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Advanced Activated Carbon Fiber Waste Gas Treatment System
| Price | Negotiable |
|---|---|
| Min Order | 1 Set |
| Availability | In Stock |
| Shipping From | Jiangsu, China |
| Popularity | 341 people viewed |
Model NO.:
DN2500-7X-I
After-sales Service:
Lifetime
Warranty:
1 Year
Condition:
New
Certification:
ISO
Automation:
Automatic
Treatment:
Chemical Treatment
Purification Efficiency:
Over 95%
Service Life of Carbon Fiber:
3-5 Years
Applicable Air Volume/Airflow CMH:
3500~7000
Applicable Concentration,Mg/Cbm:
Within 10000
Design Air Volumn,CMH:
8000
Design Concentration,Mg/Cbm:
1500
Equipment Material:
Q235B
Appearance Color:
Ral7032 / Customized
Per Carbon Fiber Weight:
40 Kg
Total Carbon Fiber Weight:
280 Kg
Trademark:
EASCLE / customized
Transport Package:
Wooden Packing & Wooden Pallet
Specification:
DN2000*2830 mm
Origin:
Suzhou, China
Product Description
Activated Carbon Fiber (ACF) exhaust gas treatment equipment is designed for efficient purification of industrial emissions. It excels in handling low-concentration, large-volume volatile organic compounds (VOCs), ensuring high adsorption capacity, fast desorption, and long service life.
Working Principle
1.Adsorption:
VOCs in the exhaust gas are captured by the micropores of the ACF material, separating harmful components from clean air, which is then discharged.
2.Desorption and Regeneration:
When the ACF reaches saturation, it is regenerated using heated air, desorbing the VOCs for reuse. The concentrated exhaust gas is processed in a catalytic combustion unit, converting it into CO and HO with over 95% efficiency.
3.Energy Efficiency:
Heat generated during the catalytic process is recycled to maintain the desorption temperature, minimizing energy consumption and supporting continuous operation.
This compact, energy-saving solution offers reliable performance for industries requiring strict emission control.
Working Principle
1.Adsorption:
VOCs in the exhaust gas are captured by the micropores of the ACF material, separating harmful components from clean air, which is then discharged.
2.Desorption and Regeneration:
When the ACF reaches saturation, it is regenerated using heated air, desorbing the VOCs for reuse. The concentrated exhaust gas is processed in a catalytic combustion unit, converting it into CO and HO with over 95% efficiency.
3.Energy Efficiency:
Heat generated during the catalytic process is recycled to maintain the desorption temperature, minimizing energy consumption and supporting continuous operation.
This compact, energy-saving solution offers reliable performance for industries requiring strict emission control.
Feature and advantages
1.High Adsorption Capacity:
ACF effectively adsorbs both high- and low-concentration pollutants. It captures toluene at <10 ppm, compared to GAC's threshold of >100 ppm.
2.Rapid Adsorption:
Gas adsorption is 2-3 orders of magnitude faster than GAC.
3.Effortless Regeneration:
ACF maintains performance after multiple adsorption-desorption cycles. Complete desorption occurs with hot air at 120-150ºC in 10-30 minutes.
4.Excellent Heat Resistance:
Withstands over 1000ºC in inert gas and 500ºC in air.
5.Chemical Stability:
Resistant to acids, alkalis, and features good electrical conductivity.
6.Lightweight and Efficient:
One-third the density of GAC, offering low filtration resistance, minimal power loss, and the ability to absorb high-viscosity liquids.
1.High Adsorption Capacity:
ACF effectively adsorbs both high- and low-concentration pollutants. It captures toluene at <10 ppm, compared to GAC's threshold of >100 ppm.
2.Rapid Adsorption:
Gas adsorption is 2-3 orders of magnitude faster than GAC.
3.Effortless Regeneration:
ACF maintains performance after multiple adsorption-desorption cycles. Complete desorption occurs with hot air at 120-150ºC in 10-30 minutes.
4.Excellent Heat Resistance:
Withstands over 1000ºC in inert gas and 500ºC in air.
5.Chemical Stability:
Resistant to acids, alkalis, and features good electrical conductivity.
6.Lightweight and Efficient:
One-third the density of GAC, offering low filtration resistance, minimal power loss, and the ability to absorb high-viscosity liquids.
| Equipment model | Equipment size, mm | Applicable air volume/airflow (m³/h)CMH | Applicable concentration, mg/m³ | Per carbon fiber weight,kg | Total carbon fiber weight,kg | Design air volumn,CMH | Design concentration,mg/m³ |
| DN2000-4X-I | DN1500×2700 | 2000~4000 | <10000 | 40 | 160 | 2000 | 8000 |
| DN2500-7X-I | DN2000×2830 | 3500~7000 | <10000 | 40 | 280 | 8000 | 1500 |
| DN3500-11X-I | DN3000×2830 | 5500~11000 | <10000 | 40 | 440 | 5500 | 8000 |
| DN2000-4X-II | DN1500×2700 | 2000~4800 | 10000~20000 | 60 | 240 | 2000 | 12000 |
| DN2500-7X-II | DN2000×2830 | 3500~8400 | 10000~20000 | 60 | 420 | 8000 | 1500 |
| DN3500-11X-II | DN3000×2830 | 5500~13200 | 10000~20000 | 60 | 660 | 5500 | 12000 |
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