Introduction to Fluorinated Silicone Oil Cotton Fluorinated silicone oil glass fiber cotton (abbreviated as fluorinated silicone oil cotton) has good waterproof, oil resistant, and corrosion-resistant properties, which are superior to organic silicon materials. Mainly suitable for the chlor alkali industry, it improves the quality of liquid chlorine and hydrogen chloride after use, reducing the water content entering the turbine from 600ppm to below 100ppm, and reducing the water content of hydrogen chloride from 0.06% to 0.01%. The dehydration effect is significant, reducing equipment corrosion and leakage, and extending the cleaning equipment cycle from one month to more than one year. When used in conjunction with a turbine, replacing the Nessler pump with a centrifugal compressor can produce 300 tons of chlorine gas, saving 13000 kWh of electricity per day, 4.5 million kWh of electricity per year, and 300 tons of sulfuric acid. Zhejiang Juhua Group Co., Ltd., Qingdao Chemical Plant, Shanghai Tianyuan Chemical Plant, Shanghai Chlor Alkali Chemical Co., Ltd., Inner Mongolia Huanghe Chemical Plant, Ningxia Jinyuyuan Chlor Alkali Chemical Company Shizuishan Chlor Alkali Plant, Tianjin Dagu Chemical Plant, Beijing Chemical Plant 2, Fujian Sanming Chemical Co., Ltd., Wuhan Gehua Industrial Group, Sichuan Changshou Factory, Xinjiang Chlor Alkali Plant, Jiangsu Taixing Xinpu Chemical Co., Ltd., Taixing Chemical Plant, Shandong Binzhou Chemical Plant, Hubei Shalongda Chemical Co., Ltd., Zhejiang Kaipu Chemical Co., Ltd. and other units have been using this product for a long time.
Technical Parameter
model |
specifications |
Technical performance |
D outside |
Within D |
length |
Processing gas volume (m3/h) |
Pressure drop loss (mm/H2O) |
operate temperature (℃) |
gas velocity (m/s) |
Mist removal efficiency (%) |
CT-M |
470 |
400 |
2000 |
1000-1200 |
50 |
<85 |
0.14-0.16 |
Particle size>3 μ m, 98% or more |
470 |
400 |
2500 |
1200-1500 |
470 |
400 |
3000 |
1500-1800 |
CT-A |
460 |
400 |
2000 |
1000-1200 |
50 |
<85 |
0.14-0.16 |
Particle size>3 μ m, 98% or more |
460 |
400 |
2500 |
1200-1500 |
460 |
400 |
3000 |
1500-1800 |
CTP-M |
470 |
400 |
2000 |
1000-1200 |
60 |
<70 |
0.14-0.16 |
Particle size>3 μ m, 98% or more |
470 |
400 |
2500 |
1200-1500 |
470 |
400 |
3000 |
1500-1800 |
CT-A-R |
460 |
350 |
2000 |
1000-1200 |
60 |
<85 |
0.14-0.16 |
Particle size>3 μ m 100% |
460 |
350 |
2500 |
1200-1500 |
460 |
350 |
3000 |
1500-1800 |
|
|
|
|
CT-M-R |
470 |
360 |
2000 |
1000-1200 |
60 |
<85 |
0.14-0.16 |
Particle size>3 μ m 100% |
470 |
360 |
2500 |
1200-1500 |
470 |
360 |
3000 |
1500-1800 |
CTP-M-R |
470 |
360 |
2000 |
1000-1200 |
60 |
<70 |
0.14-0.16 |
Particle size>3 μ m 100% |
470 |
360 |
2500 |
1200-1500 |
470 |
360 |
3000 |
1500-1800 |
CTB-R |
480 |
350 |
2000 |
1000-1200 |
60 |
<85 |
0.14-0.16 |
Particle size>3 μ m 100% |
480 |
350 |
2500 |
1200-1500 |
480 |
350 |
3000 |
1500-1800 |
CTB-R** |
480 |
380 |
2500 |
1200-1500 |
60 |
<85 |
0.14-0.16 |
Particle size>3 μ m 100% 1-3μm90-95% 0.75-1μm75-90% 0.5-0.7μm50-75% |
480 |
380 |
3000 |
1500-1800 |
480 |
380 |
3500 |
1800-2400 |
480 |
380 |
4000 |
2400-2800 |
CTB-R |
610 |
500 |
4000 |
3200 |
50-80 |
<85 |
0.16-0.25 |
Particle size>3 μ m 100% |
CT-R* |
570 |
460 |
3500 |
3000 |
50-80 |
<85 |
0.14-0.25 |
Particle size>3 μ m 100% |
CB-R*
|
610 |
500 |
3600 |
3000 |
80-300 |
<85 |
0.10-0.35 |
Particle size>3 μ m 100% Particle size<3 μ m 95% |
CTB-R |
610 |
500 |
1000-2000 |
2000-4000 |
50-350 |
<85 |
0.10-2.5 |
Particle size>3 μ m 100% |
R*For efficient defogging components |
Two forms of foam catcher a. Bag tube demister: Wrap demister cotton around multiple tubular flower baskets to form a filtering surface. b. Basket type foam catcher: Roll the defogging surface into a tube shape and tightly place it inside the basket to form a gas filtering surface. c. Fill type foam catcher: Stack glass wool on a flower board to form a filtering surface. (2) Application filter media a. Chlorine gas with a purity of over 95% and containing sulfuric acid mist. b. Hydrogen chloride gas with a purity of over 90% and containing hydrochloric acid mist. (3) Defogging glass wool effect The effect of replacing the defect of absorbing methyl silicone oil glass fiber with fluorine-containing silicone oil impregnated glass wool defogger is: significantly extending the service life (from the original three months to more than one year; significantly reducing the attachment of dirt when replacing glass wool; increasing the amount of acid mist capture; and significantly reducing the blockage of some pipelines and valves). The list of good effects of using defogging glass wool in the production of hydrogen chloride in the hydrochloric acid section is as follows:
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