Products
MSD Zeolite Rotating Adsorption Bed
Exhaust air containing volatile organic compounds (VOCs) passes through a filter to remove particulate matter and then enters the adsorption zone of the zeolite rotor. The zeolite on the rotor has a highly porous structure capable of adsorbing VOCs from the exhaust air. Once adsorption is saturated, a drive motor rotates the zeolite rotor to the desorption zone, where hot air or other regeneration media is used to desorb the VOCs adsorbed onto the zeolite, forming a high-concentration exhaust air stream for subsequent treatment, such as combustion or condensation. After cooling following desorption, the zeolite rotor returns to the adsorption zone to continue adsorbing VOCs from the exhaust air.
ZDS Zeolite Honeycomb Adsorption Bed
ZDS Zeolite Honeycomb Adsorption Bed is an environmental protection device that utilizes the adsorption properties of zeolite to treat gaseous pollutants. It employs zeolite material with a honeycomb structure; the zeolite consists of numerous small honeycomb cells, which facilitate the uniform distribution of gas within the bed and enhance adsorption efficiency. As a silicoaluminate mineral with a microporous structure, zeolite has a high specific surface area and strong selective adsorption capacity, making it suitable for adsorbing organic compounds and certain inorganic compounds from gases. During operation, the gas containing pollutants passes through the adsorption bed, where the pollutant molecules are captured and adsorbed by the zeolite’s micropores to purify the gas. As adsorption proceeds, the zeolite honeycomb units gradually become saturated; at this point, methods such as thermal regeneration are required to restore their adsorption capacity. During thermal regeneration, the saturated units are heated, causing the contaminants to desorb into the gas stream, where they are captured and treated by downstream equipment. Once thermal regeneration is complete, the thoroughly desorbed units are cooled to room temperature and can then be put back into service for adsorption.