of
each test point.
Time: Start Time /3> H o
End Time , w i/ o
Ambient Temp. °F_
Bar. Press. "Hg"~
"C" Factor
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Sample box No.


Meter Box No.


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Ambient Temp. °F^,5~
Bar. Press. "Hg" £l7.P-?-
"C" Factor
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Post-Test Leak check.^o^ f
-------
SAMPLE CLEANUP SHEET
PI ant:	/¦/,£.<_	Date: 
-------
SAMPLE CLEANUP SHEET
Plant: (?> ^ ^	!+/<-<-	Date: ^p/2 /^7>f
Address : K /rz_ a <-=.<=, , & Am o Operators:
Station No.: yCj"? />/		:
Run Mo.:_		Ambient Temperature:	
Barometric Pressure:	Sample Box Number:	-
Impinqer 1
2~o / >& pfr 11*/)
Final Volume	ml of ~~?sr7r-> ^
Initial Volume	nyfc.^.
Volume collected 	ml
Impinqer 2
Final Volume	mV of S	/A Q-
Initial Volume	:S_££>L_Z_j
Volume collected	nil y"
Impinqer 3
Final Volume	 ml/of	y/U o
Initial Volume my
Volume collected	nVl 'j)*
Impi nger
Final Volume	ml of	
Initial Volume	ml
Volume collected	ml
Impi nger
Final weight	gm of 3/(Ls Cs9	^
Initial weight	yyo.X- qm	v-
Weight collected	gm
Total Volume Collected	ml
Filters
Wei ght
No.	Final Weight	Tare Weight Collected
	 	gm		gm 	gm
	 	gm		gm 	gm
J
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Cleanup performed by	on
~DUS~ TO
/AJ/
-------
Plant: 'gt/rt/Cfr' //// .
Address:
Station No.:	~
Run No.: Q-^
SAMPLE CLEANUP SHEET
	Date:_
Operators: /.
Barometric Pressure: ^27. '3 2--
Ambi ent Temperatu re:
_Sample Box Number: ^ ?
3r
Impinqer 1
Final Volume	$T	--ftft of ZS~Q'Ps~&/
Initial Volume 53^, /S~~	-at" yt„}
Volume collected -*/c •?	wi /
Impinqer 2
Final Volume	j5T6TZ 7	of /J? $	
Initial Volume	^
Volume collected /!//	ct4-/
e>/-7
Impinqer 3
573/f of 3"% ^
Final Volume				
Initial Volume	^33. 7 rH ^
Volume collected /7 X-
Im^jnger
Fi riaT~^kilume	ml of		
Initial VoTtJTne-—^^	ml
Volume collected ^ml
	
Impi nqer
Final weight	'7^9^ qm of	t^Tg/	
Initial weight	'747 O gm
Weight collected	j x V gm
Total Volume Collected	/X¦ 3 ml
Fi1ters
Wei ght
No.	Final Weight	Tare Weight	Collected
	gm 	gm
	gm 	gm
Cleanup performed by	— on ^/7f
/sJ-^/O A'/&ie'/e'/~ ^	/¦—c'

-------
SAMPLE CLEANUP SHEET
Date:
Plant:	Uii(
Address: fLe^o^o . ' £>a>4o
Station Mo. : '-/%'?  3^
_0perators : "77-> ~
_	: j?S>7 k>
_Ambi ent Teniperature:
Sample Box Number: 7*^,2 ,
Impinger 1
Final Volume	
Initial Volume	
Volume collected
/(fd.w/
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^47. cf mt ^ V~
7*7
Impinger 3
Final Volume	
Initial Volume
Volume collected
Impi nger
Final Volu
t Co n /
9 m* of	"^0
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IniJj^l'^Vol
—Volume coll
Impi nger
ml of E^PPf1
Final weight
fe/,d om of 5ILK& &»
Initial weight	S gm
Weight collected r$c.z>" gm
Total Volume Collected
Filters
/V y ml
No.
Final Weight
_gm
_gm
Tare Wei aht
_gm
Wei ght
Col 1ected
_gm
gm
gm
Cleanup performed by	t
on ^ - ^22- -
439034

-------
SAMPLE CLEANUP SHEET
Plant: go^ere. m-ilc	
Address : kfu>E>At*o
Station No. :	(0/
Run No.: £?£	
Barometrie Pressure: ^7 3/
	Da te: />/<7>i^/y%
_0perators~7~ £C///Sesn ~
_	: S,a/. a/^a/SC.
_Ambient Temperatu re:
Sample Box Number: z3"
Impinqer 1
Final Volume	
Initial Volume

6>.& gm of J>///
-------
SAMPLE CLEANUP SHEET
Plant:	^'ll	Da te:
Address : ¥Lclujc-x, ,		Operators: /. W/ /SOm^^-7'
Station No.:	O /		: Ji./f- x/»
Run No. : Q'f		Ambient Temperature:
Barometric Pressure: <2-~? 3*/	Sample Box Number:	-^3.	
Impinger 1
1	.V -4frp Of	P/~<:} jxys?&/
&H.I
Fi nal Volume	
Initial Vol ume ^ , , .,
Volume collected	jp4-«/
\.n*
Impinqer 2
Final Volume	t/*<*	,
Final Volume	3"70 .3 art" of
Initial Volume	ffl4- ^
Volume collected /7 -hH,/
Impi nqer
Final Volume	 _____		 rnl of
I n i ti a L-Jte+tnfllf
ume collected
iHiaasiL.	^
Final weight	7&6>. £=> gm of .S/ // fr
489036

-------
SAMPLE CLEANUP SHEET
Plant: £>Cr,j-,. /£>/*-Hq	Operators
Station No.: 4^/* O/	'•	
Run No.: **~c/	Ambient Temperature: ^6
Barometric Pressure: cj<7, /?	Sample Box Number: ^2^
Impinqer 1
Final Volume ySo. ?
Initial Volume
Volume collected -£/},!
Impinqer 2
SaD% / j
of	, Try!C	(y^^/J
Final Volume S^SZP,J
Initial Vo 1 ume SVri,6>
Volume col 1 ected j'X. 4
mi of CK  7
Initial Volume 
mil of
Impi nqer
Final Volume	
Initial Volume
_ml of JEMfn~y
ml
Volume collected_
Impi nqer
Final weight_
ml
Initial weight 7^57^ Z)	gm
Weight collected 2. X O qm
Total Volume Col 1 ected / X, 5~ ml
Fi 1 ters
Final Weight
	 	gm
	 	gm
-71 fy/ • ^ qm of	G£~t—
No.
Tare V/eight
	gm
	gm
Weight
Collected
_gm
gm
Cleanup performed by
on ^ —2_3 — 7S
z£~&'cj> t L^vet-Cb tfeutetz Pi^iOaj
*(.£.£} ciCjQ t"TfM-Vc/c t	lc| ^ (D^Cj
409043

-------
SAMPLE CLEANUP SHEET
Plant:	H.li.	Date:		
Address : A-6^7 / / #-***	Operators : P	,,	-i Acw
Station No.:	1
Run No.:	/'£-, *7"3 nil
Impinger 2
Final Volume i'(gS, l3> m/ of *7-9*71 //7 ~"
Impinger
ifjt
:v~
ir^~
Final Volume	ml of	
Initial Volume	ml
Volume collected	ml
Impi nger
W>
Final weight	§MTwS^__gm of S / C	C^-r- C_	
Ini ti al wei ght ~?q<7, vy qm
Weight collected v^fryqm
Total Volume Collected 7./&? ml
Fi1ters
Weight
No.	Final Weight	Tare Weight Collected
	 	gm		grn 	gm
	 	gm		gm 	gm
Cleanup performed by „ \uv.^^	on $( "2.3 V
489045

-------
SAMPLE CLEANUP SHEET
Plant: '¦CuAsszfJC 	Date: ,D~?- ~7£>
Address : /d^cc^r- //-?s3-r>e*	Operators : &
Barometric Pressure: ^7-2.6	Sample Box Number: # x
Impinger 1
Final Volume S°'i> 'y	ml/ of y/7/r>
Initial Volume ,b
Volume collected	jn\ [jf1'
Impinger 2
Final Volume	my 0f	/4>- ^
Initial Volume	n yl ph
Y
Impinger 3
Final Volume .£> £
-------
SAMPLE CLEANUP SHEET
Plant: Ro/J^cr; 	Date:
Address : k^lx-oc^ i Da ho	Operators :_	^ h>Oyp C/90>¦-»$)
Initial Volume
Volume collected ~ *-j 7, c
Impinqer 2
Final Volume	I	m]/of //.(0-,	f/c?/
Initial Vol ume jSS5~/ 3 ~
Volume collected  £ pi
	 	T
Impi nger
OfJj?CX,	f/O'O^dP)
Final Volume	ml of_
Initial Volume	ml
Volume collected	ml
Impi nger
Final weight	"^^qm of S/L/d		
Ini tial weight	-730, /qm<^,/.. c - 7 qm °--13
Total Volume Collected S3 Cr ml
Fi1ters
Weight
No.	Final Weight	Tare Weight Col 1ected
	 	gm		gm 	gm
	 	gm		gm 	gm
Cleanup performed by	X*. y_£g£l~«=_on -^z^-^g>
Utfeieb

-------
SAMPLE CLEANUP SHEET
Plant:	U,Cc.
Address : k^CLo	f Osi/*,
Station No. \_j£££^£_r_
Run No.: xs"
Barometric Pressure :_J2_ZZjL
Date:
Operators: ,*) 0„r
r- ,2 V- ~?i"

_Ambient Temperature: Qx c
SfrmpT-e- Bux Number1: -ij ?/£
o 2f u S'
Final Volume	
Initial Volume s~w. fi
Volume collected // -?y
Impinqer 3
m; of A/, c,

rz
Q e» 4, "2. I m7 0f //7	5" ^	C_/^cy^y^
Final Volume	
Initial Volume ^^,,37 	m
Volume collected /-T, 7 V n/l ^
ImtHpqer
Final Vc
ml of
Initial Volume^
Volume collected
Impi nqer
Final weight_
o\\.
1 , ' I gj of S, L,?
4390
f 0?. - /j5A

-------
SAMPLE CLEANUP SHEET
Plant:	/-/,//	Date:	~7&
Operators: js;/y as
_Ambient Temperature:
Sample Box Number: -**•-7
Address : >^r-///j>*?^
Station No.		
Run Mo.: /&>	
Barometric Pressure:
Impinqer 1
Final Volume ^9673 n/ of	/^W^7
Initial Volume
Volume col 1 ected - y<7, ?'
Impinqer 2
Final Volume -3 ¦ (=,
Initial Volume jf^-^7^3
Volume coll ected ~2/. 3

Impinqer 3
Final Volume_	?. g. n/ Of	/OCry^
Initial Volumej^S~t/il P ^ ^
Volume collected /•> O
r T
Impi nger
Final Volume	ml of	
Initial Volume	ml
Volume collected	ml
Impi nger
Final weight	~7G.	qm of	G?£r(^_	
Initial v/eight ~7ft	qm
Weight col lected ^ t ,cf qm
Total Volume Collected /7. 7 ml
Fi 1ters
Weight
No.	Final Weight	Tare Weight Collected
_gm
gm
Cleanup performed by	A* JLteL,j£_~ on S~~2-*/~78
4 3 9 0 5 C

-------
VELOCITY TRAVERSE
Plant P M t- JZ. H J 		Pitot No.	~~ 	
Location	£- IDA h °	Static Pressure
Station No. 4tfjl & /		Null Check '		
Date .	*¦
Time /XJJJT			Signature J
SI
Point
\MPLE PORT /§-
Pi tot
(APn h2o)
Stack
Temp. °F
SA
Point
4PLE PORT 3
Pi tot
(AP" H?0)
Stack
Temp. °F
6?
, V D
/y t>°
6?
.^2.
/3 d'
jr
<7/
/y
S

/¦"/a °
y
- ^<5~
*
*/
¦&

3
<• b>
/,? 0 '
3
,ySr
/y & °
7-
. ^ JT
/^JT ~
S-
' & s~
/y a °
-M
• 3JT
J3o *
1
<3 D
/2-D'






















































Remarks: ^
439054
4/13/78

-------
VELOCITY TRAVERSE

Plant "g^^grp f] ill
Pitot No.
s~^
Location 4^9 61. M" i^> T\aMT~
Station No.	ol
Date

Static Pressur
Null Check
s
Point
UiPLE PORT ^
Pitot
(AP" h2o)
Stack
Temp. °F
SA
Point
f/pLE PORT \^h
Pi tot
(AP" HpO)
Stack
Temp. °F
b
^-J).

(

T
.ft

3
.41

H
¦ Ya.

H
.*>1

3
.~73

3



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Remarks
: ^pfY.-pcu-iSOK	4S6! -Ol	M^0] -CH
f-LViCTUPiTtO^S ^C-C'OR.(fit /oec,
rju}
43905
4/13/78

-------
VELOCITY TRAVERSE
Plant	#//-£•
Location big/.2. ft <£- £- I PA h ^
Station No.	/> /	
Date ->_—/*?- 7
Pi tot No. -3
/°
2-

/ >s~ &
1
> 7 0

)
'J '7
, 0
/vn
/
, ya ¦
/3 Z> "
















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1














I

Remarks:

4/13/78
439055

-------
VELOCITY TRAVERSE
Plant 7~^ua/££7? /J,'//

Location //•%7 /4t?/£> PtA^T
Station No.	-o7	

Date JT-/f- 7%
Pi tot No. 	
Static Pressure 	/ 3L
Mull Check	CfL
SAMPLE PORT 1
1 ' k
I SAMPLE PORT A
Point
Pi tot
(aP" h2o)
Stack
Temp. °F
Point
Pi tot
(AP" Hj>0)
Stack
Temp. °F



6^
,73-

c5~


cfT
. 4$

Y
,47

i
,

O


3
, 7JZ

=2
.37


, 94

./
/ -J
-
(
31-
0

















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•






















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Remarks
Su
8»
439052
4/13/78

-------
VELOCITY TRAVERSE

Plant JhU' Jr/rlA ///^
Pitot No.
^p-
Location £ ID A J)"0
Station No. g" c/ fi /	
if- *S~-CL
NO. ^
Date ^/^dJ~7£-
yVzhC
Static Pressure _
Null Check £)
/¦ 3
Time Oct
Signature
s
Point
\MPLE PORT /f
Pi tot
(apm h2o)
Stack
Temp. °F
SA
Point
MPLE PORT ^
Pi tot
(AP" h?o)
Stack
Temp. °F
fa

¥ vlo
C»
/#i>


/gt>~
jr
1
^)
«_ '
W- 
J 3 o"
Jfjj
i4
IV. $V
/ ^5-
y
¦ 73
/g* *
3
i
'/
! Z-Z°
3
r $ 3
/SS"
JL
. 5
'i ns
^ 1*
IBS
2-

/ss-'
¦ /
• I
V -38
/yo"
/
' 3 ^7
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Remarks: k3eG(VH^t^^^
t
3/73
TAJUS^ ^
0 /ze^—i o a-? P ^	p
p//?r //^ pjto / ( o be
0 /?" A7 ^ '
439058

-------
VELOCITY TRAVERSE
Plant l3i)KlkEH 4

iCh

ILL
Location Ljrg m &c id Pi/vaj-t-
Pitot No.


Station No.	o~j
Static Pressure
Null Check
/ <£>
Date ir-AO-ra
,/Q
f3 n
SI
Point
!\MPLE PORT /I
Pi tot
UP" h2o)
ro t- /?
Tomp. °F
SA
Point
f
MPLE PORT
Pi tot
UP" H?0)
^ roT
UULL. c:U<=CJ<
.leap. 5?
G
J
* ,72
J jzf' ,00
£
,.5~3
' ^2
c5~
.52
J .J2Z , /1

,.sV
, 03
4
.53
•f ^-~
* ^&f ¦ Ob

,4¥
, £>£


|Z€TPcsi;K-> t-0^
5,rAC
C^&ScjCjTS to AS
TPrTOp»os ??/vrAPf -IfJc




(^rr+teiE. X{5?ctv\
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)




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Remarks:
4/ ^rP-nc p i7-K^>o
T'of'.f" Coi^rit'i	C43
ue^fVTivjB pii£s^.o^e


43905F
4/13/78

-------
VELOCITY TRAVERSE
Plant .RVAS&&JZ- H / i>
Location J9 A U
Station No. *y	/	
Date
Time
Pitot No. -=£~~
Static Pressure /•^
Null Check
*> -a
/
Signature 7^-m- 1	*^.7/
s
Point
\iiPLE PORT
Pitot
(AP" h2o)
Stack
Temp. °F
SA
Point
4PLE PORT
Pi tot
(AP" H?0)
Stack
Temp. °F
Co
./jt
/6*"
t?
/
/g'vT"
£
,£2>
/Zd '

. jT^r"


-57
/?-*'
y
,S7
JZS"
3
¦ 72.
/ z t>°
3
- $ 2-
/S"s*

¦72-
/?£>'
2

/^y
/
«_r/
/#0 '
/
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/VS°























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			A	



Remarks:
'^sTA nc. 4-
439059
4/13/78

-------
VELOCITY TRAVERSE

Plant Rom t4-l LL
Pi tot No.

~ ^

Location aciT> T^i_/vO <
Station No. <78"^ -07
Date	- 7?r
T i me (9?¥D
Static Pressure
Null Check
Si gnature




Point


SAMPLE PORT /
Pi tot
(AP" h2o)


/
~P) 7C7- (OuV(_
-5LdCk
Temp. °F*
SAMPLE PORT
Point

L
DO
S"
Pi tot
(aP" H?0)
. 57
i£7
PiTor k)olf
cwStHrtr
Tomp. °l
J I
nz.

O -7
. o 7
/


/ Oo
3
,&6>
. o/
3
¦ 77
- of-
1
, H
. oi
3-
¦ 96
. (c'f
dO
, fro
^QL
¦ 07
Remarks": l
R"

i >4
n B
°.~o
* snvnc Pfesoae	pe& pee5Sjjje ^ f£X—
=}
43905
4/13/78
75, ii-r cr •> r> r »">

-------
VELOCITY TRAVERSE
Plant ]3o'°'^r ft fit


Pitot No.
¦^sL
Location A-c~ /v
Station No. ({-ft*} -q~"}
Date
^ -3lq - 7£>
Static Pressure 	
Null Check ySp
/-7
3*c5-c-

SAI iPLE PORT A
1 T?
SAMPLE PORT S
Point
Pitot
UP" h2o)
IpiBr Jalldwi.
'Stack
Temp. °f-
Point
Pi tot
UP" HpO)
~Stack~
4"-emp. -PF
c?
f
. c>°
Co
. -5~0
• /

*
^ O /
. o4
cf
, 39
. <93
3
, It
, OO
3
¦ 77

a
.70
/
, T2. '
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Remarks:	^TM"^ ?P_esS
-------
VELOCITY TRAVERSE
Plant 3V.'MAc?-,A. A/
Location /Pd Jl &
Station No. ^f'7 <9 /	


Pitot No. 	
Static Pressure /*
Null Check	D

Date
/J2S/-P g-
t
SI
Point
WPLE PORT /f"
Pi tot
UP" h2o)
Stack
Temp. °F
SA
Point
MPLE PORT B
Pi tot
(AP" H;>0)
Stack
Temp. °F
6>

/jr^"
6?
*

jr
¦Sjt
/d'jr*
jT

/SIS''

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/&s ~
-y
¦ 6? ^
/7 0 '
3
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/6S~ "
3
tS"Z-
/7 & '
2
• k f
/yjr*
JZ
¦
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/
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/
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5 / A T ^ 
-------
PI ant
OSw f(^>^ Hi I f
	
VELOCITY TRAVERSE
. S~ ^
Location 	
Station No.
Date S/rj //-?r
Time
Pi tot No 	
Static Pressure /. %	
Null Check 	Q
Signature^


s
Point
\MPLE PORT /JL
Pi tot
(aP" h2o)
Stack
Temp. °F
SA
Point
-1PLE PORT /^>
Pi tot
(AP" HpO)
Stack
Temp. °F
li
. So
114
/l
- 30-
! IG>
//
. ^
I 27
//
, V7
(1 3
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/ 19
f ' *
9
. 
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%
. 12_
/ 39
<2r

/
&
, ^
H/
£
v ts'
N3
<7
•"7 
-------
VELOCITY TRAVERSE
Plant A /l'	/-//1 <-
Location
Pitot No.
-9
Station No.
Date ¦<
6 / OA //
> >> o ^7
Static Pressure - ft
n. /-? *
/sZ.
?*$*=?o
ft*
 ,.3s~
/* *-7^/
f
O.H3
/5'cl
*
0,1 C
/<^1
7
0,:LCL
/?T/
7
O.3. C
s/
£•
n.5-7?
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/


r
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~'V :z_
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5~
£
/5. £ F

3~
&,«T/
—
/
3 5^
SZL V
/
0,39
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Remarks:
49906
4/13/78

-------
VELOCITY TRAVERSE
Plant	h'/t
h / C(
Pitot No.
s^l
Location	• T
Station No. U fcj- o 7
Date
Time
VU-
r-i/-7r
Static Pressure _
Null Check Q~	
Signature (f?
/ ? fa,.
f /
-n
SAMPLE PORT A
SAMPLE PORT /3
Point
Pitot
UP" h2o)
Stack
Temp. °F
Point
Pi tot
UP" H?0)
Stack
Temp. °F
u

/w
n
CL)
//? ¦
//
<7t
nr
u
Jr
1 IT'
/*
. Co
/ y/'
to
"-Jr
/-V'
f

/ ^/r


/3<7<
t
¦ -2-Z.
my
f
'}T
>9/'
7

-mr'
7
> £
-------
VELOCITY TRAVERSE
Plant J/ tL-ts
Location jie.jLd- JO A I) o
Station_No.	& /	
Date	V
Pitot No. S~~
Static Pressure /> $
Null Check $	
s
Point
WPLE PORT /f
Pi tot
(AP" H20)
Stack
Temp. °F
SA
Point
MPLE PORT B
Pitot
(AP" H?0)
/
Stack
Temp. °F
&


L?
•3 2.

S
C*a*Tl
" /Vfi *
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'Sr J
/3'-3' *
y
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/?£> '
'/
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3
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/~5~£> "
3
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a
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Remarks: 5 -fftT/* fl/	V ^ //u /£. f> b //^T^>
A £'A /f^HT d u /*. £> f d(7^& (F-e'Cp'e f
-------
VELOCITY TRAVERSE
Plant	V/jl*
Location
Station No. r- /JiS//
C* &7

/'
,
'
//
' 7?

A>
, O Co
. oo
/O
» /

1
,5S~

9
.*S-
. OO
r

. 2>a
r
. ¥0

^)7

_
*7
.v7 '
.0/
I,
. "7/
, /
c?
. 76

-S"~


s~
, 9s

Y
\i !
• 0/
¥
, 90, ¦

J
,

3
. 9S~
; ay
X
< ~?3
¦ 03
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. fro

/
,62

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¦ 2 i
• d£3


















Remarks:
Static +>r.ssoEa' T~A:te^	p^-SSu^
tou *b
4S9061
4/13/78

-------
VELOCITY TRAVERSE
Plant 3&JU	^
Pitot No. - -2.
Location 76
/?s *
Y
• 0
/**'
3
.7 5
/V#'
3
• 7 7
/jr_s' *
2
•6? &
J Vs"

- S~^~
/y^°
/
2- 2
y ^ T»
(2- O
















-




















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Remarks. ST A I / & ^ "ft 7 R V fls / Ay £- J 2- /* d / ^
A /A >/ d U tZ	£> /// ^-/-Al (j~/ig (z. ^
7;
mLCO'L^
A
JEL
<5J
4/13/78
7
4390F

-------
VELOCITY TRAVERSE
Plant Fit > a////^L
Pi tot No.


Location /?- 7\_s?aj7~
Station No.	07
Date
Time
Static Pressure
/, 8

Null Check
Signature _

^	
SAMPLE PORT /¦%
- V
SAMPLE PORT A
Point
Pitot
(AP" H20)
Stack
Temp. °F
Point
Pi tot
(aP" H?0)
Stack
Temp. °F
/-2.


/z-
, .5*2
, OO
//
. y9
. OO
//
' V/

/o
. s~o

/O
*
. OO
9
, 5T3
,
?
, */-3>

8T
. ^57


, jSjT
< O/
7
.4J
> 03
7


V
~ 6>
. 7/

c-
. 5-7
, Of
S~
,92-
. O/
g-
.


. 9(n

V
'
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3
. W
. 
-------
VELOCITY TRAVERSE
Plant	///^
Pi tot No.	2—
Location A* y.z/PA hv
Station No.	# /	
Static Pressure J' *9
Null Check $
Date
Time
Signature