Welcome Customer !

Membership

Help

Nantong Wanqingnian Environmental Protection Technology Co., Ltd
Custom manufacturer

Main Products:

cep-online>Products

Nantong Wanqingnian Environmental Protection Technology Co., Ltd

  • E-mail

    ntwnq2014@163.com

  • Phone

    18936169878

  • Address

    No. 689 Changtai Road, Tangzha Street Urban Industrial Park, Nantong Gangzha District

Contact Now

Integrated regeneration activated carbon purification equipment, photocatalytic equipment

NegotiableUpdate on 05/06
Model
Nature of the Manufacturer
Producers
Product Category
Place of Origin
Overview
The working principle of the integrated regeneration activated carbon purification equipment is to use the adsorption characteristics of activated carbon to remove pollutants from air or water, and release the adsorbed pollutants through the regeneration process to achieve recycling. Using precious metals palladium and platinum as catalysts on honeycomb ceramics, the catalytic combustion rate reaches over 97%, the catalyst has a long lifespan, low decomposition temperature, short desorption preheating time, and low energy consumption.
Product Details

Integrated Regenerated Activated Carbon Purification EquipmentIt is a device used to remove pollutants from air or water. It uses regenerated activated carbon as an adsorbent to remove harmful substances from gas or liquid streams through physical adsorption. After the activated carbon is saturated, the adsorbed pollutants can be removed by heating or washing to restore the adsorption capacity of the activated carbon for reuse. This type of equipment is commonly used to treat volatile organic compounds (VOCs) in the air or organic pollutants in water, such as dissolved organic chemicals, odorants, or pigments. Regenerated activated carbon purification equipment has a wide range of applications in industrial, commercial, and household environments.

Integrated Regenerated Activated Carbon Purification EquipmentThe working principle mainly involves two processes: adsorption and regeneration.

During the adsorption process, pollutants in air or water are adsorbed onto the surface of activated carbon through physical or chemical adsorption. Activated carbon is a highly porous material with numerous tiny pores and surface areas, which enables it to effectively adsorb pollutants such as organic compounds, odors, particulate matter, etc.

When activated carbon is saturated or reaches a certain adsorption capacity, regeneration is required. During the regeneration process, pollutants adsorbed on activated carbon are released through heating or other means. This can be achieved through methods such as increasing temperature, changing pressure, or using steam. The released pollutants can be further processed or discharged into the environment after treatment.

Regenerated activated carbon purification equipment can recycle activated carbon, extend its service life through periodic adsorption and regeneration, reduce operating costs, and decrease the demand for fresh carbon.

In short, the working principle of the regenerated activated carbon purification equipment is to use the adsorption characteristics of activated carbon to remove pollutants from air or water, and release the adsorbed pollutants through the regeneration process to achieve recycling.

Performance characteristics:

1. Catalytic low-temperature decomposition, short preheating time, low energy consumption;

2. The catalyst has a long service life and a catalytic decomposition efficiency of over 97%;

3. The equipment runs stably and reliably, with few moving parts, a well-equipped maintenance system, and easy operation and maintenance;

4. The system has complete security facilities, equipped with flame arresters and explosion vents. Any abnormal situations that occur during operation will trigger an alarm and automatically shut down;

5. Using precious metals palladium and platinum as catalysts on honeycomb ceramics, the catalytic combustion rate reaches over 97%, the catalyst has a long lifespan, low decomposition temperature, short desorption preheating time, and low energy consumption.