-------
APPENDIX H
LIMESTONE FURNACE INJECTION SYSTEM
MATERIAL BALANCE
AND
RATE CALCULATIONS
-------
TABLE H-l. TOTAL SULFUR MATERIAL BALANCE
Experiment 17R
Marble Bed (Set #1)
Entering Streams Spray Water
Additive
Gas In
Leaving Streams
Gas Out
Scrubber Liquid
Scrubber Bottom
Flow Rate
406 1/min
2,010 g/m1n
10,950 g mole/mln
11,605 g mole/mln
329 1/min
102 1/min
Solid
Content
2.635
10.2
Total S
In Solid
(m mole/g)
0.55
0.869
0.677
Total S
In Liquid
(m mole/1)
11.27
23.41
12.61
Total S Total S
In Gas (m mole/
(jpm) mln)
1.456
764
4,576
1,106
15,943
8,866
8,455
1,991
Total Sulfur In = 21,625 - Total Sulfur Out = 19,312
Marble Bed (Set #2)
Entering Streams Spray Uater
Additive
Gas In
Leaving Streams
431 1/min
2,010 g/mln
10,950 g mole/mln
0
2.28
11.1
0.55
0.765
0.692
10.68
22.57
13.0
1,456
764
4,603
1,106
15,943
8,866
7,999
2,109
Gas Out
Scrubber
Scrubber
Liquid
Bottom
Total
Scrubber Liquid
Scrubber Bottom
Make Up Uater
11,605
329
102
Sulfur
329
102
208
g mole/mi n
1/min
1/min
In = 21 ,652
1/min
l/m1n
1/min
2.28
11.1
- Total
2,635
10.20
0
0
Sulfur
0
0
.765
.692
Out =
.869
.677
22.
13
18,974
23.
11
57
.0
75
.3
Hold Tank (Set #1)
Entering Streams
Leaving Streams Hold Tank Eff. 639 1/min 3.27 1.73 10.9
Total Sulfur In = 10,424 - Total Sulfur Out = 10,580
8,567
1,857
10,580
Hold Tank (Set #2)
Entering Streams Scrubber Liquid 329 l/m1n
Scrubber Bottom 102 1/min
Make Up Water 208 1/min
Leaving Streams Hold Tank
2.65
8.77
0.95
1.012
21.95
12.74
631 1/min 3.27 1.74 10.9
Total Sulfur In = 10,255 - Total Sulfur Out = 10,468
8,050
2,205
10,468
H-l
-------
TABLE H-2. TOTAL SULFUR MATERIAL BALANCE
Experiment 18R
Flow Rate
Hold Tank
(Set #1)
Entering Streams
Scrubber
Scrubber
Liquid
Bottom
Clarlfier Liquid
Leaving
Hold Tank
Streams
(Set #2)
Entering Streams
Hold Tank Eff.
Scrubber
Scrubber
Total
Liquid
Bottom
Clarlfier Liquid
Leaving
Marble Bed
Entering
Leaving
Marble Bed
Entering
Leaving
Streams
(Set #1}
Streams
Streams
(Set #2)
Streams
Streams
Hold Tank Eff.
Inlet Gas
Scrubber
Additive
Total
Spray
Outlet Gas
Scrubber
Scrubber
Inlet Gas
Scrubber
Additive
Liquid*
Bottom
Total
Spray
Outlet Gas
Scrubber
Scrubber
Liquid
Bottom
682
114
76
872
Sulfur
682
114
76
872
Sulfur
10,820
796
2,045
11,630
682
114
Sulfur
10.820
796
2,045
11,630
682
114
1/min
l/m1n
l/m1n
1/min
In = 135,994
1/min
1/min
1/min
l/m1n
In = 123,879
g mole/ml n
1/min
g/mln
g mole/mi n
l/m1n
1/min
In = 119,621
g mole/mi n
1/min
g/mln
g mole/mi n
1/min
1/min
Solid
Content
47
60
0.
45
.3
.0
17
.0
- Total
40
55
36
.4
.5
.6
- Total
36
41
53
.7
.4
.9
- Total
33
40
49
.5
.5
.9
Total S
in Solid
(m mole/g)
3
2
3
Sulfur
3
2
2
Sulfur
3
0
3
2
Sulfur
3
0
3
.09
.57
-
.08
Out =
.21
.49
.98
Out =
.01
.51
.34
.51
Out =
.08
.51
.18
2.435
Total S
in Liquid
Cm mole/1 )
22.
18.
17.
17.
136,450
23.
19.
17.
19.
55
09
05
88
71
23
36
99
112,538
18.
27.
19.
50
30
54
135,773
20.
29.
19.
05
30
44
Total Sulfur In = 115,049 - Total Sulfur Out = 129,082
Total S Total S
in Gas (m mole/
(ppm) mlnj
115,058
19,641
1,295
136,450
104,614
17,946
1,319
112,538
1,471
447
1,471
447
15,920
102,658
1,043
5,200
112,923
17,650
15,916
98,091
1,042
5,198
107,817
16,067
^Average of Back and Front Marble Bed
H-2
-------
TABLE H-3. TOTAL SULFUR MATERIAL BALANCE
Experiment 19R
Solid
Total S
Content In Solid
Marble Bed (Set #1)
Entering Streams
Leaving Streams
Marble Bed (Set #2)
Entering Streams
Leaving Streams
Hold Tank (Set #1)
Entering Streams
Gas In
Scrubber Spray
Additive
Gas Out
Scrubber Liquid
Scrubber Bottom
Total
Gas In
Scrubber Spray
Additive
Gas Out
Scrubber Liquid
Scrubber Bottom
Total
Scrubber Liquid
Scrubber Bottom
Make Up Mater
Flow Rate
9,200 g mole/mi n
738 1/mln
2,800 g/mln
10,555 g mole/m1n
662 1/mln
76 1/mln
Sulfur In = 68.029
9,120 g mole/mln
738 1/mln
2,800 g/mln
10,487 g mole/mi n
662 l/m1n
76 l/m1n
Sulfur In = 67,255
662 1/min
76 l/m1n
133 1/mln
g/1
13.9
14.4
32.10
- Total
14.60
15.90
41.90
- Total
12.20
28.70
(m mole/g)
2.21
0.55
1.87
1.83
Sulfur Out = 72
2.0
0.55
1.73
1.82
Sulfur Out = 73
1.68
2.17
Total S
in Liquid
(m mole/1 )
35.90
53.30
39.20
,113
36.60
52.40
37.30
,315
53.7
30.4
Leaving Streams
Hold Tank (Set #2)
Entering Streams
Leaving Streams
Hold Tank Eff. 871 1/min 13.90 2.26 36.3
Total Sulfur In = 56,162 - Total Sulfur Out = 58,979
Scrubber Liquid
Scrubber Bottom
Make Up Water
662 1/min
76 l/m1n
133 1/min
13.0
33.0
1.69
2.09
52.51
26.4
Hold Tank Eff. 871 1/min 14.90 2.05 35.90
Total Sulfur In = 56,554 - Total Sulfur Out => 57,873
Total S Total S
In Gas (m mole/
(ppm) min)
1,883
1,095
1,881
1,124
17,324
40,165
1,540
11,558
53,111
7,444
17,155
48,560
1,540
11,787
52,898
8,630
49,118
7,044
58,979
49,306
7,248
57,873
H-3
-------
TABLE H-4. TOTAL SULFUR MATERIAL BALANCE
Experiment 20R
Marble Bed (Set #1)
Entering Streams
Leaving Streams
Marble Bed (Set #2}
Entering Streams
Leaving Streams
Hold Tank (Set #1)
Entering Streams
Leaving Streams
Hold Tank (Set #2)
Entering Streams
Leaving Streams
Gas In
Scrubber Spray
Additive
Scrubber Liquid
Scrubber Bottom
Gas Out
Total
Gas In
Scrubber Spray
Additive
Gas Out
Scrubber Liquid
Scrubber Bottom
Total
Scrubber Liquid
Scrubber Bottom
Clarifler Liquid
Make Up Water
Hold Tank Eff.
Total
Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
Make Up Water
Hold Tank Eff.
Flow Rate
9,400 g mcle/min
757 Vmin
2,800 g/min
681 1/min
76 1/min
10,850 g mole/mi n
Sulfur In = 55,028
9,400 g mole/mi n
757 1/min
2,800 g/irin
10,850 g mole/min
681 1/min
76 1/min
Sulfur In = 56,071
681 1/min
76 1/min
151 1/min
151 1/min
1,059 I/min
Sulfur In = 48,064
681 1/min
76 1/min
151 1/min
151 1/nin
1,059 I/rain
Solid Total S Total S
Content in Solid In Liquid
g/1 (m mole/g) (m mole/1)
6.94 2.0
0.50
9.25 1.50
25.3 1.53
- Total Sulfur Out =
6.99 1.78
.50
8. 00 1.23
22.6 1.48
- Total Sulfur Out -
7.33 1.61
22.7 1.80
0.13
7.38 2.05
- Total Sulfur Out =
7.07 1.43
20.5 1.69
6.65 1.93
32.6
45.7
33.4
57,878
35.7
46.55
38.60
55,705
45.7
19.9
28.40
31.90
49,804
47.4
26.1
28.3
34.90
Total S Total S
in Gas (m mole/
(ppm) min)
1,962 18,443
35,185
1,400
40,571
5,480
1,090 11,827
1,939 18,227
36,444
1,400
1,090 11,827
38,402
5,476
39,158
4,618
4,288
49,804
39,164
4,617
4,273
50,551
50,551
H-4
-------
TABLE H-5. RATE CALCULATION USING SOLID MATERIAL BALANCE
Experiment 17R
Total
Slurry Concert, Concert. Concen. Species
Solid In Solid In Liquid In Gas Flow Rate
Stream Flow Rate Conti (g/11 (m rnole/g) (m mole/1) tPPHJ m mole/min
Marble Bed (Set 41)
1. CaS03 1/2 H20 Formation
Entering Streams - .....
Leaving Streams Scrubber Liquid* 329 l/m1n 2.635 0.80 693
Scrubber Bottom 102 l/m1n 10.200 0.59 614
Rate of CaS03 1/2 H?0 Formation = CaSOj 1/2 H20 (Out) - CaS03 1/2 HgO (In)
= 693 + 614 = 1307 m mole/min.
2. S02 Oxidation
Entering Streams Inlet Flue Gas 10,950 g mole/min 1|456 15,943
Scrubber Spray 406 1/min 1.0 406
Leaving Streams Outlet Flue Gas 11,605 g mole/min 764 8,866
Scrubber Liquid* 329 1/min 8.95 2,944
Scrubber Bottom 102 1/min 1.0 102
Rate of S02 Oxidation = S02 (In) - S02 (Out) - CaSOj 1/2 H20 Formation Rate
= 16,349 - 11,912 - 1,307 = 3,130 m mole/min.
3. Ca S04 2 HjO Formation
Entering Streams (Additive) 2,010 g/min 0.55 1,105
Leaving Streams Scrubber Liquid* 329 1/min 2.635 0.069 59.8
Scrubber Bottom 102 1/min 10.2 0.087 90.5
Rate of Ca S04 2 H20 Formation = CaS04 2 H20 (Out) - CaSO, 2H20 (In)
= 90.5 + 59.8 - 1,105 - 150 - 1,105
= -955 m mole/min
4. CaCQ- Formation
Entering Streams (Additive) 2,010 g/min 0.39** 784.0
Leaving Streams Scrubber Liquid 329 1/min 2.635 0.220 191
Scrubber Bottom 102 1/min 10.2 0.362 377
Rate of CaC03 Formation = CaC03 (Out) - CaC03 (In)
= 191 + 377 - 784 = -216 m mole/min
5. Ca(OH)2 Dissolution
Entering Stream Scrubber Spray 431 1/min* 13.7 5,905
Leaving Streams Scrubber Liquid 329 1/min 19.0 6,251
Scrubber Bottom 102 l/m1n 16.8 1,714
Rate of Ca(OH)2 Dissolution = Ca(liq.) Out - Ca(11q.) In + CaCOj + CaS04 2 HgO + CaSOjl/2 H20 Form
= 6.251 + 1.714 - 5,905 + (1.307 - 955 - 216)
- 2,196 m moles/mln.
*Average of marble bed front and back
**From Radian Corp.
•(•Subtotal of Scrubber Bottom + Scrubber Liquid
H-5
-------
TABLE H-5. RATE CALCULATION USING SOLID MATERIAL BALANCE (Continued}
Total
Slurry Concen. Concen. Concen. Species
Solid In Solid In Liquid In Gas Flow Rate
Stream Flow Rate Cont. (g/1) (m mole/g) (m mole/1) (PPM) m mole/rain
Hold Tank (Set #1)
1.
2.
CaS03 1/2 H20 Formation
Entering Stream
Leaving Streams
S02 Oxidation
Entering Stream
Leaving Streams
Scrubber Liquid
Scrubber Bottom
Make Up water
Hold Tank Eff.°
Rate of Ca S03 1/2
Scrubber Liquid
Scrubber Bottom
Make Up Water
Hold Tank Eff.°
329 1/mln 2.635 0.80
102 1/min 10.20 0.59
208 1/min
639 1/min* 3.27 1.51
H20 Formation = CaS03 1/2 H20 (Out) - CaS03 1/2 H20 (In)
= 3,155 - 693 - 614
= 1 ,848 m moles/mi n.
329 1/min 8.9
102 1/min 1.0
208 1/min
639 l/min+ 1.5
Rate of S02 Oxidation = S02 (liq.) In - S02 (liq.) Out - CASOj 1/2 H20 Formation
3.
4.
= 2,928 + 102 - 958 - 1,848
= 224 m mole/mi n.
693
614
3,155
2,928
102
958
Rate
CaS04 2H20 Formation
Entering Stream
Leaving Stream
CaC03 Formation
Entering Stream
Leaving Stream
Scrubber Liquid
Scrubber Bottom
Make Up Water
Hold Tank Eff.
Rate of CaS04 2H20
Scrubber Liquid
Scrubber Bottom
Make Up Mater
Hold Tank Eff.
329 1/min 2.635 0.069
102 1/min 10.2 0.087
208 1/min
639 1/min 3.27 0.23
Formation = CaS04 2H20 (Out) - CaSO^ 2H20 In
= 481 - 90 - 60 = 331 m mole/min.
329 1/min 2.635 0.220
102 1/min 10.2 0.362
208 1/min
639 1/min 3.27 0.650
60
90
481
191
377
1,358
Rate of CaCOj Formation = CaC03 (Out) - CaCO, (In)
= 1,358 - 377 - 191 = 790 m mole/min.
5. Ca(OH)2 Dissolution
Entering Stream
Scrubber Liquid
Scrubber Bottom
Make Up Water
329 l/m1n 19.9
102 1/min 17.4
208 1/min 1.08
6,547
1,774
224
Leaving Stream Hold Tank Eff.
639 1/min
11.7
7,476
Rate of Ca(OH)2 Dissolution = Ca(liq.) Out - Ca(liq.) In + CaC03 + CaSO^ 2H20 + CaS03 1/2 HgO
= 7,476 - 6,547 - 1,774 - 224 + 1,848 + 331 + 790
= 1,900 m moles/min
+Subtotal of Scrubber Bottom + Scrubber Liquid
"Stream characterization is assumed to be the same as in Set 2 since the sample was taken in between the two sets.
H-6
-------
Marble Bed (Set #2)
1. CaS03 1/2 H20 Formation
Entering Stream
Leaving Streams Scrubber Liquid
Scrubber Bottom
TABLE H-5. RATE CALCULATION USING SOLID MATERIAL BALANCE (Continued)
Total
Slurry Concen. Concen. Concen. Species
Solid In Solid In Liquid In Gas Flow Rate
Stream Flow Rate Copt, (g/1) (m mole/g) (m role/1) (Pf H) m mole/mln
329 1/min
102 1/rnin
2.28
11.10
0.30
0.50
225
566
Rate of CaS03 1/2 H20 Formation = CaS03 1/2 HgO (Out) - CaS03 1/2 H20 (In)
" 791 m mole/mi n
2. SO- Oxidation
Entering Stream
Inlet Flue Gas 10.950 g moles/mln
Scrubber Spray 431 1/min
Outlet Flue Gas 11,605 moles/mi n
Scrubber Liquid 329 l/m1n
Scrubber Bottom 102 1/min
1.3
7.2
1.7
1,456
764
15,943
560
8,866
2,368
173
Rate of S02 Oxidation = S02 (In) - S02 (Out) - CaS03 1/2 H20 Formation Rate
15,943 + 560 - 8,866 - 2,368 - 173 - 791 = 4,305 m mole/min
3. CaS04 2H20 Formation
Entering Stream Additive
Leaving Streams Scrubber Liquid
Scrubber Bottoms
2,010 g/m1n
329 1/min
102 1/min
2.28
11.1
0.55
0.465
0.192
1,105
349
217
Rate of CaS04 2H20 Formation = CaS04 2H20 (Out) - CaS04 2H20 (In)
= 217 + 349 - 1,105 = - 539 m mole/min
4. CaC03 Formation
Entering Stream
Leaving Stream
Additive
Scrubber Liquid
Scrubber Bottom
2,010 g/min
329 1/min
102 1/min
2.28
11.1
0.39
0.296
0.511
784
222
578
Rate of CaC03 Formation = CaCOj (Out) CaC03 (In)
= 222 + 578 - 784 = 16 m mole/min
5. Ca(OH)2 Dissolution
Entering Stream
Leaving Stream
Scrubber Spray
Scrubber Liquid
Scrubber Bottom
431 1/min
329 1/min
102 1/min
12.8
19.1
16.3
5,516
628
1,662
Rate of Ca(OH)2 Dissolution = Ca(11q.) Out - Ca(l1q.) In = CaC03 + CaS04 2H20 + CaSOj 1/2
= 6,284 + 1,662 - 5,516 + 791 - 539 + 16
= 2,698 m mole/min
H-7
-------
Hold Tank (Set #2)
1. CaS03 1/2 H20 Formation
Entering Stream Scrubber Liquid
Scrubber Bottom
Make Up Water
o
Leaving Streams Hold Tank Eff.
TABLE H-5. RATE CALCULATION USING SOLID MATERIAL BALANCE (Continued)
Total
Slurry Concen. Concen. Concen. Species
Solid In Solid In Liquid In Gas Flow Rate
Stream Flow Rate Cont. (g/1) On mole/g) (m mole/1) (PPM) m mole/mln
329 1/mln
102 1/min
208 1/min
2.65 0.52
8.77 0.83
-
639 1/min
3.27
1.51
Rate of CaS03 1/2 H20 Formation = CaS03 1/2 HgO (Out) - CaSOj 1/2 HgO (In)
= 3,155 - 453 - 742 = 1,960 m mole/min
2. S02 Oxidation
Entering Stream
Scrubber Liquid
Scrubber Bottom
Make Up Water
329 1/min
102 1/min
208 1/min
Leaving Stream Hold Tank Eff.
639 1/min
9.2
1.7
1.5
Rate of S02 Oxidation = S02 (llq) In - S02 (liq) Out - CaS03 1/2 HgO Formation Rate
= 3,026 + 173 - 958 - 1,960 = 281.00 m mole/min
3. CaS04 2H20 Formation
Entering Streams Scrubber Liquid 329 1/min
Scrubber Bottom 102 1/min
Make Up Water 208 1/min
Leaving Stream Hold Tank Eff. 639 1/min
2.65
8.77
3.27
0.43
0.182
0.23
Rate of CaS04 2H20 Formation = CaS04 2H20 (In)
= 481 - 375 - 163 = 57 m mole/min
4. CaCO, Formation
Entering Streams Scrubber Liquid 329 1/min 2.635 0.229
Scrubber Bottom 102 l/m1n 10.2 0.560
Make Up Water 208 1/min
Leaving Streams Hold Tank Eff 639 1/min 3.27 0.650
Rate of CaC03 Formation = CaC03 (Out) - CaC03 (In)
= 1,358 - 198 - 583 = 577 m mole/min
5. Ca(OH)2 Dissolution
Entering Streams Scrubber Liquid 329 1/min
Scrubber Bottom 102 1/min
Make Up Water 208 1/min
Leaving Streams Hold Tank Eff. 639 l/m1n
19.6
17.6
1.08
11.7
453
742
3,155
3,026
173
958
375
163
481
198
583
1,358
6,448
1,795
225
7,476
Rate of Ca(OH) Dissolution = Ca (liq.) Out - Ca (liq.) In + CaCOg + CaS04 2H20 + CaS03 1/2 HgO
= 7,476 - 6,448 - 1,795 - 225 + 1,960 - 57 + 577 = 1,488 m mole/min
H-8
-------
Experiment 19R
Slurry Concen. Concen. Concen.
Solid In Solid In Liquid In Gas
Stream Flow Rate Cont. (g/1) (m mole/g) (m mole/1) (PPH)
Total
Species
Flow Rate
m mole/mln
Marble Bed (Set
1. CaS03 1/2 H20 Formation
Entering Streams
Leaving Streams
Scrubber Spray
Scrubber Liquid*
Scrubber Bottom
738 l/m1n
662 1/min
76 l/m1n
13.94
14.4
32.10
1.62
1.26
1.47
16,618
12,011
3,586
Rate of Ca S03 1/2 HgO Formation = CaS03 1/2 H20 (Out) - CaS03 1/2 HgO (In)
= (12,011 + 3,586) - 16,618
= 15,597 - 16,618
= -1,021 m mole/ml n
2. S02 Oxidation
Entering Streams Inlet Flue Gas
Scrubber Spray
9,200 g mole/mln
738 1/mln
Leaving Streams Outlet Flue Gas 10,555 g mole/mln
Scrubber Liquid* 662 1/min
76 1/min
15.55
26.8
14.75
1,883
1,095
Scrubber Bottom
Rate of S02 Oxidation = S02 (In) - S02 (Out) - CaS03 1/2 H20 Formation Rate
= 28,800 - 30,421 + 1,021 = -600 m mole/mln
3. CaS04 2 H20 Formation
Rate of CaS04 2H20 Formation = CaS04 2H20 (Out) - CaS04 2H20 (In)
= 6,693 - 7,592
= -899 m mole/mi n
4. CaCO, Formation
Rate of CaC03 Formation = CaC03 (Out) - CaCOj (In)
= 2,313 - 3,298
= -985 m mole/min
5. Ca(OH)2 Dissolution
Entering Stream
Leaving Streams
Spray Mater
Scrubber Liquid*
Scrubber Bottom
738 l/m1n
662 1/min
76 l/m1n
25.7
34.4
27.7
17,324
11,476
11,558
17,742
1,121
Entering Streams
Leaving Streams
(Additive)
Spray Water
Scrubber Liquid*
Scrubber Bottom
2,800 g/min
738 1/min
662 1/min
76 1/min
13.9
14.4
32.1
.55
.59
.61
.36
1,540
6,052
5,815
878
Entering Streams
Leaving Streams
(Additive)
Spray Water
Scrubber Liquid*
Scrubber Bottom
2,800 g/min
738 1/min
662 1/min
76 1/min
13.9
14.4
32.1
.39
.215
.171
.280
1,092
2,206
1,630
683
18,967
22,773
2,105
Rate of Ca(OH)2 Dissolution = Ca(liq) Out - Ca(liq) In + CaC03 + CaS04 2H20 + CaS03 1/2 H20 Form
= 24,878 - 18,967 + -985 - 899 - 1,021
= 3,006 m mole/mln
*Average of Marble bed front and back
ASame as the hold tank effluent
^Subtotal of scrubber bottom and scrubber liquid
H-9
-------
TABLE H-6. RATE CALCULATION USING SOLID MATERIAL BALANCE (Continued)
Total
Slurry Concen. Concen. Concen. Species
Solid In Solid In Liquid In Gas Flow Rate
Stream Flow Rate Cont. (g/1) (m mole/g) (m mole/1) CPfH) m mole/min
Hold Tank (Set #1)
1. CaS03 1/2 H20 Formation
Entering Liquid
Leaving Streams
Scrubber Liquid
Make Up Water
Scrubber Bottom
Hold Tank Eff.
662 l/m1n
133 1/min
76 1/min
871 1/min
12.20
-
28.70
13.9
1.32
-
1.55
1.60
10,661
3,381
19,371
Rate of CaS03 1/2 HgO Formation = CaS03 1/2 H20 (Out) - CaS03 1/2 H20 (In)
= 19,371 - 14,042
= 5,329 m moles/mln
2. S02 Oxidation
Entering Streams
Scrubber Liquid
Scrubber Bottom
Make Up Water
Leaving Streams Hold Tank Eff.
662 1/min
76 1/min
133 1/roin
871 1/min
28.6
7.9
15.7
18,933
600
13,674
Rate of S02 Oxidation = S02 (liq.) In - S02 (liq.) Out - CaS03 1/2 HgO Formation Rate
= 19,533 - 13,674 - 5,329
= 530 m moles/min
3. CaS04 2H20 Formation
Entering Streams
Scrubber Bottom T
Scrubber Liquid T
Make-Up Mater
Leaving Streams Hold Tank Eff.
76 1/min
662 1/min
133 1/min
871 1/min
28.70
12.20
13.90
.36
.62
.66
785
5,008
7,991
Rate of CaS04 2H20 Formation = CaS04 2H20 (Out) CaS04 2H20 (In)
= 7,991 - 5,793
= 2,198 m mole/min
4. CaC03 Formation
Entering Streams
Scrubber Bottom T
Scrubber Liquid T
Make Up Water
76 1/min
662 1/min
133 1/min
28.70
12.20
Leaving Streams Hold Tank Eff. 871 1/min 13.90
Rate of CaCCL Formation = CaCO, (Out) CaCO, (In)
= 2,082 - 1,940
= 142 m mole/min
5. Ca(OH)2 Dissolution
Entering Streams Scrubber Bottom T 76 1/min
Scrubber Liquid T 662 1/min
Make Up Water 133 1/min
Leaving Streams Hold Tank Eff. 871 1/min
.249
.173
.172
543
1,397
2,082
23,8
35.3
1.08
24.5
1.809
23,369
144
21,340
Rate of Ca(OH)2 Dissolution = Ca(liq.) Out - Ca(liq.) In + (CaC03 + CaS04 2H20 + CaSOj 1/2
= 21,340 - 25,322 + (142 + 2,198 + 5,329)
= 21,340 - 25,322 + (7,669)
= 3,687 m moles/min
H-10
-------
TABLE H-6. RATE CALCULATION USING SOLID MATERIAL BALANCE (Continued)
Total
Slurry Concen. Concen. Concen. Species
Solid In Solid In Liquid In Gas Flow Rate
Stream Flow Rate Cont. fg/1) (m mole/g) On mole/1) (PPH) m mole/mln
15,192
12,315
4.235
Marble Bed (Set #2)
1 . CaS03 1/2 H20 Formation
Entering Streams
Leaving Streams
2. S02 Oxidation
Entering Streams
Leaving Streams
Scrubber Spray 738 1/mln 14.60 1.41
Scrubber Liquid* 662 1/mln 15.9 1.17
Scrubber Bottom 76 1/min 41.90 1.33
Rate of CaS03 1/2 Formation = CaS03 1/2 H20 (Out) - CaS03 1/2
= 16,550 - 15,192
= 1,358 m mole/ml n
Inlet Flue Gas 9,120 g mole/ml n
Scrubber Spray 738 1/mln
Outlet Flue Gas 10,487 g mole/mi n
Scrubber Liquid* 662 1/min
Scrubber Bottom 76 1/mln
Rate of S02 Oxidation = S02 (In) - S02 (Out) - CaS03 1/2 H20
= 28,334 - 29,970 - 1,358
= -2,994 m mole/ml n
H20 (In)
15.15
25.90
13.65
Formation Rate
3. CaS04 2H20 Formation
Entering Streams
Leaving Streams
4. CaCO. Formation
Entering Streams
Leaving Streams
Additive 2.800
Spray Water 738 1/mln 14.60
Scrubber Liquid* 662 1/mln 15.90
Scrubber Bottom 76 1/mln 41.90
Rate of CaS04 2H20 Formation = CaS04 2H20 (Out) - CaS04 2H20
= 7,454 - 8,004
= - 550 m mole/mi n
Additive 2,800 g/mln .39
Spray Water 738 1/min 14.60 .18
Scrubber Liquid* 662 1/mln 15.90 .22
Scrubber Bottom 76 1/mln 41.90 .402
Rate of CaC03 Formation = CaC03 (Out) - CaC03 (In)
= 3,596 - 3,031
= 565 m mole/ml n
0.55
.60
.56
.49°
(In)
5. Ca(OH)2 Dissolution
Entering Stream
Leaving Stream
Spray Water 738 1/min
Scrubber Liquid* 662 1/m
Scrubber Bottom 76 1/mln
25.2
34.7
27.6
1,881
1.124
17,154
11,180
11,787
17,146
1,037
1,540
6,464
5,894
1,560
1,092
1,939
2,316
1.280
"Same as scrubber bottom at tank
18,598
22,971
2.098
Rate of Ca(OH)2 Dissolution = Ca(11q.) Out - Ca(11q.) In + CaCOj + CaS04 2HgO + CaSOj 1/2 HgO Form
= 25,069 - 18,598 + (565 - 550 + 1,358)
= 25,069 - 18,598 + (1,373)
• 7,844 m mole/ml n
H-ll
-------
TABLE H-6. RATE CALCULATION USING SOLID MATERIAL BALANCE (Continued)
Slurry Concen. Concen. Concen.
Solid In Solid In Liquid In Gas
Stream Flow Rate Cont. (g/1) (m mole/g) (m mole/1) (PPH)
Hold Tank (Set #2)
1. CaS03 1/2 H20 Formation
Entering Streams
Scrubber Liq. T
Scrubber Bottom
Hake Up Water
662 1/min
76 1/min
133 l/m1n
13.0
33.0
1,20
1.47
Leaving Streams Hold Tank Eff.
871 I/rain
14.90
1,45
Rate of CaS03 1/2 H£0 Formation = CaS03 1/2 HgO (Out) - CaS03 1/2 H20 (In)
= 18.818 - 14,014
= 4,804 m mole/min
2. S02 Oxidation
Entering Streams Scrubber Liquid T 662 1/min
Scrubber Bottom T 76 1/min
Make Up H^O 133 1/min
Leaving Streams Hold Tank Eff. 871 1/min
27.31
4.5
15.Q5
Rate of S02 Oxidation = S02 (liq) In - S02 (liq) Out - CaS03 1/2 H20 Form Rate
= 18,421 - 13,109 - 4,804
= 508 m mole/min
3. CaS04 2H20 Formation
Entering Streams Scrubber Bottom T 76 1/min 33.0 .49
Scrubber L1q. T 662 1/min 13.0 .62
Nake Up Water 133 l/m1n
Leaving Streams Hold Tank Eff ' 871 1/min 14.90 .60
Rate of CaS04 2H£0 Formation - CaS04 2H20 (Out] - CaS04 2H20 (In)
= 7,787 - 6,564
= 1,223 m mole/min
4. CaCO, Formation
Entering Streams Scrubber Bottom 76 1/raln
Scrubber Liquid 662 l/m1n
Make Up Uater 133 1/min
Leaving Streams Hold Tank Eff.
33.0
13.0
871 1/min 14.9
Rate of CaC03 Formation = CaC03 (Out) - CaC03 (In)
= 2,453 - 2,485
= - 32 m mole/rain
.339
.19
.189
5. Ca(OH)2 Dissolution
Entering Streams Scrubber Liq T 662 1/min
Scrubber Bottom T 76 l/m1n
Make Up Uater 133 1/min
Leaving Streams Hold Tank Eff. 871 1/min
35.3
22.2
1.08
25.5
Total
Species
Flow Rate
m mole/min
10,327
3,687
18,818
18,079
342
13,109
1,228
5,336
7,787
850
1,635
2,453
Rate of Ca(OH)2 Dissolution = Ca(liq) Out - Ca(liq) In + (CaC03 + CaS04 2H20 + CaS03
= 22,211 - 25,200 + (-32 * 1,223 +
= 3,006 m mole/min
H-12
23,369
1,687
144
22,211
1/2 H20)
-------
TABLE H-7. RATE CALCULATION USING SOLID MATERIAL BALANCE
Experiment 20R
Total
Slurry Concert. Concen. Concen. Species
Solid In Solid In Liquid In Gas Flow Rate
Stream flow Rate Cont. (a/11 On mole/al (m mole/1} CPPHj m mole/ml n
Marble Bed (Set #1)
1. CaS03 1/2 H20 Formation
Entering Stream Scrubber Spray
Leaving Stream Scrubber Spray
Scrubber Bottom
757 1/mln
681 1/nln
76 1/mln
6.94
9.25
25.3
1.42
1.01
1.20
Rate of CaS03 1/2 H20 Formation = CaS03 1/2 H20 (Out) - CaS03 1/2 H20 (In)
= 8669 - 7460
= 1209 m mole/mln
2. S02 Oxidation
Entering Stream
Leaving Stream
Inlet Flue Gas
Scrubber Spray
Outlet Flue Gas
Scrubber Liquid
Scrubber Bottom
9,400 g mole/rain
757 l/m1n
10.850 g mole/mln
631 1/mln
76 1/mln
Rate of Oxidation of S02 = S02 (In) - S02 (Out) - CaS03 1/2 H20 Formation Rate
= 24,423 - 22,657 - 1,209
• 557 m mole/mln
3. CaS04 2 H20 Formation
Rate of CaS04 2 HgO Formation = CaS04 2 H20 COut) - CaS04 2 H20 (In)
= 3,721 - 4,447
• - 725 m mole/mln
4. CaCOj Formation
Rate of CaC03 Formation = CaCOj COut) - CaC03 (In)
= 1,613 - 2,225
• - 612 m mole/mln
5. Ca(OH) Oissolutlon
Entering Stream Scrubber Spray 757 1/mln
Leaving Stream
Scrubber Liquid
Scrubber Bottom
681 1/mln
76 1/mln
•23.4
32.3
26.1
7,460
6,362
2,307
7.9
15.00
8.1
1,962
1,090
18,443
5,980
11,826
10,215
616
Entering Stream
Leaving Stream
Additive
Scrubber Spray
Scrubber Liquid
Scrubber Bottom
2,600 g/raln
757 l/rn1n
681 1/rnin
76 1/ntin
6.94
9.25
25.3
0.5
0.58
0.49
0.33
1,400
3,047
3,087
635
Entering Stream
Leaving Stream
Additive
Scrubber Spray
Scrubber Liquid
Scrubber Bottom
2,800 g/mln
757 l/m1n
681 l/m1n
76 l/m1n
6.94
9.25
25.3
0.455
0.181
0.180
0.249
1,274
951
1,134
479
17,714
21.996
1,984
Rate of Ca(OH)2 Dissolution = Ca(Hq) Out -'Ca(llq) In + (CaCOj -f CaS04 2 HjO + CaSOj 1/2
= 23,980 - 17,714 + - 612 + - 725 + 1209
= 6,138 m moles/min
H-13
-------
TABLE H-7. RATE CALCULATION USIN6 SOLID MATERIAL BALANCE (.Continued)
Stream Flow Rate
Total
Slurry Concen. Concen. Concen. Species
Solid In Solid In Liquid In Gas Flow Rate
Cent, (g/1) (m mole/g) (m mole/1) (PPM) m mole/mi n
Hold Tank (Set #1)
1.
2.
CaSOj 1/2H20
Entering Stream
Leaving Stream
S02 Oxidation
Entering Stream
Leaving Stream
Scrubber Liquid
Scrubber Bottom
Clarifler Liquid
Makeup Water
Hold Tank Eff.
Rate of CaS03 1/2
Scrubber Liquid
Scrubber Bottom
Clarifler Liquid
Makeup Water
Hold Tank Effluent
681 1/min
76 1/min
151 l/m1n
151 l/m1n
1,059 1/min
Formation = CaS03
= 11,254
= 3,707 m
681 1/min
76 1/min
151 1/rnln
151 1/min
1,059 1/min
Rate of S02 Oxidation = S02 (In) - S02
= 11,464 - 7,890
7.33 1.00
22.7 1.47
0.13 0.93
7.38 1.44
1/2 H20 (Out) - CaS03 1/2 H20 (In)
- 7,547
mole/ml n
15.6
1.01
5.05
7.45
(Out) - CaS03 1/2 H20 Form Rate
- 3,707
4,992
2,536
19
11,254
10,624
77
763
7,890
= - 133 m mole/ml n
3.
4.
CaS04 2 H20 Formation
Entering Stream
Leaving Stream
CaC03 Formation
Entering Streams
Leaving Stream
Scrubber Liquid
Scrubber Bottom
Clarifler Liquid
Makeup Water
Hold Tank Effluent
Rate of CaS04 2 H-
Scrubber Liquid
Scrubber Bottom
Clarifler Liquid
Makeup Mater
Hold Tank Effluent
681 1/min
76 1/min
157 I/rain
151 1/min
1,059 1/nvin
,0 Formation = CaS04
= 4,767
= 1,133
681 1/min
76 I/rain
151 l/m1n
151 1/min
1,059 1/min
Rate of CaCOj Formation = CaC03 (Out)
7.33 0.61
22.7 .33
0.13
7.38 0.61
2 H20 (Out) - CaSO, 2 HgO (In)
- 3,634
m mole/mi n
7.33 0.195
22.7 0.355
0.13
7.38 0.201
- CaC03 (In)
3,045
569
20
4,767
973
612
20
1.571
= 1,571 - 1,605
= -34 m mole/mi n
Ca(OH)2 Dissolution
Entering Stream
Scrubber Liquid
Scrubber Bottom
Clarlfier Liquid
Makeup Mater
681 1/min
76 l/m1n
151 1/min
151 1/min
31.6
21.6
22.1
1.08
21,520
1,642
3,337
163
Leaving Stream Hold Tank Effluent 1,059 1/min
23.6
24,992
Rate of Ca(OH)2 Dissolution = Ca(liq) Out - Ca(liq) In + (CaS04 2 HgO + CaC03 + CaS03 1/2 H20)
= 24,992 - 26,662 + 1,133 - 34 + 3,707
= 3,136 m nwle/min
H-14
-------
Marble Bed (Set #2)
1. CaS03 1/2 H20 Formation
Entering Stream Scrubber Spray
Leaving Stream Scrubber Liquid
Scrubber Bottom
TABLE H-7, RATE CALCULATION USING SOLID MATERIAL BALANCE (Continued)
Total
Slurry Concen. Concen. Concen. Species
Solid In Solid In Liquid In Gas Flow Rate
Stream Flow Rate Cont. (g/1) fm role/g) (m mole/1) (PPH) m mole/mln
757 l/m1n
681 1/min
76 l/m1n
6.99
8.00
22.6
1.28
0.95
1.16
Rate of CaS03 1/2 H20 Formation » CaS03 1/2 HgO (Out)- CaSOj 1/2 HgO (In)
= 7,168 - 6,773
• 395 m mole/mtn
2.
S02 Oxidation
Entering Stream
Leaving Stream
Inlet Flue Gas
Scrubber Spray
Outlet Flue Gas
Scrubber Liquid
Scrubber Bottom
9,400 g mole/mln
757 1/mln
10,850 g mole/mln
681 1/mln
76 1/mln
10.2
16.85
12.00
1,939
1,090
Rate of S02 Oxidation = S02 Hq (In) - S02 llq (Out) - CaS03 1/2 H20 Formation
= 25,948 - 24,214 - 395
* 1,339 m mole/mtn
3. CaS04 2 H20 Formation
Entering Stream
Leaving Stream
Additive
Scrubbing
Scrubber Liquid
Scrubber Bottom
2,800 g/m1n
757 l/m1n
681 1/mln
76 l/m1n
6.99
8.00
22.6
0.50
0.51
0.28
0.32°
Rate of CaS04 2 H20 Formation = CaS04 2 H20 (Out) - CaS04 2 H20 (In)
= 2,075 - 4,099
» - 2,024 m mole/mtn
4. CaC03 Formation
Entering Stream
Leaving Stream
Additive
Scrubber Spray
Scrubber Liquid
Scrubber Bottom
2,800 g/mtn
757 1/mtn
681 1/mln
76 1/mtn
6.99
8.00
22.6
0.455
0.192
0.205
0.299
Rate of CaC03 Formation = CaC03 (Out) - CaC03 (In)
= 1,630 - 2,290
= - 660 m moles/mtn
5. Ca(OH)2 Dissolution
Entering Stream
Leaving Stream
Scrubber Spray 757
Scrubber Liquid 681
Scrubber Bottom 76
26.6
33.4
30.0
6,773
5,176
1,992
18,227
7,721
11.827
11,475
912
1,400
2,699
1,525
550
1,274
1,016
1,116
514
20,136
22,745
2,280
Rate of Ca(OH)2 Dissolution = Ca(ltq) Out - Ca(ltq) In + (CaC03 + CaS03 /1/2 HgO + C«S04 2 H20)
= 25,025 - 20,136 + - 660 + 395 + - 2,024
• 2,600 m moles/mtn
"Scrubber bottom of tank was used
H-15
-------
TABLE H-7. RATE CALCULATION USING SOLID MATERIAL BALANCE (Continued)
Slurry Concert. Concert. Concen
Solid In Solid In Liquid In Gas
Stream Flow Rate Cont. (g/1) (m mole/g) (m mole/1) (PPM)
Total
Species
Flow Rate
m mole/ml n
Hold Tank (Set #2}
1.
CaS03 1/2 H20 Formation
Entering Streams
Leaving System
Scrubber Liquid
Scrubber Bottom
Clarlfier Liquid
Makeup Water
Hold Tank Effluent 1
681 l/m1n
76 1/min
151 l/m1n
151 1/nrin
,059 l/m1n
Rate of CaS03 1/2 H20 Formation = CaS03
2.
3.
4.
S02 Oxidation
Entering Streams
Leaving Stream
Scrubber Liquid
Scrubber Bottom
Clarlfier Liquid
Makeup Mater
Hold Tank Effluent 1
Rate of S0~ Oxidation
= 9,155
= 2,681
681 1/min
76 1/min
151 1/min
151 1/min
,059 1/min
= S02 (liq) In - SO
= 13,796 - 10,855 -
= 260 m mole/mi n
7.07 0.94
20.5 1.25
6.65 1.30
(Out) - CaS03 In
- 6,474
m mole/mi n
18.3
2.85
7.4
10.25
2 (I1q) Out - CaS03 1/2 H20 Formation
2,681
4,526
1,948
9,155
12.462
217
1,117
10,855
CaS04 2 H20 Formation
Entering Streams
Leaving Stream
CaCOj Fonnation
Entering Stream
Leaving Stream
Scrubber Liquid
Scrubber Bottom
Hold Tank Effluent 1
Rate of CaS04 .2 H20
Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
Makeup Water
Hold Tank Effluent 1
681 1/min
76 1/min
,059 1/min
Formation = CaS04 .2
= 4,436 -
= 1,392 m
681 1/min
76 1/min
151 1/min
151 1/min
,059 1/min
7.07 .49
20.5 .44
6.65 .63
H20 (Out) - CaS04 .2 HjO (In)
3,044
mole/mi n
7.07 .173
20.5 .311
6.65 0.217
2,359
685
4,436
833
485
1,528
Rate of CaCO, Formation = CaCO, (Out) - CaCO, (In)
5.
= 1,528 - 1,318
= 210 m moles/min
Ca(OH)2 Dissolution
Entering Stream
Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
Makeup Water
681 1/min
76 1/min
151 1/min
151 1/min
33.9
24.7
22.9
1.08
23,086
1,877
3,458
163
Leaving Stream Hold Tank Effluent 1,059 1/min
25.9
27,428
Rate of Ca(OH)2 Dissolution = Ca(Hq) Out - Ca(liq) In + CaC03 + CaS04 .2 H20 + CaS03 .1/2
= 27,428 - 28,584 + 210 + 1,392 + 2,681
= 3,127 m mole/rrrln
H-16
-------
TABLE H-8. RATE CALCULATIONS USING LIQUID MATERIAL BALANCE
Experiment 17R
Marble Bed (Set SI)
1. CaS03 . 1/2 H20
Entering Streams Inlet Flue Gas
Scrubber Spray
Stream Flow Rate
Species Cone. Species Cone.
in Liq-. (nrmolt/1) In Gas (ppm)
Species Flow Rate
(m mole/nrin)
10.950 g mole/min
431 1/min
Leaving Streams
Outlet Flue Gas 11,605 g mole/mln
Scrubber Liquid* 329 1/mln
Scrubber Bottoms 102 1/mln
1.0
8.95
1.0
1,456
764
15,943
431
8,866
2,944
102
Rate of CaS03 1/2 HgO = S02 IN - S02 OUT » Oxidation Rate
= 15,943 + 431 - 8,866 - 2,944 - .439 (15,943 - 8.866) - 102
= 4,462 - 3,107
= 1,355 m mole/rain
2. CaS04 2
Entering Streams Scrubber Spray
Leaving Streams
Scrubber Liquid*
Scrubber Bottom
431 l/ra1n
329 l/m1n
102 1/min
10.27
14.46
11.61
4,426
4.757
1,164
Rate of CaS04 2 H20 = S04 (Liq.) IN - S0fl (L1q.) OUT + Oxidation Rate
= 4,426 - 5,941 + 3,107
= 1,592 m mole/ml n
3. Ca(OH)2 Dissolution
Entering Streams Scrubber Spray 431 l/m1n
Leaving Streams Scrubber Liquid* 329 1/mln
Scrubber Bottom 102 1/mln
13.7
19.0
16.8
5,905
6,251
1,714
Rate of Ca{OH)2 Dissolution = Ca OUT - Ca IN 4 Ca Free. Rate
= 7,965 - 5.905 + 2,947
= 5,097 in mole/mln
*Ave. of Marble Bed Front and Back
H-17
-------
TABLE H-8. RATE CALCULATIONS USING LIQUID MATERIAL BALANCE (Continued)
Stream Flow Rate
Species Cone.
in Liq. (m mole/1)
Species Cone.
in Gas (ppm)
Species Flow Rate
(m mole/mln)
Hold Tank
1. CaSO,
1/2 H20
Entering Streams
Scrubber Liquid
Scrubber Bottom
Make Up H0
Leaving Streams Hold Tank Eff.
Rate of CaSO,
2. CaS04 2H20
Entering Streams
Leaving Streams
Scrubber Liquid
Scrubber Bottom
Make Up H20
Hold Tank Eff.
329 1/min
102 1/min
208 I/rain
631 1/min
1/2 H20 = S02 IN - S02 OUT
= 3,030 - 947
= 2,083 m mole/min
329 1/min
102 1/min
208 1/min
631 1/min
Rate of CaS04 2H20 = S04 (IN) - S04 (OUT)
= 5,937 - 5,931
= 6 m mole/min
3. CaC03
Entering Streams Scrubber Liquid.
Scrubber Bottom
Make Up H20
Leaving Streams Hold Tank Eff.
Rate of CaC03 = C03 IN - C03 OUT
= 390 - 164
= 226 m mole/min
329 1/min
102 1/min
208 1/min
631 1/min
4. Ca(OH)2 Dissolution
Entering Streams
Leaving Streams
Scrubber Liquid
Scrubber Bottom
Make Up H20
Hold Tank Eff.
329 1/min
102 1/min
208 1/min
8.9
1.0
1.5
14.85
10.3
9.4
1.1
.27
.26
19.9
17.4
1.08
11.7
631 1/min
Rate of Ca(OH)2 Dissolution = Ca OUT - Ca IN + Ca Prec. Rate
= 7,383 - 8,547 + (226 + 6 + 2,083)
= 1,151 m mole/min
+Values from Marble Bed Front and Back
++Values from Scrubber Bottom at Scrubber
2.928
102
947
4,886
1,051
5,931
362
28
164
6,547
1,775
225
7,383
H-18
-------
TABLE H-8. RATE CALCULATIONS USING LIQUID MATERIAL BALANCE (Continued)
Species Cone.
Stream Flow Rate 1n L1g. (m mole/1)
Marble Bed (Set 42)
1. CaS03 1/2 H20
Entering Streams
Leaving Streams
Inlet Flue Gas
Scrubber Spray
Outlet Flue Gas
Scrubber Liquid
Scrubber Bottom
10,950 g mole/rain
431 1/mln
11,605 g mole/mln
329 l/m1n
102 l/m1n
1.3
7.2
1.7
Species Cone. Species Flow Rate
1n Gas (ppm) (m mole/mln)
1.456 15,943
560
764 8,866
2,369
173
Rate of CaS03 1/2 H20 = S02 IN - S02 OUT - OXID. Rate
= 16,503 - 11,408 - .417 (7,077)
= 16,503 - 11,408 - 2,951
= 2,144 m mole/mln
2. CaS04 2H20
Entering Streams
Leaving Streams
Scrubber Spray
Scrubber Liquid
Scrubber Bottom
Rate of CaSO.
431 1/mln
329 l/m1n
102 l/m1n
9.38
15.37
11.3
2H20 = S04 IN - S04 OUT + OXID. Rate
= 4,043 - 6,210 + 2,951
= 784 m mole/mln
3. Ca(OH)2 Dissolution
Entering Streams Scrubber Spray
Leaving Streams
Scrubber Liquid
Scrubber Bottom
431 l/m1n
329 l/m1n
102 l/m1n
12.8
19.1
16.3
Rate of Ca(OH)2 Dissolution = Ca OUT - Ca IN + Ca Prec. Rate
= 7,947 - 5,517 + (784 + 2,144)
= 5,358 m mole/mln
4,043
5.057
1,153
5,517
6.284
1.663
H-19
-------
TABLE H-8. RATE CALCULATIONS USING LIQUID MATERIAL BALANCE (Continued)
Stream Flow Rate
Species Cone.
in Lid, (m mole/1)
Hold Tank
1.
2.
CaS03 1/2 H20
Entering Streams
Leaving Streams
CaS04 2 H20
Entering Streams
Leaving Streams
Scrubber Liquid
Scrubber Bottom
Make Up H20
Hold Tank Eff.
Rate of CaS03
Scrubber Liquid
Scrubber Bottom
Make Up HgO
Hold Tank Eff.
Rate of CaSO.
329 1/min
102 1/min
208 1/min
631 1/min
1/2 H20 = S02 IN - S02 OUT
= 3,139 - 946
= 2,193 m mole/mi n
329 1/min
102 1/min
208 1/min
631 1/min
2 H20 = S04 IN - S04 OUT
9.2
1.1
1.5
12.75
11.64
9.4
Species Cone.
in Gas (ppiti)
Species Flow Rate
(m mole/mln)
3. CaCO,
Entering Streams
Scrubber Liquid
Scrubber Bottom
Make Up HO
Leaving Streams Hold Tank Eff.
= 5,382 - 5,931
= - 549 m mole/min
329 1/min
102 1/min
208 1/min
631 1/min
.96
.06
.26
Rate of CaC03 = C02 IN - C02 OUT
= 322 - 164
= 158 m mole/rain
4. Ca(OH)2 Dissolution
Entering Streams Scrubber Liquid 329 1/min
Scrubber Bottom 102 1/min
Make Up H20 208 1/min
Leaving Streams Hold Tank Eff. 631 1/min
19.6
17.6
1.08
11.7
Rate of Ca(OH)2 Dissolution = Ca OUT Ca IN + Ca Free. Rates
= 7,383 - 8,468 + (158 - 549 + 2,193)
= 717 n mole/min
3,027
112
946
4,195
1,187
5,931
316
6
164
6,448
1,795
225
7,383
H-20
-------
TABLE H-9. RATE CALCULATIONS USING LIQUID BALANCE
Experiment 18R
Stream Flew Rate
Spectes Cone.
tn Ltt. fa mole/1)
Species Cone.
tn Gai (p0m)
Marble Bed (Set #1)
1. CaS03 1/2 H20
Entering Streams
Leaving Streams
2. CaSOj,
Entering Streams
Leaving Streams
Inlet Flue Gas
Scrubber Spray
Scrubber Liquid*
Scrubber Bottom
Outlet Flue Gas
10,820 g mole/mln
796 1/mln
682 l/m1n
114 l/m1n
11,630 g mole/mln
.35
2.95
.45
1,471
447
Rate of CaS03 1/2 H20 = 502 IN - S02 OUT - Oxidation Rate
= 16,195 - 7,262 - .279 (15,916 - 5,199)
= 8,933 - 2,990 -
= 5,943 m mole/mln
Scrubber Spray
Scrubber Liquid*
Scrubber Bottom
796 1/mln
682 I/rain
114 1/mln
18.15
24.34
19.09
Rate of CaSO,
2H20
S04 IN - S04 OUT + Oxidation Rate
= 14,447 - 18,776 + 2,990
= -1,339 m mole/min
3. Ca(OH)2 Dissolution
Entering Streams
Leaving Streams
Scrubber Spray
Scrubber Liquid*
796 1/mln
682 1/m1n
114 1/mln
22.52
24.45
24.42
Scrubber Bottom
Rate of Ca(OH)2 Dissolution = Ca OUT - Ca IN t Ca Prec. Rates
= 19,459 - 17,926 + (-1,339 + 5,943)
= 6,137 m mole/mln
Species Flow Rate
Cm mole/mln)
15,916
279
2,012
51
5,199
14,447
16,600
2,176
17,926
16,675
2,784
*Ave. of Marble Bed Front and Back
H-21
-------
TABLE H-9. RATE CALCULATIONS USING LIQUID BALANCE (Continued)
Stream Flow Rate
Species Cone.
In L1q. (m mole/I)
Species Cone.
^n 6as
Hold Tank
1. CaSO,
Entering Streams
Leaving Streams
Scrubber Liquid
Scrubber Bottom
Clarified Liquid
Hold Tank Eff.
Rate of CaSO,
682 1/mtn
114 l/m1n
76 I/rain
872 I/rain
2.57
.89
.56
.53
1/2
2. CaSO,
2H20
Leaving Streams Hold Tank Eff.
Rate of CaSO.
3. CaC03 (No C02 Data are Available)
Form = S02 IN - S02 OUT
= 1,897 - 462
= 1 ,435 m mcle/min
Entering Streams
Scrubber Liquid
Scrubber Bottom
Clarified Liquid
682 1/min
114 1/min
76 1/min
872 1/min
= S04 IN - S04 OUT
= 16,840 - 15,129
= 1,711 m mole/min
19.98
17.20
16.49
17.35
Species Flow Rate
fan
1,753
101
43
462
13,626
1,961
1,253
15,129
1. Ca(OH)2 Dissolution
Entering Streams Scrubber Liquid 682 1/min
Scrubber Bottom 114 1/min
Clarified Liquid 76 1/min
21. Z5
32.72
20.6
Leaving Streams Hold Tank Eff. 872 1/min 22.97
Rate of Ca(OH)2 Dissolution = Ca OUT - Ca IN + Ca Prec. Rates
= 20,030 - 19,789 + (3,146)
= 3,387 IT mole/min
14,493
3,730
1,566
20,030
H-22
-------
TABLE H-9. RATE CALCULATIONS USING LIQUID BALANCE (Continued)
Marble Bed (Set 2)
1. CaS03 1/2 H20
Entering Streams Inlet Flue Gas
Scrubber Spray
Stream Flow Rate
Species Cone.
1n Ltg. (
Species Cone.
tn Gas (ppm)
Species Flow Rate
to nole/roln)
Leaving Streams
Outlet Flue Gas
Scrubber Liquid
Scrubber Bottom
10,820 g mole/mln
796 l/m1n
11,630 g mole/mln
682 1/min
114 l/m1n
.38
4.175
.42
1,471
447
Rate of CaS03 1/2 H20 = S02 IN - S02 OUT - Oxidation Rate
= 16,218 - 8,094 - .289 (10,717)
= 16,218 - 8,094 - 3,097
= 5,027 m mole/mln
2. CaSO,
2H20
Entering Streams
Leaving Streams
Scrubber Spray
Scrubber Liquid*
Scrubber Bottom
796 1/min
682 1/nrin
114 l/m1n
19.67
25.15
19.02
Rate of CaS04 2H20 - S04 IN - S04 OUT + Oxidation Rate
= 15,657 - 19,320 + 3,097
= -566 m mole/mln
3. Ca(OH)2 Dissolution
Entering Streams
Leaving Streams
Scrubber Spray
Scrubber Liquid*
Scrubber Bottom
796 1/mln
682 1/mln
114 1/mln
23.25
26.495
24.95
Rate of Ca(OH)2 Dissolution = Ca OUT - Ca IN + Ca Free. Rate
= 20,914 - 18,507 + (4461)
= 6,868 m mole/mln
15,916
302
5,199
2,847
48
15,657
17,152
2,168
18,507
18,070
2,844
*Ave. of Marble Bed Front and Back
H-23
-------
TABLE H-9. RATE CALCULATIONS USING LIQUID BALANCE (Continued)
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate 1n L1q. (m mole/1) In Gas fppm) (m mole/mini
Hold Tank
1. CaS03 1/2 H20
Entering Streams
Scrubber Liquid
Scrubber Bottom
Clarified Liquid
Leaving Streams Hold Tank Iff.
682 1/mln
114 1/mln
76 1/mln
872 l/m1n
3.25
.72
.40
.55
Rate of CaS03 1/2 H20 Form = S02 IN - S02 OUT
= 2,329 - 480
= 1,849 m mole/mln
2. CaSO. 2 H
2°
.Entering Streams
Scrubber Liquid
Scrubber Bottom
Clarified Liquid
682 l/m1n
114 l/m1n
76 1/min
20.46
18.51
16.96
Leaving Streams Hold Tank Eff. 872 l/m1n 18.68
Rate of CaS04 2H20 Form = S04 IN - S04 OUT
= 17,353 - 16,289
= 1,064 m mole/min
3. CaC03 (No C02 Data Was Available)
4. Ca(OH)2 Dissolution
Entering Streams
Scrubber Liquid
Scrubber Bottom
Clarified Liquid
682 1/mln
114 1/mln
76 1/mln
22.17
34.30
22.35
Leaving Streams Hold Tank Eff.
872 1/mln 24.20
Rate of Ca(OH)2 Dissolution = Ca OUT - Ca IN + Ca Free. Rates
= 21,102 - 20,729 t 2,913
= 3,286 m mole/min
2,217
82
30
480
13,954
2,110
1,289
16,289
15,120
3,910
1,699
21,102
H-24
-------
TABLE H-10. RATE CALCULATIONS USING LIQUID BALANCE
Experiment 19R
Marble Bed (Set #1)
1. CaS03 1/2 H20
Entering Streams Inlet Flue Gas
Scrubber Spray
Stream Flow Rate
Species Cone.
in Llq. fin mole/1)
Species Cone.
In Gas (pom)
Leaving Streams
Outlet Flue Gas
Scrubber Liquid*
Scrubber Bottom
9,200 g mole/mln
738 l/m1n
10,555 g mole/m1n
662 l/m1n
76 1/mln
15.55
26.85
14.75
1,884
1,060
Rate of CaS03- 1/2 HgO = S02 IN - S02 OUT - OXIO. Rate
= 28,809 - 30,084 - .533 (17,333 - 11,188)
= - 4,550 m mole/min
2. CaSO.
2 H20
Entering Streams Scrubber Spray
Leaving Streams
Scrubber Liquid*
Scrubber Bottom
738 1/min
662 l/m1n
76 1/min
20.35
26.45
24.45
Rate of CaS04 = S04 IN - S04 OUT + OX ID. Rate
= 15,018 - 19,368 + 3,275
= - 1,075 m mole/mln
3. Ca(OH)2 Dissolution
Entering Streams Scrubber Spray
Leaving Streams
Scrubber Liquid*
Scrubber Bottom
738 1/min
662 l/m1n
76 1/min
25.7
34.4
27.7
Rate of Ca(OH)2 Dissolution = CA OUT - Ca IN + Ca Prec. Rates
= 24,878 - 18,967 + - 4,550 - 1,075
= 286 m mole/mln
Species Flow Rate
On mole/min)
17,333
11,476
11,188
17,775
1,121
15,018
17,510
1,858
18,967
22,773
2,105
*Ave. of Marble Bed Front and Back
H-25
-------
TABLE H-10. RATE CALCULATIONS USING LIQUID BALANCE (Continued)
Hold Tank
1. CaS03 1/2 H20
Entering Streams Scrubber Liquid
Scrubber Bottom
Make Up H20
Leaving Streams Hold Tank Eff.
Stream Flow Rate
Species Cone.
1n Llg. (m mole/1)
662 l/m1n
76 1/mln
133 1/mln
871 1/mln
Rate of CaS03 1/2 H20 = S02 IN - S02 OUT
= 19,533 - 13,675
= 5,858 m mole/rain
2. CaSO,
2 H20
Entering Streams Scrubber Liquid
Scrubber Bottom
Make Up H20
Leaving Streams Hold Tank Eff.
662 1/mln
76 1/mln
133 1/mln
871 1/mln
28.6
7.9
15.7
25.1
22.5
20.6
Species Cone.
in Gas (ppm)
Species Flow Rate
(m mole/mln)
18,933
600
13,675
16,616
1,710
17,943
3. CaCO,
Ua ill - Ju*
4 4
18,326 - 17,943
383 m mole/mln
Entering Streams Scrubber Liquid 662 1/mln
Scrubber Bottom 76 1/mln
Make Up H20 133 1/mln
Leaving Streams Hold Tank Eff. 871 1/mln
Rate of CaC03 = C02 IN - C02 OUT
= 1278 - 958
= 320 m mole/mln
4. Ca(OH)2 Dissolution
Entering Streams Scrubber Liquid 662 l/m1n
Scrubber Bottom 76 1/mln
Make Up H20 133 l/m1n
Leaving Streams Hold Tank Eff.
1.845
.75
1.10
35.3
23.8
1.08
24.5
871 l/m1n
Rate of Ca(OH)2 Dissolution = Ca OUT - Ca IN + Ca Prec, Rate
= 21,340 - 25,322 + (320 + 383 + 5,858)
- 2,579 m mole/m1n
1,221
57
958
23,369
1,809
144
21,340
H-26
-------
Marble Bed (Set 2)
1. CaS03 1/2 H20
Entering Streams Inlet Flue Gas
Scrubber Spray
TABLE H-10. RATE CALCULATIONS USING LIQUID BALANCE (Continued)
Species Cone. Species Cone.
Stream Flow Rate tn L1q. On mole/1) tn Gas (ppm)
9.120 g mole/mln
738 l/m1n
15.15
Leaving Streams
Outlet Flue Gas 10,487 g mole/mln
Scrubber Liquid* 662 1/mln 25.9
Scrubber Bottom 76 1/mln 13.65
Rate of CaS03 = S02 IN - S02 OUT - OXID. Rate
= 28.336 - 29,299 - .536 (17,155 - 11.116)
= 28.336 - 29,299 - .536 (6,039)"
= 28.336 - 29,299 - 3,237
= -4,200 m mole/mln
2. CaSO.
2 H20
Entering Streams Scrubber Spray
Leaving Streams
Scrubber Liquid*
Scrubber Bottom
738 1/mln
662 l/m1n
76 1/mln
21.45
26.5
23.65
Rate of CaS04 2 H20 = S04 IN - S04 OUT + OXID. Rate
= 15,830 - 19,340 + 3,237
» -273 m mole/min
3. Ca(OH)2 Dissolution
Entering Streams Scrubber Spray
Leaving Streams
Scrubber Liquid*
Scrubber Bottom
738 1/mln
662 1/mln
76 1/mln
25.2
34.65
27.6
1,881
1,060
Rate of Ca(OH)2 Dissolution = Ca OUT - Ca IN + Ca Prec. Rate
= 25,036 - 18,598 + (- 273 - 4,200)
= 25,036 - 18,598 + -4,473
= 1,965 m mole/m1n
Species Flow Rate
On mole/mtn)
17,155
11,181
11,116
17.146
1,037
15,830
17,543
1,797
18,598
22,938
2,098
H-27
-------
TABLE H-10. RATE CALCULATIONS USING LIQUID BALANCE (Continued)
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate In Llq. (m mole/1) 1n Gas (ppm) (m mole/mln)
Hold Tank
1. CaS03 1/2 H20
Entering Streams Scrubber Liquid 662 1/min 27.31 18,079
Scrubber Bottom 76-1/mln 4.5 342
Make Up H20 133 1/mln
Leaving Streams Hold Tank Eff. 871 1/mln 15.05 13,109
Rate of CaS03 1/2 H20 = S02 (IN) - S02 (OUT)
= 18,421 - 13,109
= 5,312 m mole/mln
2. CaS04 2 H20
Entering Streams Scrubber Liquid 662 1/mln 25.2 16,682
Scrubber Bottom 76 1/mln 21.9 1,664
Make Up HgO 133 1/mln
Leaving Streams Hold Tank Eff. 871 1/mln 20.85 18,160
Rate of CaS04 2 H20 = S04 (IN) - S04 (OUT)
= 18,346 - 18,160
• 186 m mole/mln
3. CaC03
Entering Streams Scrubber Liquid 662 l/m1n 1.36 900
Scrubber Bottom 133 1/mln 0.17 13
Make Up H^O
Leaving Streams Hold Tank Eff. 871 l/m1n 0.97 845
Rate of CaC03 = C02 (IN) - C02 (OUT)
= 913 - 845
= 68 m mole/mln
4. Ca(OH)2 Dissolution
Entering Streams Scrubber Liquid 662 l/m1n 35.3 23,369
Scrubber Bottom 76 1/mln 22.2 1,687
Make Up H20 133 1/mln 1.08 144
Leaving Streams Hold Tank Eff. 871 l/m1n 25.5 22,211
Rate of Ca(OH)2 Dissolution = Ca OUT - Ca IN + Ca Prec. Rates
= 22,211 - 25,200 + (5,566)
= 2,577 m mole/mln
H-28
-------
TABLE H-Tl. felE CALCULATIONS USING LIQUID BALANCE
Expertment 20R
Species Cone. Species Cone. Species Flow Rate
Stream Flow Bate In Llq. On mole/1) In Gas (ppm) fo mole/rain)
Marble Bed (Set #1)
1. CaS03 1/2 H20
Entering Streams Inlet Flue Gas 9,400 g mole/mln 1,962 18,443
Scrubber Spray 757"l/m1n 7.9 5,980
Leaving Streams Outlet Flue Gas 10,850 g mole/mln 1,090 11,827
Scrubber Liquid* 681 1/mln 15.0 10,215
Scrubber Bottom 76 1/mln 8.1 616
Rate of CaS03 1/2 H20 « S02 (IN) - S02 (OUT) - Oxidation Rate
= 24,423 - 22,658 - .552 (18,443 - 11,827)
a 24,423 - 22,658 - .552 (6,616)
= 24,423 - 22,658 - 3,652
= -1,887 m mole/mln
2. CaS04 2H20
Entering Streams Scrubber Spray 757 1/m1n 24.7 18,698
Leaving Streams Scrubber Liquid* 681 l/m1n 30.7 2.0,907
Scrubber Bottom 76 l/m1n 25.3 1,923
Rate of CaS04 - S04 (IN) - S04 (OUT) + Oxidation Rate
= 18,698 - 22,830 + 3,652
= - 480 m mole/m1n
3. Ca(OH)2 Dissolution
Entering Streams Scrubber Spray 757 l/m1n 23.4 17,714
Leaving Streams Scrubber Liquid* 681 1/mln 32.25 21,962
Scrubber Bottom 76 1/m1n 26.1 1,984
Rate of Ca(OH)2 Dissolution - Ca (OUT) - Ca (IN) t Ca Prec. Rate
= 23,946 - 17,714 + (-542 - 1,769)
= 23,946 - 17.714 + (-2,367)
- 3,865 m mole/mln
H-29
-------
TABLE H-ll. RATE CALCULATIONS USING LIQUID BALANCE (Continued)
Species Cone. Species Cone. Species Flow Rate
Stream Plow Rate In Llq. fm mole/1) 1n Gas (ppm) (m mole/min)
Hold Tank
1.
2.
3.
4.
CaS03 1/2 H20
Entering Liquid
Leaving Streams
CaS04 2 H20
Entering Liquid
Leaving Streams
CaCO,
Entering Liquid
Leaving Streams
Scrubber Liquid
Scrubber Bottom
Make Up H-0
Clarified ''Liquid
Hold Tank Eff.
Rate of CaS03
Scrubber Liquid
Scrubber Bottom
Make-Up H,0
Clarlfled^Llq.
Hold Tank Eff.
Rate of CaSO.
Scrubber Liquid
Scrubber Bottom
Make-Up H-0
ClarlfledUlquld
Hold Tank Eff.
Rate of CaCO. =
&
s
681 l/m1n
76 l/m1n
151 l/m1n
151 l/m1n
1,059 l/m1n
1/2 H20 = S02 IN - S02 (OUT)
= 10,701 - 7,890
= 2,811 m mole/m1n
681 l/m1n
76 1/mln
151 1/mln
151 l/m1n
1,059 1/mln
2H£0 = S04 IN - S04 OUT
= 25,460 - 25,893
= -433 m mole/ml n
681 l/m1n
76 l/m1n
151 l/m1n
151 l/m1n
1,059 l/m1n
C02 IN - C02 OUT
1,165 - 1,006
159 m mole/m1n
15.6
1.01
5.05
7.45
30.1
18.9
23.35
24.45
1.59 A
.06
.5?
.95
10,624
77
763
7,890
20,498
1,436
3,526
25,893
1,083
5
77
1,006
Ca(OH)2 Dissolution
Entering Streams
Scrubber Liquid
Scrubber Bottom
Make-Up H,0
Clarlfled'Llquld
681 1/mln
76 l/m1n
151 l/m1n
151 1/mln
31.6
21.6
1.08
22.1
21 ,520
1,642
163
3,337
Leaving Streams Hold Tank Eff.
1.059 l/m1n
23.6
Rate of Ca(OH)2 Dissolution - Ca OUT - Ca IN + Ca Free. Rate
= 24,992 - 26,662 + (2,811 - 433 + 159)
= 24,992 - 26,662 + 2,537
= 867 m mole/ml n
24,992
iFrom marble bed front and back
H-30
-------
TABLE H-ll. RATE CALCULATIONS USING LIQUID BALANCE (Continued}
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate in L1q. (m mole/1) 1n Gas (ppm) fa mole/mln)
Marble Bed (Set 2)
1. CaS03 1/2 H20
Entering Streams Inlet Flue Gas 9,400 g mole/mln 1,939 18,227
Scrubber Spray 751 l/m1n 10.2 7,721
Leaving Streams Outlet Flue Gas 10,850 g mole/mln 1,090 11,827
Scrubber Liquid* 681 l/m1n 16.85 11,475
Scrubber Bottom 76 l/m1n 12.0 912
Rate CaS03 1/2 HjO Form - S02 IN - S02 OUT - OXID. Rate
= 25,948 - 24,214 - .543 (18,227 - 11,827)
= 1,734 - 3,475
• -1,711 m mole/mln
2. CaS04 2H20
Entering Stream Scrubber Spray 757 l/m1n 25.5 19,304
Leaving Streams Scrubber Liquid* 681 1/mln 29.7 20,226
Scrubber Bottom 76 1/min 26.6 2,022
Rate of CaS04 2H20 = S04 IN - SO^ OUT + OXIO. Rate
= 19,304 - 22,248 + 3,488
= 544 m mole/rain
3. Ca(OH)2 Dissolution
20,136
22,779
2,280
Rate of Ca(OH)2 Dissolution = Ca OUT - Ca IN t Ca Pre. Rate
= 25,059 - 20,136 t (544 - 1,741)
= 25,059 - 20,136 + (-1,197)
= 3,726 m mole/mln
Entering Streams
Leaving Streams
Scrubber Spray
Scrubber Liquid*
Scrubber Bottom
757 1/mln
681 1/min
76 I/rain
26.6
33.45
30.0
H-31
-------
TABLE H-ll. RATE CALCULATIONS USING LIQUID BALANCE Continued)
Stream Flow Rate
Species Cone.
In L1q. (m mole/1)
Species Cone.
In Gas (ppm)
Hold Tank
1. CaS0 1/2
Entering Streams Scrubber Liquid
Scrubber Bottom
Make Up H.O
Clarified*L1qu1d
681 l/ra1n
76 l/m1n
151 1/mln
151 1/mln
Leaving Streams Hold Tank Eff. 1,059 1/mln
Rate of CaS03 1/2 H20 = S02 IN - S02 OUT
= 13,796 - 10,855
= 2,941 m mole/mln
2. CaSO.
H20
Entering Streams Scrubber Liquid
Scrubber Bottom
Make Up H,0
Clarlfled'Llquld
681 l/m1n
76 1/mln
151 l/m1n
151 l/m1n
Leaving Streams Hold Tank Eff. 1,059 1/mln
Rate of CaS04 2H20 = S04 IN - S04 OUT
= 24,744 - 26,104
3. CaCO,
Entering Streams Scrubber Liquid
Scrubber Bottom
Make Up H,0
Clarlfled'M.lquld
- 1,360 m mole/mln
681 1/mln
76 1/mln
155 1/mln
155 1/mln
Leaving Streams Hold Tank Eff. 1,059 1/mln
Rate of CaC03 = C02 IN - C02 OUT
= 1,091 - 921
= 170 m mole/m1n
4. Ca(OH)2 Dissolution
Entering Liquid
Scrubber Liquid
Scrubber Bottom
Make Up H70
Clarlfled^Llquld
Leaving Streams Hold Tank Eff.
681 1/mln
76 1/mln
155 1/mln
155 1/mln
1,059 1/mln
18.3
2.85
7,4
10.25
29.1
23.3
20.9
24.65
1.42
.48
.57
.87
33.9
24.7
1.08
22.9
25.9
Rate of Ca(OH)2 Dissolution » Ca OUT - Ca IN + Ca Free. Rates
= 27,428 - 28,680 + 1,751
- 499 m mole/m1n
Species Flow Rate
(m mole/mini
12,462
217
1,117
10,855
19,817
1,771
3,156
26,104
967
36
921
23,086
1,877
167
3,550
27,428
*Ave. of Marble Bed Front and Back
H-32
-------
TABLE H-12. RATE CALCULATIONS USING LIQUID BALANCE
Experiment 21R
Stream Flow Rate
Species Cone.
in Llg. On mole/1)
Species Cone.
In Gas (ppm)
Marble Bed (Set #1)
1. CaS03 1/2 H20
Entering Streams Inlet Flue Gas
Scrubber Spray
Leaving Streams Outlet Flue Gas
Scrubber Liquid*
Scrubber Bottom
10,200 g mole/mln
758 l/m1n
8,820 g mole/mln
681 1/min
76 1/min
.9
10.2
1.6
2.000
735
Rate of CaS03 1/2 H20 Form = S02 IN - S02 OUT - Oxld. Rate
= 21,082 - 13,551 - .357 (20,400 - 6,483)
= 21,082 - 13,551 - 4,968
= 2,563 m mole/min
2. CaS04 2H20
Entering Streams Scrubber Spray
Leaving Streams Scrubber Liquid*
Scrubber Bottom
Rate of CaSO.
758 1/min
681 l/m1n
76 l/m1n
24.82
30.27
26.55
2H20 Form
S04 IN - S04 OUT - Oxld. Rate
18,814 - 22,632 + 4,968
1,150 m mole/ml n
3. Ca(OH)2 Dissolution
Entering Streams Scrubber Spray
Leaving Streams Scrubber Liquid*
Scrubber Bottom
758 1/min
681 1/min
76 1/min
21.79
23.98
21.75
Rate of Ca(OH)2 Dissolution = Ca (OUT) - Ca (IN) + Ca Prec. Rate
= 17,983 - 16,517 + (2,563 + 1,150)
= + 5,179 m mole/mi n
Species Flow Rate
Cm mole/ml n)
20,400
682
6,483
6.946
122
18,814
20,614
2,018
16,517
16,330
1,653
*Average of marble bed front and back
H-33
-------
TABLE H-12. RATE CALCULATIONS USING LIQUID BALANCE (Continued)
Stream Flow Rate
Species Cone.
In Llg. (m mole/1)
Hold Tank
1. CaS03 1/2 H20
Entering Steams
Scrubber Liquid
Scrubber Bottom
Clarified Liquid
681 l/m1n
76 l/m1n
38 1/mln
Leaving Streams Hold Tank Eff. 795 1/mln
.7
1.0
1.10
1.10
Rate of CaS03 1/2 H20
S02 IN - S02 OUT
595 - 875
-280 m mole/ml n
2. CaSO.
2H20
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarified Liquid
Leaving Streams Hold Tank Eff.
Rate of CaSO.
681 1/min
76 l/m1n
38 1/mln
795 1/m1n
2H20 Form = S04 IN - S04 OUT
= 19,836 - 21,227
= - 1,391 m mole/m1n
25.5
21.3
22.4
26.7
3.
CaCO,
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarified Liquid
Leaving Streams Hold Tank Eff.
Rate of CaC03 Form
4. Ca(OH2) Dissolution
Set #1 Marble Bed
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarified Liquid
Leaving Stream Hold Tank Eff.
681 1/m1n
76 1/mln
38 1/m1n
795 l/m1n
C02 IN - C02 OUT
= 151 - 223
= 72 m mole/m1n
681 1/mln
76 1/mln
38 l/m1n
795 l/m1n
.18
.23
.3
.28
30.2
28.75
20.8
18.1
Species Cone.
In Gas (ppm)
Species Flow Rate
Cm mole/ml n)
Rate of Ca(OH2) Dissolution = Ca OUT + Ca IN + Ca Free. Rate
= 14,390 - 23,541 + (-72 -1391 -280)
= - 10,894 m mole/mln
477
76
42
875
17,366
1.619
851
21,227
123
17
11
223
20,566
2,185
790
14.390
H-34
-------
TABLE H-12. RATE CALCULATIONS USING LIQUID BALANCE (Continued)
Set K Marble Bed
1. CaS03 1/2 H20
Entering Streams Inlet Flue Gas
Scrubber Spray
Stream Flow Rate
Species Cone.
In Ltq. Cm mole/1)
Species Cone. Species Flow Rate
1n Gas (ppm) to mole/mln)
Leaving Streams
Outlet Flue Gas
Scrubber Liquid*
Scrubber Bottom
Rate of CaS0 1/2
10,550 g raole/mln
758 1/mln
9,200 g mole/mln
681 1/mln
76 1/mln
1.00
10.39
1.25
1,985
678
Form = S02 IN - S02 (OUT) - Oxid. Rate
= 21,699 - 13,409 - 0.266 (14,703)
= 4,380 m mole/mi n
2. CaS0
2H20
Entering Streams Scrubber Spray
Leaving Streams
Scrubber Liquid*
Scrubber Bottom
758 1/mln
681 1/mln
76 1/mln
25.82
30.95
25.6
Rate of CaS04 2H20 = S04 IN - S04 OUT + Oxd. Rate
= 19,572 - 23,023 + 3,910
= 459 m mole/mi n
3. Ca(OH)2 Dissolution
Entering Streams
Leaving Streams
Scrubber Spray
Scrubber Liquid*
Scrubber Bottom
758 1/min
681 l/m1n
76 1/mln
18.59
25.09
20.9
Rate of Ca (OH)2 Dissolution = Ca OUT - Ca IN + Ca Free. Rate
= 18,674 - 14,091 + (459 + 4,380)
= 9,422 m mole/mln
'Average of marble bed front and back
20,941
758
6,238
7,076
95
19,572
21,077
1,946
14,091
17,086
1,588
H-35
-------
TABLE H-12. RATE CALCULATIONS USING LIQUID BALANCE (Continued)
Species Cone. Species Cone.
Stream Flow Rate 1n L1g. (m mole/1) 1n Gas (ppm)
Species Flow Rate
On mole/mln)
Hold Tank
1. CaSO, 1/2
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarified Liquid
Leaving Streams Hold Tank Eff.
681 l/m1n
76 1/mln
38 l/m1n
795 l/m1n
2.6
1.35
1.50
1.73
Rate of CaS03 1/2 H.,0 Form = S02 IN - S02 OUT
= 1,931 - 1,375
= 556 m mole/mln
2. CaSO.
2H20
Entering Streams Scrubber Liquid 681 l/m1n
Scrubber Bottom 76 1/min
Clarified Liquid 3B l/m1n
Leaving Streams Hold Tank Eff. 795 l/m1n
Rate of CaS04 2H20 = S04 IN - S04 OUT
» 18,911 - 22,896
24.7
16.33
22.35
28.8
3. CaCO
3
Entering Stream Scrubber Liquid
Scrubber Bottom
Clarified Liquid
Leaving Streams Hold Tank Eff.
-3,985 m mole/mln
681 l/m1n
76 1/min
38 l/m1n
795 1/nrin
1.42
.19
.29
.50
Rate of CaC03 = C02 IN - C02 OUT
= 992 - 398
= 594 m mole/mln
4. Ca(OH)2 Dissolution
Entering Stream Scrubber Liquid 681 1/mln
Scrubber Bottom 76 1/min
Clarified Liquid 38 1/mln
Leaving Streams Hold Tank Eff. 795 1/min
21.17
25.80
20.7
16.9
Rate of Ca(OH2) Dissolution = Ca OUT - Ca IN + Ca Free. Rate
= 13,436 - 17,165 - 2,835
= -6,564 m mole/min
1,771
103
57
1,375
16,821
1,241
849
22,896
967
14
11
398
14,417
1,961
787
13,436
H-36
-------
TABLE H-13. RATE CALCULATIONS USING LIQUID BALANCE
Experiment 22R
Stream Flow Rate
Species Cone. Species Cone.
tn Llg. (m mole/1) In Gas (ppm)
Marble Bed
1. CaS03 1/2 H20
Entering Streams Inlet Flue Gas
Scrubber Spray'
Leaving Streams Outlet Flue Gas
Scrubber Bottom
Scrubber Liquid*
10,466 g mole/m1n
1,355 1/mln
9,075 g mole/mln
380 1/mln
977 1/mln
3.75
7.19
8.85
2,021
484
Rate of CaS03 1/2 H20 = SOg IN - S02 OUT - OXID. Rate
= 26,233 - 15,770 - .346 (21,152 - 4,392)
= 26,233 - 15,770 - .346 06,760)
= 26,233 - 15,770 - 5,799
= 4,664 m mole/mln
2. CaS04 2 H20
Entering Streams Scrubber Spray 1,355 1/mln
Leaving Streams Scrubber Liquid* 977 l/m1n
Scrubber Bottom 380 1/mln
31.10
33.58
27.6
Rate of CaSCL
3. Ca(OH)2 Dissolution
Entering Streams Scrubber Spray
Leaving Streams Scrubber Liquid*
Scrubber Bottom
2 H20 = S04 IN - S04 OUT + OXID. Rate
= 42,140 - 43,295 + 5,799
= 4,644 m mole/min
1,355 l/m1n
977 1/mln
380 1/min
17.98
21.925
22.495
Rate of Ca(OH)2 Dissolution = Ca OUT - Ca IN + Ca Free. Rates
= 29,799 - 24,362 + (4,664 + 4,644)
= 14,745 m mole/min
Species Flow Rate
(m mple/mln)
21,152
5,081
4,392
2,732
8,646
42,140
32,807
10,488
24,362
21,420
8,379
*Ave. of Marble Bed Front and Back
H-37
-------
TABLE H-13. RATE CALCULATIONS USING LIQUID BALANCE (Continued)
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate in Llq. (m mole/1) In Gas (ppm) (m mole/mln)
Hold Tank
1. CaS03 1/2 H20
Entering Streams Clarified Liquid 38 l/m1n .75 29
Scrubber Liquid 977 l/m1n 18.55 18,123
Scrubber Bottom 380 l/ra1n 4.75 1,805
Leaving Streams Hold Tank Eff. 1,395 1/mln 1.93 2,692
Rate of CaS03 1/2 H20 = S02 IN - S02 OUT
= 19,957 - 2,692
= 17,265 m mole/ml n
2. CaS04 2 H20
Entering Streams Scrubber Liquid 977 1/mln 39.5 38,591
Scrubber Bottom 380 l/m1n 30.43 11,563
Clarified Liquid 38 1/mln 21.5 817
Leaving Streams Hold Tank Eff. 1,395 1/mln 29.77 41.529
Rate of CaS04 2 H20 = S04 IN - S04 OUT
= 50,971 - 41 ,529
9,442 m mole/m1n
3. CaC03
Entering Streams Scrubber Liquid 977 1/mln .79 772
Scrubber Bottom 380 1/mln 1.38 524
Clarified Liquid 38 1/mln .23 9
Leaving Streams Hold Tank Eff. 1,395 l/m1n .65 907
Rate of CaC03 = C02 IN - C02 OUT
= 1,305 - 907
= 398 m mole/m1n
4. Ca(OH)2 Dissolution
Entering Streams Scrubber Liquid 977 l/m1n 27.2 26.574
Scrubber Bottom 380 1/mln 19.58 7,440
Clarified Liquid 38 1/mln 21.1 802
Leaving Streams Hold Tank Eff. 1.395 1/mln 16.4 22,878
Rate of Ca(OH)2 Dissolution = Ca OUT - Ca IN + Ca Prec. Rate
= 22,878 - 34,816 + (17,265 + 9,442 + 398)
= 15,167 m mole/rain
H-38
-------
APPENDIX I
LIMESTONE FURNACE INJECTION SYSTEM
ADDITIVE DISSOLUTION RATE DETERMINATION DIAGRAMS
-------
22
20
18
16
x 14
CO
c?
10
A
8
SPRAY COMPOSITION
I
ACTUAL SO,
REMOVAL
100% STAGE
EFFICIENCY
I .
CD
3.2 3.4 3.6 3.8 4.0
5.0 .
MOLE FRACTION - TOTAL SULFUR IN LIQUID x 10'4
6.0
PLOT OF OPERATING LIME FOR EXPERIMENT 18R
-------
CD
tn
22
20
18
16
14
12
sT 10
2 8
6 8
4
0
29
26 27 28
CALCIUM -mMOLE/ LITER
PLOT OF CALCIUM vs PARTIAL PRESSURE OF S02 FOR SCRUBBER
EFFLUENT - EXPERIMENT 18R
-------
22
20
18
16
o
t—I
oo
I—I
CM
12
10
o
8
4
2
o
T T
ACTUAL S02 REMOVAL
1—-f^iuu% STAGE EFFICIENCY
I
SPRAY COMPOSITION
I
I I
6.4 6.6 6.8 7.0
8.0 9.0
MOLE FRACTION - TOTAL SULFUR IN LIQUID x 10~4
10.0
PLOT OF OPERATING LINE FOR EXPERIMENT 19R
-------
I
22
20
18
16
x 14
to
o
to
12
10
S 8
s 8
I 6
§ 4
I
i!
31
32 33
CALCIUM-m MOLE/LITER
34
PLOT OF CALCIUM vs PARTIAL PRESSURE OF S02 FOR SCRUBBER
EFFLUENT - EXPERIMENT 19R
-------
T
CD
CO
g
I
01
CO
22
20
18
16
14
12
10
o
1-^
5
0 8
i—i o
3 0
ACTUAL S02 REMOVAL
STAGE EFFICIENCY
SPRAY COMPOSITION
6.4 6.6 6.8 7.0
CD
l—l
I
8.0 9.0
MOLE FRACTION - TOTAL SULFUR IN LIQUID x 10'4
PLOT OF OPERATING LIN FOR EXPERIMENT 20R
10.0
-------
I
22
20
18
16
x 14
to
5 12
to
1 8
o
O£ a
0
T T
T T
I
I
T 1 1 T
31
32 33
CALCIUM-m MOLE/LITER
34
PLOT OF CALCIUM vs PARTIAL PRESSURE OF S02 FOR SCRUBBER
EFFLUENT - EXPERIMENT 20R
-------
CO
3
to
22
20
18
16
14
12
10
D— f
y
i 4
0
ACTUAL S02 REMOVAL
100% STAGE
SPRAY COMPOSITION
5.0
6.0 7.0
MOLE FRACTION - TOTAL SULFUR IN LIQUID x 10"4
8.0
PLOT OF OPERATING LINE FOR EXPERIMENT 21R
-------
OB
00
T
o
22
20
18
16
14
CO
S 12
CO
O Q
i—i O
2f 6
iiJ
i 4
0
I
26
27 28
CALCIUM-m MOLE/LITER
29
PLOT OF CALCIUM vs PARTIAL, PRESSURE OF S02 FOR SCRUBBER
EFFLUENT - EXPERIMENT 21R
-------
to
to
22
20
18
16
14
12
10
§•
<
O£L f
U- 0
o
? 0
^ 6.0
ACTUAL S02 REMOVAL
•
—AvlOO% STAGE EFFICIENCY
SPRAY COMPOSITION
7.0 8.0 -
MOLE FRACnON - TOTAL SULFUR IN LIQUID x 10"4
9.0
PLOT OF OPERATING LINE FOR EXPERIMENT 22R
-------
•3'
c
22
20
18
16
x 14
tn
*»
6
4
2
0
T T
OUTLET S02 FOR
100% STAGE
„ EFFICIENCY
I
I
I
I
21
22 23
CALCIUM-m MOLE/LITER
24
PLOT OF CALCIUM vs PARTIAL PRESSURE OF S02 FOR SCRUBBER
EFFLUENT - EXPERIMENT 22R
-------
APPENDIX J
LIMESTONE TAIL-END SYSTEM
OPERATING DATA
AND
ANALYTICAL RESULTS
-------
TABLE J-l. C-E ARCS PROTOTYPE
TAIL-END LIMESTONE TESTS
Experiment No. 25R 26R 27R
Date of Run 7/7/72 7/10/72 7/11/72
Set Number 12121 2
T1me , % , 1045-1200 1230-1315 1400-1500 1515-1600 0920-1030 1030-1130
Flue Gas (F6) Rate (cfm @ 130°F) 9,950 9,900 10,060 10,100 10,250 10,180
Additive Feed Rate (Ib/hr) 318 318 510 510 516 516
Spray Water Lower (SWL) Rate (gpm) 240 250 245 235 150 150
Spray Water Upper (SWU) Rate (gpm)
Scrubber Liquid Lower (SLL) Rate (gpm) 180 195 180 178 135 135
Scrubber Liquid Upper (SLU) Rate (gpm) _____
Scrubber Bottom (SB) Rate (gpm) 60 55 65 58 15 15
Clarifier Liquid (CL) Rate (gpm) 10 10 15 15 12 12
Liquid Slowdown (LB) Rate (gpm) 000000
Clarifier Feed (CF) Rate (gpm) 10 10 15 15 12 12
Clarifier Bottom (CB) Rate (gpm) 3 3
Filter Liquid (FL) Rate (gpm) ______
Spray Water (SW) Temp. (°F) 122 121 120 120 120 120
Scrubber Liquid (SL) Temp. (°F) 122 121 122 122 121 121
Scrubber Bottom (SB) Temp. (°F) 134 135 131 ,135 131 131
Inlet Gas Dew Point (°F) 114 114 113 113 104.5 104.5
Outlet Gas Dew Point (°F) 121.5 121.5 119 119 117.5 117.5
Reheater Inlet Gas Temp. (°F) 125 124 121 122 122 122
Heat Extractor Outlet Gas Temp. (°F) 295 298 315 315 298 305
Inlet S02 (ppm) 2,329 2,362 2,519 2,490 2,306 2,323
Outlet S02 (ppm) 956 997 1,023 999 1,114 1,099
Inlet 02 (%)* 10.6 10.6 9.8 9.8 10.0 10.0
Outlet 62 (*) - - 10.3 10.3 10.6 10.6
Inlet C02 (%)* 8.0 8.0 8.2 8.2 8.4 8.4
Outlet COo (%) - - 7.8 7.8 7.5 7.5
Outlet SOJ> corrected for air leakage (ppm) 1,022 1,070 1,097 1,072 1,195 1,177
S02 Removal Efficiency (%) 56.2 54.7 56.5 57.0 48.2 49.4
Stoichiometry (%) 98.5 97.6 114.5 146.1 156.7 156.6
Solid Concentration in Spray Water 7.56 7.14 - 6.57 7.18 7.69
* Average Air Leakage 7.2%
-------
TABLE J-l. (Continued)
Experiment No.
r.
.* F)
Feed Rate (Ib/hr)
Spray Water Lower (SWL) Rate (gpm)
Spray Water Upper (SWU) Rate (gpm)
Scrubber Liquid Lower (SLL) Rate (gpm)
Scrubber Liquid Upper (SLU) Rate (gpm)
Scrubber Bottom (SB) Rate (gpm)
Clarifier Liquid (CL) Rate (gpm)
Liquid Slowdown (LB) Rate (gpm)
Clarifier Feed (CF) Rate (gpm)
Clarifier Bottom (CB) Rate (gpm)
Filter Liquid (FL) Rate (gpm)
Spray Water (SW) Temp. (°F)
Scrubber Liquid (SL) Temp. (°F)
Scrubber Bottom (SB) Temp. (°F)
Inlet Gas Dew Point (°F)
Outlet Gas Dew Point (°F)
Reheater Inlet Gas Temp. (°F)
Heat Extractor Outlet Gas Temp. (°F)
Inlet SO? (ppm)
Outlet SO? (ppm)
Inlet 02 («)*
Outlet 02 (%)
Inlet C02 (%)*
Outlet C02 (%)
Outlet S02 corrected for air leakage (ppm)
SO- Removal Efficiency („)
StBichiometry (%)
Solid Concentration in Spray Water
28R 29R 30R
7/12/72 7/13/72 7/14/
1
1445-1545
10,160
516
158
150
168
112
28
15
0
15
125
125
125
119.3
125
125
308
2,392
546
9.3
9.8
8.4
8.1
585
75.5
152.4
6.39
2
1605-1705
10,400
516
160
150
170
no
30
15
15
15
126
121
132
119.3
125
126
312
2,432
543
9.3
9.8
8.4
8.1
582
76.0
151.7
6.97
1
1100-1200
10,200
516
245
225
210
170
90
15
0
15
126
137
127
114
125.5
125
315
2,456
297
10.6
11.6
7.4
6.7
318
87.0
147.8
8.40
2
1245-1315
10,400
516
245
225
200
180
90
15
0
15
125
134
126
114
125.5
125
305
2,415
280
10.6
11.6
7.4
6.7
300
87.6
147.5
8.75
1
0950-1050
10,280
320
250
235
215
180
90
10
0
10
124
130
125
115
122
125
340
2,300
334
_
_
_
_
358
84.4
97.1
-
2
1125-1225
10,280
320
250
235
215
180
90
10
0
10
123
136
125
115
122
125
340
2,457
405
_
_
_,
_
434
87.3
90.94
_
* Average Air Leakage 7.2%
-------
TABLE J-2. SPRAY WATER FILTRATE ANALYSIS AND SOLIDS CONCENTRATION
DATA FOR STEADY STATE DETERMINATION
7/7/72 26R
7/10/72
Sampling for Test 25R
18
19
20
21
22
23
24
25
26
27
28
1330
1400
1500
1600
1700
0800
1000
1030
1100
1200
1300
1630
1645
1700
777
741
525
787
750
796
756
780
700
761
780
396
376
328
408
112
272
92
220
192
188
192
2790
2410
1780
2740
2560
2780
2510
2780
2690
2640
2680
2314
1958
1386
2250
2425
2453
2399
2516
2459
2414
2449
6.10
6.10
6.10
6.0
6.02
6.10
Solid
Data
7/5/72
'i
7/6/72
»
»
n
»
"
"
"
11
11
7/7/72
n
11
Test
No.
25R
n
"
25R
»
"
n
n
n
n
n
n
n
11
11
n
11
Sample
No.
1
2
3
4
5
6
7
8
9
10
n
12
13
14
15
16
17
Time
1200
1300
1340
0900
1000
1100
1200
1300
1400
1500
1600
1700
1800
1900
0730
0800
0900
1000
Ca++
(ppm)
1272
1287
962
755
524
793
760
799
754
737
701
753
758
776
786
761
758
S05
(ppm)
952
852
524
376
376
412
404
412
392
404
352
360
412
404
104
352
372
Total Sulfur
as SOJ (ppm)
4460
4700
3080
2450
1740
2540
2400
2550
2650
2680
2350
2390
2490
2430
2620
2580
2620
S04
(ppm)
3317
3677
2451
1998
1317
2045
1915
2055
2179
2195
1927
1958
1995
1945
2495
2157
2173
PH
6.15
6.05
6.05
6.13
6.19
6.18
6.20
6.20
6.10
Cone.
1.3
1.8
2.6
3.3
4.3
4.7
5.2
5.8
7.4
7.9
7.5
7.4
7.2
7.3
7.0
6.4
6.8
6.9
7.2
7.5
7.0
6.4
6.4
6.2
6.5
6.0
6.6
7.3
6.9
5.5
6.1
6.8
Sampling for Test 26R
J-3
-------
TABLE J-2. (Continued)
Test
Data No.
7/11/72 27R
n ii
n n
7/12/72 28R
n n
n n
n n
n n
n n
n n
n n
n M
M n
7/13/72 29R
n n
n n
n n
M n
"
7/14/72 30R
n n
n n
n n
„
Sample
No.
29
30
31
32
33
34
35
36
37
38
39
40
41
42
Time
0800
0830
0900
and
0900
0930
1000
1030
1100
1130
1200
1300
1330
1400
0800
0840
0900
0930
1000
1030
0645
0715
0745
0815
0845
Ca++
(ppm)
823
812
802
Sampling
503 Total .Sulfur SOj
(ppm) as SO^ (ppm) (ppm)
272
192
184
for Test 27R
3010
2770
2870
2683
2539
2649
Solid
Cone.
PH (%)
6.1 5
6
6.1 6
.9
.5
.0
Installing Upper Marble Bed
784
882
845
824
772
756
Sampling
781
806
Sampling
716
655
718
Sampling
232
212
192
216
172
156
for Test 28R
252
268
for Test 29R
292
196
196
for Test 30R
2700
3070
2860
3010
2880
2840
2970
3070
3200
2850
3030
2421
2815
2629
2750
2673
2652
2667
2748
2849
2614
2794
6.61 6
6
6.50 6
6
6.40 6
6
6.50 6
6.50 12
6
6.40 5
6.1 6
6
6
6
9
6
7
7
7
7
6
.0
.1
.1
.1
.8
.6
.9
.8
.6
.5
.3
.1
.2
.0
.6
.8
.4
.7
.4
.5
.9
J-4
-------
c_
01
Sample Location
TABLE J-3. RESULTS OF SOLID PHASE ANALYSES
EXPERIMENT 25R
Set 1
Scrubber Liquid Tk
Scrubber Bottoms Tk
Hold Tank Effluent
Marble Bed: Front
Marble Bed: Back
Scrubber Bottoms S
Scrubber Spray
Set 2
Scrubber Liquid Tk
Scrubber Bottoms Tk
Hold Tank Effluent
Lime Stone
Lime Stone
1235
1240
1300
7/7/72
Wt % Solids
Time in Slurry
1055
1100
1120
1130
1142
1155
1203
7.13
7.74
7.79
7.32
6.32
7.90
7.55
7.04
7.29
7.14
Composition in Millimoles/Gram
Total S Ca
.74
.42
4.28
4,
5,
4,
64
39
61
4.36
4.85
4.67
4.31
0.002
0.015
Mg
SO,
SO,
CO,
7
7
7
7
7
7
7
7
7
9
9
.29
.38
.46
.22
.32
.40
.39
.31
.48
.31
.50
.45
0
0
0
0
0
0
0
0
0
0
.030
.031
.032
.029
.023
.030
.032
.027
.028
.029
0.13
0.13
3
3
3
3
4
3
3
3
3
3
.57 1
.27
.21
.50
.02
.42
.32
.70
.51
.30
- 0
- 0
.17
.15
.07
.14
.37
.19
.04
1.16
1.16
1.01
.002
.002
2
3
3
2
2
2
3
2
2
2
9
9
.70
.09
.24
.73
.08
.94
.05
.69
.81
.94
.24
.40
Weight
% Undissolved
1.64
2.18
2.18
1.90
2.05
2.07
2.50
1.73
2.09
2.04
2.60
2.26
-------
TABLE J-4. RESULTS OF SOLID PHASE ANALYSES
EXPERIMENT 26R
c..
CM
Sample Location
7/10/72
Set 1
Scrubber Liquid Tk
Scrubber Bottoms Tk
Hold Tank Effluent
Marble Bed: Front
Marble Bed: Back
Scrubber Bottom S
Scrubber Spray
Set 2
Scrubber Liquid Tk
Scrubber Bottoms Tk
Hold Tank Effluent
Marble Bed: Front
Marble Bed: Back
Scrubber Bottoms S
Scrubber Spray
Time
1400
1405
1420
1435
1445
1450
1455
1515
1525
1547
1555
1602
1615
1610
Wt % Solids
in Slurry
6.24
6.34
6.43
7.94
6.65
6.57
Composition in Millimoles/Gram
Total S
4.94
4.92
4.59
5.02
5.26
4.54
3.94
4.54
4.38
4.12
4.31
4.45
4.43
3.82
Ca
Mg
SO,
SO,
CO,
7.73
7.69
7.83
7.72
7.67
7.92
8.05
7.67
7.84
7.71
7.69
7.60
7.68
7.90
0.04
0.04
0.04
0.04
0.03
0.04
0.05
0.06
0.05
0.06
0.06
0.05
0.06
0.06
3.69
3.76
3.39
3.76
4.02
3.40
2.90
3.39
3.30
3.14
3.29
3.38
3.37
2.94
1.25
1.16
1.20
1.26
1.24
1.03
1.04
1.15
1.08
0.98
1.02
1.07
1.06
0.88
2.87
2.86
3.23
2.75
2.57
3.40
4.37
3.30
3.40
3.61
3.40
3.38
3.40
4.03
Weight
% Undissolved
1.59
1.43
1.80
1.53
1.43
2.08
2.89
1.84
1.97
1.93
1.97
1.95
1.73
2.44
-------
Sample Location
TABLE J-5. RESULTS OF SOLID PHASE ANALYSES
EXPERIMENT 27R
Time
Set 1
Scrubber Liquid Tk
Scrubber Bottoms Tk
Hold Tank Effluent
Marble Bed: Front
Marble Bed: Back
Scrubber Bottoms S
Scrubber Spray
7/11/72
Wt % Solids
in Slurry
0935
0940
0953
1000
1007
1015
1020
6.70
5.94
7.43
6.46
7.52
6.92
7.18
Composition in Mi 111moles/Gram
Total S
Ca
Mg
SO,,
SO.
CO,
4.02
4.53
3.60
4.22
3.98
4.07
3.57
8.04
7.95
8.13
7.84
7.95
7.93,
8.08
0.5
0.5
0.06
0.06
0.06
0.06
0.07
3.05
3.53
2.65
3.26
3.04
3.17
2.70
0.97
1.00
0.95
0.96
0.94
0.90
0.87
3.82
3.22
4.36
3.81
4.02
3.79
4.54
Weight
Undissolved
2,
1,
2
2,
2,
1,
37
79
70
24
91
64
3.16
Set 2
Scrubber Liquid Tk
Scrubber Bottoms Tk
Hold Tank Effluent
Marble Bed: Front
Marble Bed: Back
Scrubber Bottoms S
Scrubber Spray
1040
1045
1100
1110
1115
1122
1128
6.80
7.47
7.38
7.08
7.97
7.49
7.69
3.91
3.72
3.49
4.24
4.44
3.69
3.53
8.00
8.06
8.07
8.01
7.96
8.12
8.08
0.06
0.07
0.06
0.06
0.06
0.06
0.06
2.94
2.78
2.62
3.23
3.45
2.76
2.74
0.98
0.93
0.87
1.01
0.99
0.93
0.79
4.00
4.28
4.65
3.79
3.55
4.50
4.45
2.03
2.12
2.28
1.96
1.83
2.72
2.58
-------
c_
00
TABLE J-6. RESULTS OF SOLID PHASE ANALYSES
EXPERIMENT 28R
Sample Location
Set 1
Scrubber Liquid Tk Lower
Scrubber Liquid Tk Upper
Scrubber Bottoms Tk
Hold Tank Effluent
Marble Bed: Front-Upper
Marble Bed: Front-Lower
Marble Bed: Back-Lower
Scrubber Bottoms S
Scrubber Spray
Set 2
Scrubber Liquid Tk Lower
Scrubber Liquid Tk Upper
Scrubber Bottoms Tk
Hold Tank Effluent
Marble Bed: Front-Upper
Marble Bed: Front-Lower
Marble Bed: Back-Lower
Scrubber Bottoms S
Scrubber Spray
Time
7/11/72
Wt % Solids
in Slurry
0250
0255
0300
0312
0325
0345
0355
0330
0337
6.04
6.07
6.60
6.17
6.61
8.45
4.72
6.93
6.40
0405
0410
0420
0440
0512
0447
0455
0505
0520
6.05
6.17
6.60
6.47
6.13
6.61
4.46
7.67
6.71
Composition in Mi 111moles/Gram
Total S
4.74
4.31
4.09
4.02
4.30
4.07
5.49
4.16
3.84
4.
4,
4.
5,
4,
5,
4,
46
52
22
4.06
07
18
90
50
Ca
Mg
SO,
SO,
CO,
4.21
7.82
7.87
7.94
7.88
7.86
7.95
7.52
7.90
8.01
7.82
7.83
7.85
7.77
7.67
7.76
7.45
7.84
7.92
0.06
0.06
0.07
0.07
0.06
0.07
0.04
0.07
0.07
0.04
0.05
0.06
0.06
0.04
0.06
0.03
0.05
0.06
3.19
3.26
3.07
3.04
3.21
3.00
4.26
3.14
2.86
3.34
3.36
3.15
3.01
3.90
3.11
4.71
3.39
3.13
1.05
1.05
1.02
0.98
1.09
1.07
1.23
1.02
0.98
1.12
1.16
1.07
1.05
1.17
1.07
1.19
1.11
1.08
3.65
3.70
3.70
3.74
3.40
3.79
2.16
3.67
3.91
3.30
3.20
3.49
3.90
2.88
3.53
1.87
3.00
3.48
Weight
% Undissolved
2.11
1.92
1.93
2.12
1.81
2.12
1.20
2.02
1.99
1.99
1.80
1.98
1.97
1.02
1.96
0.83
2.04
1.64
-------
I
10
TABLE J-7. RESULTS OF SOLID PHASE ANALYSES
EXPERIMENT 29R
Sample Location
Set 1
Scrubber Liquid Tk Lower
Scrubber Liquid Tk Upper
Scrubber Bottoms Tk
Hold Tank Effluent
Marble Bed: Front-Upper
Marble Bed: Front-Lower
Marble Bed: Back-Lower
Scrubber Bottoms S
Scrubber Spray
Set 2
Scrubber Liquid Tk Lower
Scrubber Liquid Tk Upper
Scrubber Bottoms Tk
Hold Tank Effluent
Marble Bed: Front-Upper
Marble Bed: Front-Lower
Marble Bed: Back-Lower
Scrubber Bottoms S
Scrubber Spray
Time
1225
1230
1235
1256
0135
0110
0118
0130
0140
7/13/72
Wt % Solids
in Slurry
1100
1105
1115
1130
1203
1141
1155
1145
1210
7.21
7.32
7.59
10.05
11.31
7.86
6.18
7.09
8.41
7.21
8.19
10.27
8.85
12.34
8.99
6.87
9.17
8.72
Composition in Hi Hi moles/Gram
Total S
4.75
4,
4,
4,
5,
4,
6,
4
69
56
51
32
55
09
80
4.53
5.04
4.75
65
61
60
68
05
07
Ca
Mg
SO,
SO.
CO,
5.00
7.72
7.85
7.80
7.62
7.36
7.57
7.19
7.54
7.55
7.45
77
7.54
7.47
7.30
7.46
7.22
7.43
7.46
0.05
0.05
0.06
0.08
0.06
0.08
0.05
0.06
0.07
0.07
0.07
0.07
0.07
0.04
0.06
0.03
0.05
0.05
3.42
3.40
3.28
3.25
3.88
3.37
4.54
3.45
3.27
3.59
3.36
3.33
3.30
4.10
3.32
4.50
3.58
3.63
1.32
1.28
1.28
1.26
1.44
1.18
1.55
1.35
1.26
1.45
1.39
1.32
1.31
1.50
1.36
1.55
1.49
1.37
3.00
2.95
3.04
2.93
2.13
2.92
1.32
2.73
2.90
2.59
2.75
2.85
2.93
2.06
2.97
1.34
2.40
2.67
Weight
Undissolved
1.60
1.44
1.75
1.76
1.14
1.77
0.66
1.49
1.83
1.47
1.66
1.75
1.68
0.98
1.79
0.76
1.42
1.62
-------
TABLE J-8. RESULTS OF SOLID PHASE ANALYSES
EXPERIMENT 30R
7/14/72
I
o
Sample Location
Time
Wt % Solids
in Slurry
Set 1
Scrubber Liquid Tk-Lower 1000
Scrubber Liquid Tk-Upper 1005
Scrubber Bottoms Tk 1015
Hold Tank Effluent 1031
Marble Bed: Front-Upper 1052
Marble Bed: Front-Lower 1038
Marble Bed: Back-Lower 1045
Scrubber Bottoms S 1058
Scrubber Spray 1105
Set 2
Scrubber Liquid Tk-Lower 1125
Scrubber Liquid Tk-Upper 1130
Scrubber Bottoms Tk 1 1135
Hold Tank Effluent 1150
Marble Bed: Front-Upper 1210
Marble Bed: Front-Lower 1200
Marble Bed: Back-Lower 1205
Scrubber Bottoms S 1218
Scrubber Spray 1227
Composition in Millimoles/Gram
Total S Ca
5.79
5.67
.52
.63
6.10
5.81
6.46
5.66
5.70
5,
5.
5.81
5.82
.64
.67
.12
.88
.39
.95
Mg
SO,
SO,
CO,
5.63
7.10
7.09
7.13
7.16
7.10
7.01
7.04
7.17
7.15
7.09
7.15
7.15
7.14
7.03
7.10
7.00
7.09
7.13
0.05
0.06
0.05
0.05
0.04
0.05
0.03
0.05
0.05
0.04
0.04
0.05
0.05
0.05
0.05
0.04
0.04
0.06
4.08
4.00
3.87
3.94
4.30
4.04
4.62
3.89
3.87
4.02
4.02
3.89
3.94
4.25
4.06
4.56
4.17
3.91
1.71
1.68
1.65
1.69
1.80
1.77
1.84
1.77
1.83
1.79
1.80
1.75
1.73
1.87
1.82
1.83
1.78
1.72
1.45
1.59
1.82
1.82
1.19
1.49
0.87
1.82
1.67
1.46
1.47
1.59
1.64
1.33
1.27
0.86
1.27
1.68
Weight
% Undissolved
1.10
1.35
1.55
1.46
1.00
1.21
0.64
1.34
1.40
1.34
1.35
1.59
1.51
0.99
1.26
0.71
1.22
1.85
-------
TABLE J-9. LIQUID CHEMICAL ANALYSIS AT STEADY STATE
EXPERIMENT 25R
7/7/72
Concentration in m moles/liter
Set
No.
1
1
1
1
1
1
1
1
2
2
2
2
2
2
2
2
Time
1142
1130
1155
1203
1055
1100
1120
1115
1235
1240
1300
1255
Sampling Point
Marble Bed Back
Marble Bed Front
Scrubber Bottoms (Scrubber)
Spray Water
Scrubber Liquid at Tank
Scrubber Bottom at Tank
Hold Tank Effluent
Clarifier Liquid
Marble Bed Back
Marble Bed Front
Scrubber Bottom (Scrubber)
Spray Water
Scrubber Liquid at Tank
Scrubber Bottom at Tank
Hold Tank Effluent
Clarifier Liquid
Ca++
24.67
25.85
24.35
24.03
22.55
20.58
17.94
15.83
22.0
21.32
17.80
15.98
Mg++
3.32
3.29
3.26
3.14
3.23
3.20
3.11
0.90
3.24
3.21
3.18
0.96
Na+
0.72
0.70
0.71
0.83
0.69
0.68
0.69
0.90
0.71
0.70
0.69
0.91
C03
2.14
1.48
3.15
5.35
6.52
6.08
6.56
2.01
5.15
5.29
6.36
2.12
S04
13.82
-
24.67
18.52
8.54
8.94
15.1
12.8
9.99
8.95
12.05
10.02
s°;
21.0
45.6
9.95
8.51
21.55
18.56
6.57
4.02
20.96
19.90
9.62
6.98
Cl-
1.38
1.43
1.32
1.31
1.44
1.44
1.39
1.36
1.31
1.30
1.32
1.15
Tot.
N
0.3
0.3
0,3
0.3
0.3
0.3
0.3
0.3
0.3
0.30
0.3
0.3
PH
5.29
5.31
5.23
6.02
5.50
5.59
6.05
6.99
5.45
5.56
6.02
6.96
Temp.
°C
-
-
49.0
-
50.5
49.8
49.0
27.5
49.3
49.0
48.5
28.0
-------
TABLE J-10. LIQUID CHEMICAL ANALYSIS AT STEADY STATE
EXPERIMENT 26R
7/10/72
Concentration in m moles/11ter
C-i
I
ro
Set
No.
1
1
1
1
1
1
1
1
2
2
2
2
2
2
2
2
Time
1445
1435
1450
1455
1400
1405
1420
1425
1602
1555
1615
1610
1515
1520
1547
1542
Sampling Point
Marble Bed Back
Marble Bed Front
Scrubber Bottoms (Scrubber)
Spray Water
Scrubber Liquid at Tank
Scrubber Bottom at Tank
Hold Tank Effluent
Clarifier Liquid
Marble Bed Back
Marble Bed Front
Scrubber Bottom (Scrubber)
Spray Water
Scrubber Liquid at Tank
Scrubber Bottom at Tank
Hold Tank Effluent
Clarifier Liquid
Ca++
28.5
30.7
27.5
21.5
24.8
24.2
19.7
17.5
29.4
32.1
27.9
22.5
25.3
27.36
20.5
17.7
Mg++
3.52
3.56
3.54
3.45
3.57
3.73
3.35
1.84
3.52
3.60
3.54
3.56
3.54
3.57
3.38
1.95
Na+
0.88
0.89
0.88
0.87
0.87
0.88
0.87
0.98
0.88
0.87
0.87
0.87
0.86
0.88
0.85
0.97
C03
3.09
3.80
3.41
5.67
6.43
5.69
6.52
3.39
3.93
3.59
3.68
6.16
6.48
5.26
5.65
4.26
S04
24.1
22.5
19.3
21.4
24.50
21.3
20.4
18.0
23.8
24.3
23.8
-
21.86
24.36
20.60
18.2
S0=3
15.8
21.8
17.0
3.73
12.30
9.62
3.31
0.74
18.6
19.5
15.5
-
12.60
11.03
3.36
0.76
Cl-
1.30
1.35
1.33
1.37
1.34
1.37
1.35
1.14
1.18
1.28
1.22
1.21
1.30
1.22
1.19
1.12
Tot.
N
0.5
-
-
-
0.5
0.5
0.5
0.5
-
-
0.5
-
0.5
0.5
0.5
0.5
PH
5.13
4.97
5.32
5.97
5.30
5.32
6.00
7.19
5.24
5.19
6.05
5.29
5.39
5.41
6.07
7.15
Temp.
°C
48.0
48.0
48.5
47.0
49.0
48.7
48.0
31.0
47.0
46.0
47.0
47.0
49.0
48.5
47.0
31.5
-------
TABLE J-ll. LIQUID CHEMICAL ANALYSIS AT STEADY STATE
EXPERIMENT 27R
7/11/72
Concentration in m moles/liter
CO
Set
No.
1
1
1
1
1
1
1
2
2
2
2
2
2
2
2
Time
1007
1015
1020
0935
0940
0953
0950
2022
2030
2040
2050
1040
1045
1100
1056
Sampling Point
Marble Bed Back
Scrubber Bottoms (Scrubber)
Spray Water
Scrubber Liquid at Tank
Scrubber Bottom at Tank
Hold Tank Effluent
Clarifier Liquid
Marble Bed Back
Marble Bed Front
Scrubber Bottoms (Scrubber)
Spray Water
Scrubber Liquid at Tank
Scrubber Bottom at Tank
Hold Tank Effluent
Clarifier Liquid
Ca++
27.70
26.90
19.10
24.33
22.06
19.40
17.90
29.80
30.20
28.50
19.60
24.46
21.66
24.88
17.60
Mg++
4.04
3.92
3.80
's.94
3.92
3.86
2.43
3.86
3.97
3.92
3.89
4.10
3.97
3.84
2.45
Na+
0.88
0.89
0.88
0.86
0.88
0.86
0.92
0.90
0.91
0.92
0.89
0.86
0.92
0.88
0.95
C03
3.01
3.49
7.77
7.45
6.60
6.63
4.33
2.79
3.98
3.20
7.51
7.65
7.21
6.85
5.34
so=
20.00
16.60
20.00
22.65
21.62
20.80
18.70
23.10
25.40
24.30
-
22.96
20.83
14.9
18.4
S
22
23
3
10
7
2
1
16
18
16
10
7
1
1
°3 l
.60 1
.80 1
.04 1
.02 1
.17 1
.65 1
.08 1
.90
.90
.20
-
.44
.99
2.5
.12
.30
.34
.29
.35
.43
.33
.22
.25
.22
.26
.41
.40
.30
1.38
1.24
Tot.
N
.
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
pH
5.28
5.27
6.10
5.42
5.68
6.05
6.68
5.59
5.31
5.49
6.22 .
5.52
5.67
6.12
6.81
Temp.
°C
47.4
48.2
47.7
49.2
48.3
48.0
32.5
47.2
48.5
47.7
48.1
49.8
49.1
, 47.4
33.9
-------
TABLE J-12. LIQUID CHEMICAL ANALYSIS AT STEADY STATE
EXPERIMENT 28R
7/11/72
Concentration In m moles/liter
Set
No.
1
1
1
1
1
1
1
1
1
1
2
2
2
2
2
2
2
2
2
2
Time
0325
0355
0345
0330
0377
0250
0255
0300
0312
0309
0512
0455
0477
0505
0520
0410
0415
0420
0440
0436
Sampling Point
Marble Bed Front-Upper
Marble Bed Back -Lower
Marble Bed Front-Lower
Scrubber Bottoms (Scrubber)
Spray Water
Scrubber Liquid at Tank-Lower
Scrubber Liquid at Tank-Uper
Scrubber Bottom at Tank
Hold Tank Effluent
Clarifier Liquid
Marble Bed Front-Upper
Marble Bed Back-Lower
Marble Bed Front-Lower
Scrubber Bottoms (Scrubber)
Spray Water
Scrubber Liquid at Tank-Lower
Scrubber Liquid at Tank-Upper
Scrubber Bottom at Tank
Hold Tank Effluent
Clarifier Liquid
Ca++
27.22
26.41
28.86
26.95
21.80
24.65
22.55
23.10
20.06
19.68
26.90
26.35
28.23
25.73
20.03
23.52
24.25
23.93
19.80
18.85
Mg++
4.53
4.48
4.72
4.55
4.51
4.50
4.34
4.50
4.33
3.19
4.84
4.83
4.82
4.90
4.75
4.65
4.72
4.75
4.63
3.37
Na+
0.65
0.65
0.64
0.64
0.62
0.70
0.70-
0.68
0.68
0.90
0.70
0.68
0.70
0.64
0.65
0.66
0.67
0.66
0.72
0.88
C°3
2.85
2.75
3.86
4.16
7.66
6.71
6.90
5.83
6.63
4.59
3.79
3.32
2.91
3.68
6.87
5.33
5.38
5.58
6.07
4.57
»;
25.15
21.38
25.49
22.22
21.18
22.30
21.62
21.44
20.92
19.61
26.07
24.90
21.41
22.53
21.65
22.34
22.87
23.32
21.27
20.04
so=3
11.40
16.12
16.14
16.14
3.98
12.60
8.19
8.83
3.48
2.12
11.25
12.68
18.88
15.68
3.06
10.05
10.41
9.05
3.27
1.21
Cl-
1.24
1.17
1.22
1.26
1.20
1.15
1.11
1.16
1.21
1.19
1.22
1.25
1.28
.29
.27
.19
.20
.27
.25
.22
Tot.
N
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
-
05
0.5
0.5
0.5
0.5
0.5
0.5
PH
5.76
5.61
5.66
5.67
6.42
5.69
5.96
5.91
6.31
7.02
5.95
5.80
5.81
5.79
6.49
5.98
5.96
6.00
5.45
7.10
Temp.
°C
46.6
50.0
44.2
50.5
50.0
51.4
51.1
50.3
50.3
37.0
47.5
49.0
46.0
50.8
50.8
51.5
51.4
50.9
50.8
38.0
-------
TABLE J-13. LIQUID CHEMICAL ANALYSIS AT STEADY STATE
EXPERIMENT 29R
7/13/72
Concentration in m moles/liter
c*
I
CJI
Set
No.
1
1
1
1
1
1
1
1
1
1
2
2
2
2
2
2
2
2
2
2
Time
1203
1155
1141
1145
1210
1100
1105
1115
1130
1125
0135
0118
0110
0130
0140
1225
1230
1235
1256
1252
Sampling Point
Marble Bed Front-Upper
Marble Bed Back-Lower
Marble Bed Front-Lower
Scrubber Bottoms (Scrubber)
Spray Water
Scrubber Liquid at Tank-Lower
Scrubber Liquid at Tank-Upper
Scrubber Bottom at Tank
Hold Tank Effluent
Clarifier Liquid
Marble Bed Front-Upper
Marble Bed Back -Lower
Marble Bed Front-Lower
Scrubber Bottoms (Scrubber)
Spray Water
Scrubber Liquid at Tank-Lower
Scrubber Liquid at Tank-Upper
Scrubber Bottom at Tank
Hold Tank Effluent
Clarifier Liquid
Ca++
23.97
25.80
26.66
26.63
19.60
23.87
21.99
23.26
19.40
18.28
23.85
24.57
25.85
24.13
19.22
23.01
22.10
22.10
18.91
18.45
Mg++
5.84
5.94
5.84
5.83
5.89
5.65
5.51
5.80
5.67
3.67
6.13
6.07
6.25
6.28
6.23
6.10
6.06
6.25
6.13
3.79
Na+
0.68
0.66
0.66
0.66
0.66
0.65
0.66
0.65
0.66
0.82
0.70
0.68
0.70
0.70
0.66
0.67
0.68
0.66
0.70
0.82
C0=
4.34
4.05
3.65
3.09
3.09
6.54
3.74
4.87
4.91
3.69
3.34
3.28
3.75
3.59
5.40
6.22
4.20
6.97
5.38
3.81
soj
26.62
27.43
23.74
22.13
21.53
23.36
24.02
23.72
21.41
20.64
26.48
26.79
24.48
23.14
21.96
23.10
22.76
24.49
21.85
20.85
S03
5.81
9.91
15.32
15.51
3.58
10.57
6.04
9.54
4.03
0.88
6.50
9.96
12.87
14.29
3.34
10.42
8.43
7.50
3.50
0.90
Cl-
1.34
1.35
1.36
1.37
1.36
1.36
1.33
1.35
1.36
1.20
1.35
1.36
1.33
1.37
1.37
1.46
1.26
1.39
1.36
1.21
Tot.
N
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.4
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
PH
5.81
5.40
5.36
5.29
6.02
5.50
5.79
5.49
6.04
6.80
5.68
5.45
5.59
5.31
6.10
5.50
5.70
5.54
6.03
7.00
Temp.
°C
45.5
48.5
46.0
50.5
50.5
51.5
51.5
51.3
51.2
35.5
46.0
45.8
43.0
50.7
50.00
50.9
50.9
50.5
50.4
35.5
-------
TABLE J-14. LIQUID CHEMICAL ANALYSIS AT STEADY STATE
EXPERIMENT 30R
7/14/72
Concentration in m moles/liter
Set
No.
1
1
1
1
1
1
1
1
1
1
2
2
2
2
2
2
2
2
2
2
Time
1052
1045
1038
1158
1105
1000
1005
1020
1031
1023
1210
1205
1200
1218
1227
1125
1130
1135
1150
1145
Sampling Point
Marble Bed Front-Upper
Marble Bed Back-Lower
Marble Bed Front-Lower
Scrubber Bottoms (Scrubber)
Spray Water
Scrubber Liquid at Tank-Lower*
Scrubber Liquid at Tank-Upper*
Scrubber Bottom at Tank*
Hold Tank Effluent
Clarifier Liquid
Marble Bed Front-Upper
Marble Bed Back-Lower
Marble Bed Front-Lower
Scrubber Bottoms (Scrubber)
Spray Water
Scrubber Liquid at Tank-Lower*
Scrubber Liquid at Tank-Upper*
Scrubber Bottom at Tank*
Hold Tank Effluent
Clarifier Liquid
Ca++
24.09
26.59
27.18
26.92
18.78
23.57
22.39
25.21
18.53
18.57
24.43
27.63
25.53
26.98
18.59
24.75
22.68
25.12
18.91
18.26
Mg++
6.62
6.92
6.53
6.89
6.86
6.67
6.46
6.71
6.45
4.60
6.78
7.03
6.95
7.09
6.97
6.89
6.77
6.84
6.92
4.70
Na+
0.55
0.60
0.60
0.52
0.55
0.58
0.57
0.58
0.56
0.85
0.50
0.48
0.48
0.45
0.42
0.47
0.45
0.45
0.47
0.90
C0=3
2.52
2.81
2.89
2.92
5.91
5.45
3.85
3.58
4.77
4.09
3.08
3.10
2.36
2.90
6.34
4.85
4.70
4.33
5.28
4.75
so;
26.44
26.27
24.24
23.95
22.34
23.61
23.90
25.24
22.06
20.47
25.36
26.61
21.14
23.55
21.59
24.27
23.66
24.39
21.91
20.38
S0=3
8.04
14.66
17.28
18.26
4.18
12.50
9.02
11.74
4.40
1.73
9.70
17.09
20.48
20.03
5.13
14.02
10.50
15.13
4.89
2.16
Cl-
1.31
1.37
1.36
1.34
1.37
1.34
1.31
1.37
1.33
1.27
1.34
1.34
1.34
1.35
1.35
1.35
1.34
1.36
1.36
1.25
Tot.
N
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
PH
5.60
5.09
5.50
5.11
5.90
5.36
5.58
5.30
5.91
6.68
5.94
5.02
5.08
5.09
5.84
5.30
5.49
5.25
5.80
6.60
Temp.
°C
47.0
49.3
43.0
49.6
50.0
50.7
50.5
50.0
50.0
36.0
47.0
49.9
47.80
50.00
50.00
50.9
50.5
50.3
50.00
37.0
-------
APPENDIX K
LIMESTONE TAIL-END SYSTEM
MATERIAL BALANCES
AND
RATE CALCULATIONS
-------
TABLE K-l. TOTAL SULFUR MATERIAL BALANCE
Experiment 25R
Marble Bed (Set #1 )
Entering Streams
Leaving Streams
Spray Water
Gas In
Gas Out*
Scrubber Liquid
Scrubber Bottom
Flow Rate
908 1/min
9,792 g mole/mln
10,497 g mole/m1n
681 l/m1n
227 l/m1n
Solid
Content
75.5 g/1
68.2 g/1
79.0 g/1
Total S
In Solid
(m mole/g)
4.36
5.01
4.61
Total S
In Liquid
(m mole/1 )
27.03
34.82
34.62
Total S
In Gas
(ppm)
2,329
956
Total S
(m mole/
m1n)
323,438
22,805
10.035
256,397
90,529
Total Sulfur In = 346,243 m mole/nln - Total Sulfur Out • 356,961 m mole/mln
Hold Tank (Set #1}
Entering Streams Scrubber Liquid
Scrubber Bottom
ClaHfler Liquid
Leaving Streams
Hold Tank Eff.
Total Sulfur In
681 1/nrin
227 l/m1n
38 l/m1n
71.3 g/1
77.4 g/1
4.74
4.42
30.09
27.50
16.82
946 1/min 77.9 g/1 4.28 21.67
335,237 m mole/mln - Total Sulfur Out = 335,907 m mole/mln
250,643
83,901
693
335,907
Hold Tank (Set #2)
Entering Streams
Scrubber Liquid
Scrubber Bottom
Clarlfler Liquid
738 1/min
208 1/min
38 1/min
Leaving Streams Hold Tank 984 l/m1n
Total Sulfur In = 342,401
70.4 g/1
72.9 g/1
4.85
4.67
30.96
28.85
17.00
71.4 g/1 4.73 21.67
- Total Sulfur Out = 344,298
•260,680
81,245
676
344,298
'Average of marble bed front and back
"From hold tank eff.
K-l
-------
TABLE K-2. TOTAL SULFUR MATERIAL BALANCE
Experiment 26R
Marble Bed (Set #1)
Entering Streams Spray Water
Gas In
Leaving Streams
Gas Out
Scrubber Liquid
Scrubber Bottom
Flow Rate
Solid
Content
Total S
In Solid
(m mole/g)
Total S
1n Liquid
(m mole/1)
Total S Total S
In Gas (m mole/
(ppm) mln)
Marble Bed (Set #2)
Entering Streams Spray Water
Leaving Streams
Gas In
Gas Out
Scrubber Liquid
Scrubber Bottom
889 1/min 65.7 3.82 23.96
9,940 g mole/mln
10,655 g mole/mln
674 l/m1n 72.9 4.38 43.10
219 l/m1n 63.4A 4.43 39.20
2,490
999
244,416
24,751
10,644
244,258
70,094
Total Sulfur In = 269,167 m mole/mln - Total Sulfur Out - 324,995 m moles/min
Hold Tank (Set #2)
Entering Streams
Scrubber Liquid
Scrubber Bottom
Clarifler Liquid
674 1/mln
219 l/m1n
57 1/min
62.4
63.4
Leaving Streams Hold Tank 946 1/min
Total Sulfur In = 283,844
4.54
4.38
34.5
35.4
19.0
64.3 4.12 24.0
- Total Sulfur Out = 273,314
214,194
68,567
1,083
273,314
AScrubber bottom at tank
K-2
-------
TABLE K-3. TOTAL SULFUR MATERIAL BALANCE
Experiment 27R
Marble Bed (Set #1)
Entering Streams Spray Water
Gas In
Flow Rate
Leaving Streams
Gas Out
Scrubber Liquid
Scrubber Bottom
568 1/min
10,100 g mole/rain
10,820 g mole/rain
511 1/min
57 1/min
Solid
Content
71.8
69.9
69.2
Total S
1n Solid
(m mole/g)
3.57
4.1
4.07
Total S
1n Liquid
(m mole/1}
23.04
Total Sulfur In = 181,947 - Total Sulfur Out = 198,626
Marble Bed (Set #2)
Entering Streams Spray Water
Gas In
Leaving Streams
Gas Out
Scrubber Liquid-
Scrubber ^Bottom
568 1/min 76.9 3.53
10,000 g mole/nin
10,730 g mole/mln
511 1/min 75.25 4.34
57 1/min 74.9 3.69
42.6
40.4
27.4*
42.15
40.5
Total S Total S
in Gas (m mole/
(pom) mln)
2,306
1,114
2,323
1,099
158,657
23,290
12,053
168,216
18,357
169,750
23,230
11,792
188,424
18.062
Total Sulfur In = 192,980 - Total Sulfur Out = 218,278
Hold Tank (Set #1}
Entering Streams
Leaving Streams
Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
511 l/m1n
57 1/min
45 1/min
67.0
59.4
4.02
4.53
Hold Tank Eff. 613 1/min 74.3 3.60
Total Sulfur In = 172,678 - Total Sulfur Out = 178,371
33.6
28.4
19.8
23.5
154.802
16,985
891
178,371
Hold Tank (Set 92)
Entering Streams
Leaving Streams
Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
511 1/min
57 1/min
45 1/min
68.0
74.8
3.91
3.72
33.4
28.8
19.5
Hold Tank 613 I/rain 73.8 3.49 27.1
Total Sulfur In = 171,312 - Total Sulfur Out = 174,498
152,932
17,502
878
174,498
*Hold Tank Eff.
K-3
-------
TABLE K-4. TOTAL SULFUR MATERIAL BALANCE
Experiment 28R
Total S
Solid In Solid
Marble Bed (Set #1)
Entering Streams
Leaving Streams
Marble Bed (Set #2)
Entering Streams
Leaving Streams
Hold Tank (Set #1)
Entering Streams
Leaving Streams
Hold Tank (Set #2)
Entering Streams
Spray Mater-
Lower Bed
Spray Water-
Upper Bed
Gas In
Gas Out
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Total Sulfur In =
Spray Water-
Lower Bed
Spray Water-
Upper Bed
Gas In
Gas Out
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Total Sulfur In =
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Clarifier Liquid
Hold Tank Eff.
Total Sulfur In =
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
ClaHfler Liquid
Flow Rate
613 1/min
583 1/mln
9,950 g mole/mi n
10,700 g mole/mi n
653 1/min
435 1/min
109 l/m1n
347,820 m moles/mi n
622 1/min
583 1/min
9,870 g mole/mi n
10,950 g mole/mi n
660 1/min
427 1/min
117 1/min
394,181 m moles/ml n
653 1/min
435 1/min
109 1/min
58 l/m1n
1,254 1/min
371,374 m moles/ml n
660 l/m1n
427 1/min
117 1/min
58 1/min
Content (m
64.00
64.00
65.85
66.10
69.30
- Total Sulfur
67.1
67.1
55.4
61.30
76.70
- Total Sulfur
60.4
60.7
66.0
61.7
- Total Sulfur
60.5
61.7
66.0
mole/g)
3.84
3.84
4.48
4.30
4.16
Out = 399
4.21
4.21
5.04
5.07
4.50
Out = 409
4.74
4.31
4.09
4.02
Out = 341
4.46
4.52
4.22
Total S Total S
In Liquid In Gas
(m mole/1) (ppm)
25.16
25.16
2,392
546
39.51
36.55
38.36
,425 m moles/ml n
24.71
24.71
2,432
543
38.94
37.32
38.21
,424 m moles/ml n
34.90
29.81
38.36
21.73
24.40
,632 m moles/min
32.41
33.28
38.21
21.25
Total S
(m mole/
mln)
166,074
157,946
23,800
5,842
218,440
139.539
35,604
191,079
179,098
24,004
5,946
209,983
148.643
44,853
209,740
126,770
33,604
1,260
341 ,632
199,478
133,294
37,057
1,232
Leaving Streams Hold Tank Eff.
1,263 1/min
64.7
4.06
24.54
362,761
Total Sulfur In = 371,061 m moles/min - Total Sulfur Out = 362,761 m moles/min
K-4
-------
TABLE K-5. TOTAL SULFUR MATERIAL BALANCE
Experiment 29R
Flow Rate
Solid
Total S
In Solid
Content (m mole/g)
Total
S Total S
in Liquid 1n Gas
(m mole/1 ) (ppm)
Marble Bed (Set #1)
Entering Streams
Leaving
Streams
Spray Water-Lower
Spray Water-Upper
Gas In
Gas Out
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Total Sulfur In •
927
852
10,050
10,750
794
643
341
747,346
1/min
1/mln
g moles/mi n
g moles/mi n
1/min
1/min
1/min
m moles/mi n
84.1
84.1
70.2
113.1
70.9
- Total
4.53
4.53
5.32
5.32
4.80
Sulfur Out =
25.
25.
38.
32.
37.
11
11
2,456
297
20
43
64
Total S
(m mole/
mln)
376
345
24
3
326
407
128
9
9
t
9
•
9
>
439
983
924
193
861
740
884
866,678 m moles/ml n
Marble Bed (Set #2)
Entering Streams
Leaving
Hold Tank
Entering
Leaving
Hold Tank
Entering
Streams
(Set #1 )
Streams
Streams
(Set #2)
Streams
Leaving Streams
Spray Water-Lower
Spray Water-Upper
Gas In
Gas Out
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Total Sulfur In =
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Clarifier Liquid
Hold Tank Eff.
Total Sulfur In =
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Clarifier Liquid
Hold Tank Eff.
Total Sulfur In =
927
852
10.250
10,980
757
680
341
845.583
794
643
341
57
1,836
669.529
757
680
341
57
1,836
761,187
l/m1n
1/min
g moles/ml n
g moles/ml n
l/m1n
1/min
1/min
m moles/mi n
1/min
1/min
1/min
1/min
1/min
m n»les/m1n
1/min
1/min
1/min
1/min
l/m1n
m moles/ml n
87.2
87.2
79.8
123.4
91.7
- Total
72.1
73.2
75.9
100.5
- Total
72.1
81.9
102.7
88.5
- Total
5.00
5.00
5.36
5.60
5.07
Sulfur Out =
4.75
4.69
4.56
4.51
Sulfur Out =
5.04
4.75
4.65
6.61
Sulfur Out =
25.
25.
37.
32.
37.
1.018.544
33.
30.
33.
21.
25.
40
40
2,415
280
05
98
43
m moles/m1n
93
06
26
52
44
427
393
24
3
351
492
171
298
240
129
1
878
•
»
9
9
9
•
9
9
9
9
9
9
717
112
754
074
836
333
301
865
075
363
226
884
878,884 m moles/ml n
33.
31.
31.
21.
25.
52
19
99
75
35
300
285
173
1
795
9
9
9
9
t
456
746
745
240
603
795,603 m moles/ml n
K-5
-------
TABLE K-6. RATE CALCULATIONS
Experiment 25R
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate In Llq. (in mole/1) 1n Gas (ppm) Cm irole/nrin)
Marble Bed (Set #1)
1. CaS03 1/2 H20
Entering Streams Flue Gas In 9,792 g nole/nrin 2,329 22,805
Scrubber Spray 908 1/min 8.51 7,727
Leaving Streams Flue Gas Out 10,497 g mole/min 956 10,035
Scrubber Liquid 681 1/min 21.0* 14,301
Scrubber Bottom 227 1/nin 9.95 2,259
Rate of CaS03 1/2 HgO - S02 In - S02 Out - Oxld. Rate
• 30,532 - 26,595 - .25 (22,805 - 10,035)
= 30,532 - 26,595 - 3,192
= 745 m mole/mln
2. CaS04
Entering Streams
Leaving Streams
Scrubber Spray
Scrubber Liquid
Scrubber Bottom
908 1/min
681 1/min
227 1/min
18.5
13.82*
24.67
16,816
9,411
5,600
Rate of CaS04 2 H20 = ES04 In - ES04 Out + Oxid. Rate
= 16,816 - 15,011 + 3,192
= 4,997 m mole/rain
3. CaCO, Dissolution
Entering Streams Scrubber Spray 908 1/min 24.03 21,819
Leaving Streams Scrubber Liquid 681 1/min 25.26 17,202
Scrubber Bottom 227 1/min 24.35 5,527
Rate of CaC03 Dissolution = zCa Out - zCa In + zCa Free. Rates
= 21,819 - 22,729 + 4,997 + 745 .
= 4,832 m mole/m1n
*Value from marble bed back only
K-6
-------
TABLE K-6. RATE CALCULATIONS (Continued)
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate 1n L1q. (m mole/1) In Gas (ppm) (m mole/mln)
System Remainder
(Hold Tank, Surge Tanks and Thickener)
1. CaS03 1/2 H20
Entering Streams Scrubber Liquid 681 1/mln 21.00 14,301
Scrubber Bottom 227 1/mln 9.95 2.258
Clarlfler Liquid 38 l/m1n 4.02 153
Leaving Streams Hold Tank Eff. 946 l/m1n 6.57 6,215
Rate of CaS03 1/2 H20 = S02 In - S02 Out
= 16,712 - 6,215
= 10,497 m mole/mln
2. CaS04 2 H20
Entering Streams Scrubber Liquid 681 1/min 13.82 9,411
Scrubber Bottom 227 l/m1n 24.67 5,620
Clarifler Liquid 38 1/min 12.8 486
Leaving Streams Hold Tank Eff. 946 1/min 15.1 14,284
Rate of CaS04 2 H20 = ES04 In - sS04 Out
= 15,517 - 14,284
= 1,233 m mole/mln
3. CaC03 Dissolution
Entering Streams Scrubber Liquid 681 1/mln 25.26 17,202
Scrubber Bottom 227 1/mln 24.35 5,527
Clarlfler Liquid 38 1/min 15.83 601
Leaving Streams Hold Tank Eff. 958 1/min 17.94 17,186
Rate of CaCO, = ECa Out - ECa In + ECa Formation Rates
= 17,186 > 23,330 + 10,497 + 1,233
= 5,586 m mole/mln
K-7
-------
TABLE K-6. RATE CALCULATIONS (Continued)
System Remainder
(Hold Tank, Surge Tanks and Thickener)
1. CaS03 1/2 H20
Stream Flow Rate
Species Cone.
In Llg. (m mole/1)
Species Cone. Species Flow Rate
In Gas (ppm) (in mole/rain)
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
Rate of CaS0 1/2
2. CaS0
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
Rate of CaS0 2
3. CaCO,
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
i; Leaving Streams Hold Tank Eff.
738 1/min 21.0
208 1/min 19.9
38 1/min 6.98
984 1/min 9.62
gO = S02 In - S02 Out
= 19.343 - 9,216
= 10,127 m mole/mi n
738 1/min 9.99
208 1/min 8.95
38 1/min 10.02
984 1/min 12.05
= ES04 In - ZS04 Out
= 9,343 - 11,544
= -2,201 m mole/m1n
738 1/min 22.0
208 1/min 21.32
38 1/min 15.98
984 1/min 17.80
Rate of CaC03 = ECa In - zCa Out + zCa Formation Rate
= 17,052 - 20,697 + 10,127 - 2,201
= 4,281 m moles/ml n
14,700
4,378
265
9,216
6,993
1,969
381
11,544
15,400
4,690
607
17,052
K-8
-------
TABLE K-7. RATE CALCULATIONS
Experiment 26R
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate In L1q.(m mole/1) In Gas (ppffl) fm mole/rain)
Marble Bed (Set #1)
1. CaS03 1/2 H20
Entering Streams Inlet Flue Gas 9,900 g mole/mln 2,519 24,938
Scrubber Spray 927 1/mln 3.73 3,457
Leaving Streams Outlet Flue Gas 10,613 g mole/mln 1,023 10,857
Scrubber Liquid* 681 1/mln 18.8 12,803
Scrubber Bottom 246 1/mln 17.0 4,182
Rate of CaS03 1/2 H20 = S02 In - S02 Out - Ox1d. Rate
« 28,395 - 27.842 - .261 (14,081)
= 28,395 - 27,842 - 3,675
= 3,122 m mole/ml n
2. CaS04 2 H20
Entering Streams Scrubber Spray 927 l/m1n 21.4 19.837
Leaving Streams Scrubber Liquid* 681 1/mln 23.3 15,867
Scrubber Bottom 246 1/mln 19.3 4,747
Rate of CaS04 2 H20 = IS04 In - ES04 Out + Oxidation Rate
= 19,837 - 20,614 + 3,675
= 2,898 m mole/ml n
3. CaCO, Dissolution
Entering Streams Scrubber Spray 927 l/m1n 21.5 19,930
Leaving Streams Scrubber Liquid* 681 1/mln 29.6 20,158
Scrubber Bottom 246 l/m1n 27.5 6,765
Rate of CaC03 Dissolution = iCa Out - iCa In t ECa Free. Rates
= 26,923 - 19,930 + (-3.122 + 2.898)
• 6,769 m mole/mln
*Ave. of marble bed front and back
K-9
-------
System Remainder
(Hold Tank, Surge Tanks and Thickener)
1 . CaS03 1/2 H20
TABLE K-7. RATE CALCULATIONS (Continued)
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate In Liq. (m mole/1) In Gas (ppm) (m mole/mln)
Entering Streams Scrubber Liquid 681 1/min 18.8 12,802
Scrubber Bottom 246 1/min 17.0 4,182
Clarifier Liquid 57 1/min .74 42
Leaving Streams Hold Tank Eff. 984 1/min 3.31 3,257
Rate of CaS03 1/2 H20 = S02 (In) - S02 (Out)
= 17,026 - 3,257
- 13,769 m mole/mi n
2. CaS04 2 H20
Entering Streams Scrubber Liquid 681 1/min 23.3 15,867
Scrubber Bottom 246 1/min 19.3 4,748
Clarifier Liquid 57 1/min 18.0 1,026
Leaving Streams Hold Tank Eff. 984 1/min 20.4 20,073
Rate of CaS04 2 H20 = iS04 In - zS04 Out
= 21 ,641 - 20,073
= 1,568 n mole/mi n
3. CaCO, Dissolution
Entering Streams Scrubber Liquid 681 1/min 29.6 20,157
Scrubber Bottom 246 1/min 27.5 6,765
Clarifier Liquid 57 1/min 17.5 998
Leaving Streams Hold Tank Eff. 984 1/min 19.7 19,384
Rate of CaCO, Dissolution = ECa Out - zCa In + ECa Pres. Rates
= 19,384 - 27,920 + (13,769 + 1,568)
= 6,801 m mole/mln
K-10
-------
TABLE K-7. RATE CALCULATIONS (Continued)
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate 1n Llq. (m mole/1) In Gas (ppm) (m mole/m1n)
Marble Bed (Set #2)
1. CaS03 1/2 H,0
Entering Streams
Leaving Streams
Inlet Flue Gas
Scrubber Spray
Scrubber Liquid*
Scrubber Bottom
Outlet Flue Gas
9,940 1/min
889 1/mln
674 1/mln
219 1/mln
10,655
3.36+
19.05
15.5
2,490 24,750
2,987
12,839
3,394
999 10,644
Rate of CaS03 1/2 HgO = S02 In - S02 Out - Ox1d. Rate
= 27,737 - 26,877 - .238 (24,750 - 12,839)
= 29,584 - 27,896 - 2,834
= - 1,146 in mole/mln
2. CaS04
Entering Streams Scrubber Spray 889 1/min 20.6+ 18,313
Leaving Streams Scrubber Liquid 674 1/min 24.05 16,209
Scrubber Bottom 219 1/mln 23.8 5,212
Rate of CaS04 2 H20 = £S04 In - zS04 Out + 0x1 d. Rate
= 18,313 - 21,421 + 2,834
= -274 m mole/mi n
3. CaC03 Dissolution
Entering Streams Scrubber Spray 889 1/min 22.5 20,002
Leaving Streams Scrubber Liquid 674 1/mln 30.75 20,725
Scrubber Bottom 219 1/min 27.9 6,110
Rate of CaCO, Dissolution = zCa Out - zCa In + ECa Free. Rates
= 26,835 - 20,002 + (-274 + - 1,146)
= 5,413 m mole/min
•(•Value taken from hold tank off
K-ll
-------
TABLE K-7. RATE CALCULATIONS (Continued)
Stream Flow Rate
Species Cone.
In L1g. (m mole/1)
System Remainder
(Hold Tank, Surge Tank and Thickener)
1. CaS0 1/2 H0
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
Rate of CaSO, 1/2
2. CaSO,
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
Rate of CaS04 2
3. CaC03 Dissolution
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
674 1/min
219 1/min
57 1/min
946 1/min
20 = S02 In - S02 Out
= 16,276 - 3,178
= 13,098 m mole/min
674 1/min
219 1/min
57 1/min
946 1/min
= £S04 In - zS04 Out
= 22,458 - 19,487
= 3,000 m mole/mi n
674 1/min
219 1/min
57 1/min
946 1/min
19.05
15.5
.76
3.36
24.05
23.8
18.2
20.6
30.75
27.9
17.7
20.5
Species Cone.
1n Gas (ppm)
Rate of CaCO, Dissolution
= cCa Out - zCa In + zCa Prec. Rates
= 19,393 - 27,844 + (13,098 + 3,000)
= 7,647 m mole/min
Species Flow Rate
(m mole/ml n)
12,839
3,394
43
3,178
16,209
5,212
1,037
19,487
20,725
6,110
1,009
19,393
K-12
-------
TABLE K-8. RATE CALCULATIONS
Experiment 27R
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate In L1q. (m mole/1) in Gas (ppm) (m mole/mln)
Marble Bed (Set #1)
1. CaS03 1/2 H20
Entering Streams Flue Gas In 10,100 g mole/m1n 2,306 23,290
Scrubber Spray 568 1/mln 3.04 1,727
Leaving Streams Flue Gas Out 10,820 g mole/m1n 1,114 12,053
Scrubber Liquid* 511 1/mln 22.60 11,548
Scrubber Bottom 57 1/mln 23.8 1,357
Rate of CaS03 1/2 H20 = S02 In - S02 Out - Oxid. Rate
= 25,017 - 24,958 - 0.269 (23,290 - 12,053)
= 25.017 - 24,958 - 2,966
= -2,907 m mole/mln
2. CaS04 2 H20
Entering Streams
Leaving Streams
Scrubber Spray
Scrubber Liquid
Scrubber Bottom
568 1/min
511 1/min
57 1/min
20.0 11,360
20.0 10,220
16.6 946
Rate of CaS04 2 H20 = £S04 In - IS04 Out + 0x1d. Rate
= 11,360 - 11,166 + 2,966
= 3,160 m mole/mi n
3. CaC03 Dissolution
Entering Streams Scrubber Spray 568 1/mln 19.1 10,849
Leaving Streams Scrubber Liquid* 511 1/mln 27.7 14,155
Scrubber Bottom 57 1/mln 26.9 1,533
Rate of CaCO, Dissolution = zCa Out - zCa In + zCa Free. Rates
= 15,688 - 10.849 + (3,160 - 2,907)
= 5,092 m mole/mln
*Taken from marble bed back
K-13
-------
TABLE K-8. RATE CALCULATIONS (Continued)
Stream Flow Rate
Species Cone.
In Llg. fm mole/1)
Species Cone.
In Gas (ppm)
Species Flow Rate
(m mole/mln)
System Remainder
(Hold Tank, Surge Tanks and Thickener)
1. CaS03 1/2 H20
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
Leaving Streams
511 1/mln
57 1/mln
45 1/min
613 1/min
Hold Tank Eff.
Rate of CaS03 1/2 H20 = S02 In - S02 Out
= 12,904 - 1,625
= 11,279 m mole/min
2. CaSO.
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
Rate of CaSO.
2 H20
3. CaCO,
Entering Stream
Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
511 1/min
57 1/min
45 1/min
613 1/min
ESQ. In - HSO. Out
4 4
= 12,008 - 12,750
= -742 m mole/min
511 1/min
57 1/min
45 1/min
613 1/min
22.60
23.8
1.08
2.65
20.0
16.6
18.7
20.8
27.7
26.9
17.90
19.40
Rate of CaC03 = ECa In - ECa Out + iCa Formation Rates
= 11,892 - 16,492 + 11,279 - 742
= 5,937 m mole/min
11,548
1,356
48
1,625
10,220
946
842
12,750
14,154
1,533
805
11,892
K-14
-------
TABLE K-8. RATE CALCULATIONS (Continued)
Stream Flow Rate
Species Cone.
In Llg. (m mole/1)
Species Cone.
In Gas (ppm)
Marble Bed (Set 2)
1. CaSO,
1/2 H20
Entering Streams Inlet Flue Gas
Scrubber Spray
Leaving Streams Outlet Flue Gas
Scrubber Liquid
Scrubber Bottom
10,000 g mole/mln
568 1/mln
10,730 g mole/mln
511 l/m1n
57 1/min
3.04°
17.9
16.2
2.323
1,099
Rate of CaS03 1/2 H20 = S02 In - S02 Out - 0x1d. Rate
= 24,957 - 22,723 - (23,230 - 11,792) .249
= 24,957 - 22,723 - 2,848
- 247 m mole/mln
2. CaSO,
Entering Streams Scrubber Spray
Leaving Streams Scrubber Liquid
Scrubber Bottom
568 1/min
511 1/min
57 l/m1n
20.0
24.25
24.3
Rate of CaS04 2 H20 = sS04 In - IS04 Out + Ox1d. Rate
= 11,814 - 13,777 + 2,848
= 885 m mole/mi n
3. CaC03 Dissolution
Entering Streams Scrubber Spray 568 1/min
Leaving Streams Scrubber Liquid^ 511 l/m1n
Scrubber Bottom 57 l/m1n
19.6
30.0
28.5
Rate of CaC03 Dissolution = ECa Out - JCa In + zCa Prec. Rate
= 16,955 - 11,133 + C247 +885)
= 6,954 m mole/mln
"Values taken from SS Set 1
^Average of marble bed front and back
Species Flow Rate
(m mole/mi n)
23,230
1,727
11,792
9,147
923
11,814
12,392
1,385
11.133
15,330
1,625
K-15
-------
TABLE K-8. RATE CALCULATIONS (Continued)
Stream Flow Rate
Species Cone.
In L1q. (m mole/1)
Species Cone.
In Gas (ppm)
Species Flow Rate
(m mole/ml n)
System Remainder
(Hold Tank, Surge Tanks and Thickener)
1. CaS03 1/2 H20
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
Rate of CaS0 1/2
2. CaS0
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
Rate of CaS0 2
3. CaCO, Dissolution
Entering Streams Scrubber Liquid
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
511 1/nin
57 l/m1n
45 1/min
613 1/min
gO = S0.2 In - SOg Out
= 10,119 - 1,864
= 8,255 in mole/mi n
511 1/min
57 1/min
45 1/min
613 1/min
= ZS04 In - zS04 Out
= 14,604 - 12,750
= 1,854 m mole/mi n
511 1/min
57 1/min
45 1/min
613 1/min
17.9
16.2
1.12
3.04°
24.25
24.3
18.4
20.8"
30.00
28.5
17.6
24.8
Rate of CaC03 Dissolution
= zCa Out - zCa In + Ca Free. Rates
= 15,202 - 17,746 + (8,255 + 1,854)
= 7,565 m mole/min
9,146
923
50
1,864
12,391
1,385
828
12,750
15,330
1,624
792
15,202
K-16
-------
TABLE K-9. RATE CALCULATIONS
Experiment 28R
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate 1h L1q. (m mole/1) In Gas (ppm) (m mole/mln)
Marble Bed (Set #1)
CaS03 1/2 H20
Entering Streams
Leaving Streams
Gas Inlet
Spray Water-Lower
Spray Water-Upper
Gas Outlet
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
9,950 g mole/mi n
613 1/min
583 1/min
10,700 g mole/mi n
653 1/min
435 1/min
109 1/min
3.98
3.98
16.13
11.40
16.14
2.392 23,800
2,439
2,320
546 5,840
10,532
4,959
1,759
Rate of CaS03 1/2 H20 Formation = zS03(liq.) In - ES03(l1q.) Out - Oxid. Rate
= 28,559 - 23,090 - 0.24 (17,002)
= 1,319 m mole/mi n
2. CaS04 2 H20
Entering Streams Spray Water-Lower 613 1/min 21.8 13,363
Spray Water-Upper 583 1/min 21.8 12,709
Leaving Streams Scrubber Liquid-
Lower 653 1/min 23.63 15,430
Scrubber Liquid-
Upper 435 1/min 25.15 '10,940
Scrubber Bottom 109 1/min 22.22 2,422
Rate of CaS04 2 HgO Formation = ES04(l1q.) In - zS04(Hq.) Out + Oxid. Rate
= 26,072 - 28,792 + 4,150
= 1,430 m mole/mi n
3. CaC03 Dissolution
Entering Streams Spray Water-Lower 613 1/min 21.80 13,363
Spray Water-Upper 583 l/m1n 21.80 12,709
Leaving Streams Scrubber Liquid-
Lower 653 1/min 27.64 18,048
Scrubber Liquid-
Upper 435 1/min 27.22 11,841
Scrubber Bottom 109 1/min 26.95 2,937
Rate of CaC03 Dissolution = ECa(liq.) Out - ECa(1fq.) In + ECa Formation Rates
= 32,826 - 26,072 + 1,134 + 1,615
= 9,503 m mole/min
K-17
-------
TABLE K-9. RATE CALCULATIONS (Continued)
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate In Liq. (m mole/1] In Gas (ppm) (m mole/min)
System Remainder
(Hold Tank, Surge Tanks and Thickener)
I. CaS03 1/2 H20
Entering Streams Scrubber Liquid-
Lower 653 1/nrin 16.13 10,532
Scrubber Liquid-
Upper 435 I/rain 11.40 4,959
Scrubber Bottom 109 1 /rain 16.14 1,759
Clarifier Liquid 58 1/min 2.12 123
Leaving Stream Hold Tank Eff. 1,254 1/min 3.48 4,364
Rate of CaS03 1/2 HgO Formation = zS03(11q.) In - ES03(Hq.) Out
= 17,373 - 4,364
= 13,009 m mole/min
2. CaS04 2 H20
Entering Streams Scrubber Liquid-
Lower 653 1/min 23.63 15,430
Scrubber Liquid-
Upper 435 1/min 25.15 10,940
Scrubber Bottom 109 1/min 22.22 2,421
Clarifier Liquid 58 1/min 19.61 1,137
Leaving Stream Hold Tank Eff. 1,254 l/ra1n 20.92 26,233
Rate of CaS04 2 H20 Formation = iS04(liq.) In - lS04(liq.) Out
= 29,928 - 26,233
= 3,695 m mole/min
3. CaC03
Entering Streams Scrubber Liquid-
Lower 653 1/min 27.64 18,048
Scrubber Liquid-
Upper 435 1/nrin 27.22 11,840
Scrubber Bottom 109 I/rain 26.95 2,937
Clarifier Liquid 58 l/ro1n 19.68 1,141
Leaving Streams Hold Tank Eff. 1,254 1/min 20.06 25,155
Rate of CaCO, Dissolution = zCa(liq.) Out - zCa(liq.) In + z:Ca Formation
= 25,155 - 33,966 + 13,009 + 3,695
= 7,893 m mole/m1n
K-18
-------
TABLE K-9,. RATE CALCULATIONS (Continued)
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate In Llq. (m mole/1) In Gas (ppm) (m mole/mln)
Marble Bed (Set 2)
1. CaS03 1/2 H20
Entering Streams
Leaving Streams
Gas Inlet
Spray Water-Lower
Spray Mater-Upper
Gas Outlet
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
9,870 g mole/ml n
622 1/min
583 1/min
10,950 g mole/ml n
660 l/m1n
427 1/min
117 1/min
3.06
3.06
15.78
11.25
15.68
2,432 24,003
1,903
1.784
543 5,946
10,415
Rate of CaS03 1/2 HgO Formation = zS03(liq.) In - cS03(Hq.) Out - Oxid, Rate
= 27.690 - 23.000 - 0.259 (24,003-5,946)
= 10 m mole/rain
2. CaS04
Entering Streams
Leaving Streams
Spray Water-Lower
Spray Water-Upper
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
622 l/m1n
583 1/min
660 1/min
427 l/m1n
117 1/min
21.65
21.65
23.15
26.07
22.53
4,804
1,835
13,466
12,622
15,279
11,132
2,636-
Rate of CaS04 2 H20 Formation = zS03(liq.) In - zS03(liq.) Out + 0x1d. Rate
= 26.088 - 29,047 + 4.680
= 1,721 m mole/ml n
3. CaCO, Dissolution
Entering Streams Spray Water-Lower 622 1/min 20.03 12,459
Spray Water-Upper 583 1/min 20.03 11,677
Leaving Streams Scrubber Liquid-
Lower 660 1/min 27.29 18,011
Scrubber Liquid-
Upper 427 1/min 26.90 11,486
Scrubber Bottom 117 1/min 25.73 3,010
Rate of CaC03 Dissolution = sCa(11q.) Out - zCa(liq.) In + zCa Formation Rates
= 32.507 - 24.136 + 50 + 1,681
= 10,102 m mole/mi n
K-19
-------
TABLE K-9. RATE CALCULATIONS (Continued)
Stream Flow Rate
Species Cone.
1n Llq. (m mole/11
Species Cone.
1n Gas (ppm)
System Remainder
(Hold Tank, Surge Tanks and Thickener)
1. CaS03 ,1/2 H20
Entering Streams Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
660 1/min
427 1/min
117 1/min
58 1/min
1,263 1/min
15.78
11.25
15.68
1.21
3.27
Rate of CaS03 1/2 H20 Formation = zS03(liq.) In - £S03(liq.} Out
= 17,121 - 4,130
= 12,991 m mole/min
2. CaSO,
2 H20
Entering Streams Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
Rate of CaSO. 2
660 1/min
427 1/min
117 1/min
58 1/min
1,263 1/min
23.15
26.07
22.53
20.04
21.27
Formation = SSO^liq.) In - zS04 (llq.) Out
= 30,208 - 26,864
= 3,346 m mole/min
Species Flow Rate
(m mole/min)
10,414
4,803
1,834
70
4,130
15,279
11,131
2,636
1,162
26,864
3. CaCO,
Entering Streams Scrubber Liquid-
Lower 660 1/min
Scrubber Liquid-
Upper 427 1/min
Scrubber Bottom 117 1/min
Clarifier Liquid 58 l/m1n
Leaving Streams Hold Tank Eff.
27.29
26.90
25.73
18.85
1,263 1/min 19.80
Rate of CaCOj Dissolution = zCa(liq.) Out - zCa(liq.) In + zCa Formation
= 25,007 - 33,600 + 12,991 + 3,346
= 7,744 m mole/min
18,011
11,486
3,010
1,093
25,007
K-20
-------
TABLE K-10. RATE CALCULATIONS
Experiment 29R
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate In L1q. (m mole/1) in Gas (ppm) (m mole/mtn)
Marble Bed (Set #1)
1. CaS03 1/2 H20
Entering Streams Gas Inlet 10,050 g mole/min 2,456 24,682
Spray Mater-Lower 927 1/min 3.58 3,318
Spray Water-Upper 852 I/min 3.58 3,050
Leaving Streams Gas Outlet 10,750 g mole/mln 297 3,193
Scrubber Liquid-
Lower 794 1/min 12.61 10,012
Scrubber Liquid-
Upper 643 1/min 5.81 3,736
Scrubber Bottom 341 1/min 15.51 5,289
Rate of CaS03 1/2 H20 Formation = lS03(liq.) In - zS03(11q.) Out - Oxid. Rate
= 31,050 - 22,230 - 0.279 (24,682 - 3,193)
- 2,825 m mole/mln
2. CaS04 2 H20
Entering Streams Spray Water-Lower 927 1/min 21.53 19,958
Spray Hater-Upper 852 1/min 21.53 18,344
Leaving Streams Scrubber Liquid-
Lower 794 1/min 25.58 20.310
Scrubber liquid-
Upper 643 1/min 26.62 17,117
Scrubber Bottom 341 1/min 22.13 7,546
Rate of Ca S04 2 HjO Formation = £S04(liq.) In - ES04(l1q.) Out t Oxid. Rate
= 38,302 - 44,973 + 5,995
= -676 m mole/mln
3. CaC03 Dissolution
Entering Streams Spray Mater-Lower 927 1/min 19.60 18,169
Spray Mater-Upper 852 1/min 19.60 16,699
Leaving Streams Scrubber Liquid-
Lower 794 1/min 26.23 20,827
Scrubber Liquid-
Upper 643 1/min 23.97 15,412
Scrubber Bottom 341 1/min 26.63 9,081
Rate of CaC03 Dissolution = ECa(liq.) Out - lCa(liq.) In + ECa Formation Rates
= 45,320 - 34,868 + 2,825 - 676
K-21
-------
TABLE K-10, RATE CALCULATIONS (Continued)
Stream Flow Rate
Species Cone.
in Llg. (m mole/1)
Species Cone.
1n Gas (ppm)
System Remainder
(Hold Tank, Surge Tanks and Thickener)
1. CaS03 1/2 H20
Entering Streams Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
794 1/min
643 1/min
341 I/rain
57 1/min
1,836 1/min
12.61
5.81
15.51
0.88
4.03
Rate of CaS03 1/2 HgO Formation = £S03(Hq.) In - ESOjfUq.) Out
= 19,086 - 7,399
= 11,687 m mole/min
2. CaSO,
Entering Streams Scrubber Liquid-
Lower 794 1/min
Scrubber Liquid-
Upper 643 1/min
Scrubber Bottom 341 l/m1n
Clarifier Liquid 57 1/min
Leaving Streams Hold Tank Eff. 1,836 1/min
25.58
26.62
22.13
20.64
21.41
Rate of CaS04 2 H20 Formation = iS04(liq.) In - lS04(liq.) Out
- 46,148 - 39,309
= 6,839 m mole/m1n
3. CaCO
Entering Streams Scrubber Liquid-
Lower 794 1/min
Scrubber Liquid-
Upper 643 1/min
Scrubber Bottom 341 l/m1n
Clarifier Liquid 57 1/min
26.23
23.97
26.63
18.28
Leaving Streams Hold Tank Eff.
Species Flow Rate
(m mole/mln)
Rate of CaC03 Dissolution
1,836 1/min 19.40
= zCa{liq.) Out - £Ca(l1q.) In + Eta Formation Rates
= 35,618 - 46,362 + 11,687 + 6,839
= 7,782 m mole/mln
10,012
3,735
5,289
50
7,399
20,310
17,116
7,546
1,176
39,309
20,826
15,413
9,081
1,042
35,618
K-22
-------
TABLE K-10. RATE CALCULATIONS (Continued)
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate in Llq. fro mole/I) 1n Gas (ppm) (m mole/rain)
Marble Bed (Set 2)
1. CaS03 1/2 H20
Entering Streams Gas Inlet .10,250 g mole/mln 2,415 24,754
Spray Uater-Lower 927 1/min 3.34 3,096
Spray Water-Upper 852 1/min 3.34 2,846
Leaving Streams Gas Outlet 10,980 g mole/min 280 3,704
Scrubber Liquid-
Lower 757 1/min 11.42 8,645
Scrubber Liquid-
Upper 680 1/min 6.50 4,420
Scrubber Bottom 341 l/m1n 14.29 4,873
Rate of CaS03 1/2 HgO Formation = lS03(liq.] In - £S03(Hq.) Out - Oxld. Rate
= 30,696 - 21,642 - 0.284 (24,754-3,704)
= 30,696 - 21.642 - 5,976
= 3,076 m mole/mln
2. CaS04 2 H20
20,356
18,710
19,409
18,006
7,891
Rate of CaS04 2 H20 Formation = ES04(11q.) In - £S04(11q.) Out + Qx1d. Rate
= 39,066 - 45,306 + 5,978
= -262 m mole/mln
3. CaCO, Dissolution
Entering Streams Spray Uater-Lower 927 1/min 19.22 17,817
Spray Mater-Upper 852 1/min 19.22 16,375
Leaving Streams Scrubber Liquid-
Lower 757 1/min 25.21 19,084
Scrubber Liquid-
Upper 680 l/m1n 23.85 16,218
Scrubber Bottom 341 1/min 24.13 8,228
Rate of CaC03 Dissolution = ECa(Hq.) Out - iCa(11q.] In + ECa Formation Rate
= 43,530 - 34,192 + 3,076 - 262
= 12,152 m mole/mln
Entering Streams
Leaving Streams
Spray Mater-Lower
Spray Water-Upper
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
927 1/min
852 1/min
757 1/nrin
680 1/min
341 1/min
21.96
21.96
25.64
26.48
23.14
R-23
-------
TABLE K-10. RATE CALCULATIONS (Continued)
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate in Llg. (m mole/1) In Gas (ppm) On mole/min)
System Remainder
(Hold Tank, Surge Tanks, and Thickener)
1. CaS03 1/2 H20
Entering Streams Scrubber Liquid-
Lower 757 1/min
Scrubber Liquid-
Upper 680 l/m1n
Scrubber Bottom 341 1/min
Clarifier Liquid 57 l/m1n
Leaving Streams Hold Tank Eff. 1,836 1/min
11.42
6.50
14.29
0.90
3.50
Rate of CaS03 1/2 H20 Formation = ES03(liq.) In - sS03(liq.) Out
= 17,988 - 6,426
= 11,562 m mole/mi n
2. CaS0
Entering Streams Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
Rate of CaS0 2
3. CaCO, Dissolution
Entering Streams Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
757 1/min 25.64
680 1/min 26.48
341 1/min 23.14
57 1/min 20.85
1,836 1/min 21.85
gO = ES04(liq.) In - ES04(liq.) Out
= 46,489 - 40,116
= 6,373 m mole/m1n
757 1/min
680 l/m1n
341 1/min
57 1/min
1,836 1/min
25.21
23.85
24.13
18.45
18.91
Rate of CaCO, Dissolution = zCa(liq.) Out - £Ca(l1q.) In + ECa Formation Rate
= 34,718 - 43,529 + 11,562 + 6,373
= 9,124 m moles/min
8,644
4,420
4,873
51
6,426
19,409
18,006
7,890
1,188
40,116
19,083
16,218
8,228
1,051
34,718
K-24
-------
TABLE K-ll. RATE CALCULATIONS
Experiment 30R
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate In L1q. (m mole/1) 1n Gas (ppm) (m mole/mln)
Marble Bed (Set #1)
1. CaS03 1/2 H20
Entering Streams Inlet Flue Gas 10,116 g mole/mln 2,300 23,267
Scrubber Spray-
Lower 946 1/mln 4.18 3,954
Scrubber Spray-
Upper 889 l/m1n 4.18 3,716
Leaving Streams Outlet Flue Gas 10,845 g mole/m1n 334 3,624
Scrubber Liquid*- „ „„
Lower 814 1/mln 15.97 13,000
Scrubber Liquid*-
Upper 681 1/mln 8.04 5,499
Scrubber Bottom 341 1/mln 18.26 6,227
Rate of CaS03 1/2 H20 = ES03 (llq.) IN - iSOg (llq.) OUT - Oxidation Rate
Precipitation = 30,937 - 28,350 - 0.3 (19,643)
= -3,306 m mole/mln
2. CaS04 2 H20
Entering Streams Scrubber Spray-
Lower 946 1/mln 22.34 21,134
Scrubber Spray-
Upper 889 1/min 22.34 19,860
Leaving Streams Scrubber Liquld*-
Lower 814 1/mln 25.25 20,553
Scrubber Liquld*-
Upper 681 1/mln 26.44 18,006
Scrubber Bottom 341 l/m1n 23.95 8,167
Rate of CaS04 2 HgO = ES04 (llq.) IN - ZS03 (llq.) OUT + Oxidation Rate
Precipitation = 40,994 - 46,726 + 5,893
= 161 m mole/mln
3. CaCO, Dissolution
Entering Streams Scrubber Spray-
Lower 946 l/m1n 18.78 17,766
Scrubber Spray-
Upper 889 1/mln 18.78 16,695
Leaving Streams Scrubber Liquid*- nan
Lower 814 l/m1n 26.88 21,880
Scrubber Liquld*-
Upper 681 1/min 24.09 16,405
Scrubber Bottom 341 l/m1n 26.92 9,180
Rate of CaC03 Dissolution - sCa (I1q.) OUT - ECa (llq.) IN + ZCa Formation Rates
= 47,465 - 34,461 - 3,145
= 9,861 m moles/mln
"Average of Marble Bed Front and Back
K-25
-------
TABLE K-ll. RATE CALCULATIONS (Continued)
Species Cone. Species Cone. Species Flow Rate
Stream Flow Rate 1n Llq. (m mole/1) in Gas (ppm) Cm mole/min)
System Remainder
(Hold Tank, Surge Tanks, and Thickener)
1. CaS03 1/2 H20
Entering Streams
Leaving Streams
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Clarifier Liquid
Hold Tank Eff.
Rate of CaS03 1/2
Precipitation
814 1/mln
681 1/min
341 1/min
57 1/min
1,892 1/mln
H20 = ZS03 (liq.) IN - i:
= 24,804 - 8,325
15.97
8.04
18.26
1.73
4.40
S03 (llq.) OUT
12,999
5,480
6,226
99
8,325
= 16,479 m mole/mi n
2. CaS04 2 H20
Entering Streams
Leaving Streams
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Clarifier Liquid
Hold Tank Eff.
Rate of CaS04 2
Precipitation
814 1/min
681 1/min
341 1/min
57 1/min
1,892 1/min
H20 = IS04 (liq.) IN -
= 47,891 - 41,737
25.25
26.44
23.95
20.47
22.06
ES04 (liq.) OUT
20,553
18,005
8,166
1,167
41,737
6,154 m mole/mi n
3. CaCO, Dissolution
Entering Streams Scrubber Liquid-
Lower 814 1/min 26.88 21,880
Scrubber Liquid-
Upper 681 1/min 24.09 16,405
Scrubber Bottom 341 1/mln 26.92 9,179
Clarifier Liquid 57 1/min 18.57 1,058
Leaving Streams Hold Tank Eff. 1,892 1/min 18.53 35,059
Rate of CaCO, Dissolution = iCa (liq.) OUT - zCa (liq.) IN + ECa Formation Rates
= 35,059 - 48,522 + 16,479 + 6,154
= 9,170 m mole/min
K-26
-------
TABLE K-ll. RATE CALCULATIONS (Continued)
Species Cone. Species Cone.
1n Llq. On mole/1) In Gas (ppm)
Species Flow Rate
(m mole/mini
Marble Bed (Set #2)
1. CaS03 1/2 H20
Entering Streams Inlet Flue Gas
Scrubber Spray-
Lower
Scrubber Spray-
Upper
Leaving Streams Outlet Flue Gas
Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Rate of CaS03 1/2
Precipitation
2. CaS04 2 H20
Entering Streams Scrubber Spray-
Lower
Scrubber Spray-
Upper
Leaving Streams Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Rate of CaS04 2 H
Precipitation
3. CaC03 Dissolution
Entering Streams Scrubber Spray-
Lower
Scrubber Spray-
Upper
Leaving Streams Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
10,116 g mole/min
946 1/min
889 1/mln
10,845 g mole/min
814 1/mln
681 1/min
341 1/mln
H20= IS03 (liq.) IN -
= 34,269 - 33,114 -
= -5,086 m mole/mi n
946 1/mln
889 1/mln
814 1/min
681 1/min
341 1/min
20= sS04(11q.) IN-ZS
= 39,617 - 44,738 t 6
= 1,120 m mole/min
946 1/mln
889 1/mln
814 1/min
681 1/mln
341 1/min
2,457
5.13
5.13
405
18.78
9.70
20.03
zS03 (llq.) OUT - Oxidation Rate
0.305 (24,855 - 4,392)
21.59
21.59
23.88
25.36
23'. 55
04 (llq.) OUT t Oxidation Rate
,241
18.59
18.59
26.58
24.43
26.98
24,855
4,853
4,561
4,392
15,286
6,606
6,830
20,424
19,193
19,438
17,270
8,030
17,586
16,526
21 ,636
16,636
9,200
Rate of CaCOj Dissolution = zCa (I1q.) OUT - sCa (liq.) IN + ECa Formation Rate
= 47,472 - 34,112 - 3,966
= 9,394 m mole/min
K-27
-------
TABLE K-ll. RATE CALCULATIONS (Continued)
Species Cone. Species Cone.
Stream Flow Rate In Llq. (m mole/1) tn Gas (ppm)
System Remainder
(Hold Tank, Surge Tanks and Thickener)
1. CaS03 1/2 H20
Entering Streams Scrubber Liquid-
Lower 814 l/m1n
Scrubber Liquid-
Upper
Scrubber Bottom
ClaHfier Liquid
Leaving Streams Hold Tank Eff.
Rate of CaS03 1/2 H20 =
18.78
681 1/min
341 1/min
57 1/min
,892 1/min
,0 = ZSO, (liq.) IN - z
9.70
20.03
2.16
4.89
SO, (liq.)
OUT
Precipitation
2. CaS04 2
Entering Streams Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Clarifier Liquid
Leaving Streams Hold Tank Eff.
Rate of CaS04 2
Precipitation
3. CaC03 Dissolution
Entering Streams Scrubber Liquid-
Lower
Scrubber Liquid-
Upper
Scrubber Bottom
Clarifler Liquid
Leaving Streams Hold Tank Eff.
= 28,844 - 9,252
= 19,592 m mole/mi n
814 1/min
681 1/min
341 1/min
57 1/min
23.88
25.36
23.55
20.38
21.91
1,8921/min
20 = IS04 (liq.) IN - ES04 (liq.) OUT
= 45,905 - 43,700
= 2,205 m mole/min
814 1/min
681 1/min
341 1/min
57 1/min
1,8921/min
26.58
24.43
26.98
18.26
18.19
Species Flow Rate
(m mole/ml n)
15,286
6,605
6,830
123
9,252
Rate of CaCOj Dissolution = zCa (I1q.) OUT - zCa (I1q.) IN + ECa Formation
= 34,415 - 48,013 + 19,592 + 2,205
= 8,199 m moles/mi n
Rate
14,438
17,270
8,030
1,167
43,700
21,636
16,636
9,200
1,041
34,415
K-28
-------
APPENDIX L
LIMESTONE TAIL-END SYSTEM
DISSOLUTION RATE DETERMINATION
DIAGRAMS
-------
24
22
20
18
16
14
to
S 10
o
£ 8
— —T
Tioo%
'STAGE
EFFICIENCY
I
I
I
I
I
I
I
4.0 4.2 4.4 4.6 4.8 5.0
6.0
MOLE FRACTION - TOTAL SULFUR IN LIQUID x 10"4
7.0
PLOT OF OPERATING LINE FOR EXPERIMENT 26R
-------
I
ro
CO
2
CM
o
-------
(A)
22
20
18
16
x 14
to
<
o 12
£10
8
o
(O
I
0
ACTUAL S02 REMOVAL
100% STAGE
i ^EFFICIENCY
1 T*
I
SPRAY COMPOSITION
MOLE FRACTION - TOTAL SULFUR IN LIQUID x 10
"4
8
PLOT OF OPERATING LINE FOR EXPERIMENT 27R
-------
CD
I—
J^
CALCIUM-m MOLE/LITER
PLOT OF CALCIUM vs PARTIAL PRESSURE OF S02 FOR SCRUBBER
EFFLUENT - EXPERIMENT 27R
-------
in
(0
3
I—
VJl
22
20
18
16
14
1H
o 12
X
co
CM,n
O 10
CO
I 8
i 6
1 4
0
SPRAY
COMPOSITION
ACTUAL S02 REMOVAL
^ \ ^00% STAGE EFFICIENCY
I
I i
! i!
5 6
MOLE FRACTION - TOTAL SULFUR IN LIQUID x 10"4
PLOT OF OPERATING LINE FOR EXPERIMENT 29R
-------
I
at
C
(D
22
20
18
T
o
x 14
CO
S 12
CM
,_
10
2 8
OH ,
u_ 6
I T
24
CALCIUM-m MOLE/LITER
PLOT OF CALCIUM vs PARTIAL PRESSURE OF S02 FOR SCRUBBER
EFFLUENT - EXPERIMENT 29R
-------
22
20
18
16
x
in
<
CD
12
CM
o
co
S 8
o
<
az ,
u_ 6
CJQ
C
0
J I
SPRAY COMPOSITION
ACTUAL S02 REMOVAL
100% STAGE EFFICIENCY
r^.
1,1
5 6 A
MOLE FRACTION - TOTAL SULFUR IN LIQUID x 10"4
PLOT OF OPERATING LINE FOR EXPERIMENT 30R
-------
00
(£3
oo
LO
s
22
20
18
16
14
12
CM
8 10
o
a
o
8
2
0
24
CALCIUM-m MOLE/LITER
PLOT OF CALCIUM vs PARTIAL PRESSURE OF S02 FOR SCRUBBER
EFFLUENT - EXPERIMENT 30R
-------
TECHNICAL REPORT DATA
(Please read Inunctions on the reverse before completing}
1. REPORT NO.
EPA-650/2-75-052
2.
3. RECIPIENT'S ACCESSION-NO.
4. TITLE AND SUBTITLE
Optimization of a Lime/Limestone Wet Scrubbing
Process for SO2 and Particulate Removal in a
Marble Bed Scrubber
6 REPORT DATE
June 1975
6. PERFORMING ORGANIZATION CODE
7. AUTHOR(S) ,
Project Director M. Rao Gogineni,
K. Malki, and B.C. Borio
8. PERFORMING ORGANIZATION REPORT NO,
9. PERFORMING ORGANIZATION NAME AND ADDRESS
C-E Power Systems
Combustion Engineering Inc.
1000 Prospect Hill Road
Windsor, Connecticut 06095
10. PROGRAM ELEMENT NO.
1AB013; ROAP 21ACY-020
11. CONTRACT/GRANT NO.
68-02-0221
12. SPONSORING AGENCY NAME AND ADDRESS
EPA, Office of Research and Development
NERC-RTP, Control Systems Laboratory
Research Triangle Park, NC 27711
13. TYPE OF REPORT AND PERIOD COVERED
Final:7/l/71 - 12/21/72
14. SPONSORING AGENCY CODE
16. SUPPLEMENTARY NOTES
. ABSTRACT
report gives results of extensive testing of a prototype marble bed
scrubber system. Results of 16 once-through soluble system tests, using sodium
carbonate scrubbing solution, showed that the scrubber is a very good liquid/gas
contacting device for SO2 removal from flue gases with an overall efficiency of 90 to
95 percent. Liquid/gas ratio and scrubber liquid composition significantly affected
SO2 removal; other variables had little or no effect. Results of six limestone fur-
nace injection system tests, using boiler calcined limestone and fly ash mixture,
showed that solids concentration in the spray slurry and liquid/gas ratio signficantly
affected SO2 removal. Results of six limestone tail-end system tests, using com-
mercial limestone in a dual marble bed scrubber, showed that the SO2 removal
efficiencies of the lower and upper beds are the same, based on the SO2 concentra-
tions entering the respective beds. It was demonstrated that scale-free operation
of both the furnace injection and the tail-end systems can be achieved in a closed loop
system, without employing liquid blowdown, by maintaining 8 to 10 percent solids in
the spray slurry.
KEY WORDS AND DOCUMENT ANALYSIS
DESCRIPTORS
b.lOENTIFIERS/OPEN ENDED TERMS
c. COSATI Field/Croup
Air Pollution
Scrubbers
Calcium Oxides
Limestone
Flue Gases
Fly Ash
Sulfur Dioxide
Air Pollution Control
Stationary Sources
Particulates
Marble-Bed Scrubber
13B
07A
07B
21B
!. DISTRIBUTION STATEMENT
19. SECURITY CLASS (ThisReport)
Unclassified
21. NO. OF PAGES
243
Unlimited
20. SECURITY CLASS {nilpage)
Unclassified
22. PRICE
EPA Form 2220-1 (9-73)
-------