Activated Carbon for H2S Adsorption

Carbon Coal Charcoal-26

Activated Carbon for H2S Adsorption

Impregnated activated carbon removes gaseous pollutants

Used for air purification, removal of H2S from exhaust gas and "clean'' rooms to enhance the adsorption of toxic gases in the air.

Key details

Generic name Impregnated activated carbon removes gaseous pollutants
Active matter (%) 100
Standard packing 25.00 Kg.PWD
Supply locations Activated Carbon for H2S Adsorption manufacturer and supplier in Mumbai, Muscat Barka Oman, Fujairah, Dubai, Sharjah, Abudhabi, Ajman, UAE Middle East, Canada, Kenya Uganda, Jinja Uganada, Africa, Gandhidham, Kolkata, Vizag Visakhapatnam, Chennai, Ennore, India

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Application

Impregnated activated carbon removes gaseous pollutants via an irreversible reaction between the additives and pollutants. Hydrogen sulfide can be effectively captured by impregnated activated carbon and converted to sulfur when the operation temperature is between 24–170◦C.

Using Procedure

Activated carbon impregnated with NaOH solution was shown to have the optimum H2S removal efficiency.  H2S adsorption via Alkaline RXSOL CARBON was five times that of a corresponding fresh activated carbon. 

Technical Specifications

Hydrogen sulfide generated/emitted by petrochemical plants, food plant, processing plants, semiconductor plants, sewage treatment plants, or pharmaceutical plants. Generally, the effluent gases from such plants are treated by washing followed by neutralization with chemicals, adsorption onto activated carbon, condensation, masking, or direct or catalytic combustion. RXSOL  impregnated activated carbons have been developed with superior deodorizing performance.

Remarks

Impregnated Activated carbon are manufactured by carbonization of char - coal in the presence of activating agents such as CO2 or steam. And during Chemical activation following chemical agents used in the chemical process are normally alkali and alkaline earth metals or acids such as KOH, K2CO3, NaOH, Na2CO3, AlCl3, ZnCl2, MgCl2 and H3PO4  etc.

Note

The adsorption equivalent of H2S is nearly 1 (mol-H2S/mol-AOH). Which can be easily understood with this reaction H2S + AOH → AHS + H2O 

Our experiment shows that adsorption capacity of activated carbon directly affected by specific surface area, pore size distribution, pore volume, and surface functional groups.

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