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Jiangsu Fenghe Environmental Technology Co., Ltd

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    finehead@163.com

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    13390754968

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    T2-1108 Tianjijiang Lai, No.1 Huachuang Road, Pukou District, Nanjing City, Jiangsu Province

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Air purification - microwave photo oxygen exhaust gas treatment equipment

NegotiableUpdate on 04/14
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Overview
Air purification - microwave photocatalytic oxidation waste gas treatment equipment: The company's FINE-JH series microwave catalytic oxidation waste gas treatment equipment overcomes many difficulties of traditional waste gas treatment processes and equipment, and has the advantages of efficient odor removal, no need to add any substances, and strong adaptability, which has won the trust of customers. The company's series of products are widely used in industries such as oil processing, feed production, livestock and poultry breeding, injection molding, automotive, electrical, municipal, light industry, spray painting, rubber, plastics, medical, etc. The product has been sold by Bangji (China) Group, Tongwei Co., Ltd., Minghui Feed Co., Ltd., SAIC Group, Nanyang Explosion proof Electrical Appliance Group
Product Details

Air purification - microwave photo oxygen exhaust gas treatment equipment

This device can treat various mixed organic waste gases.

In most cases, the use of photocatalytic equipment is aimed at addressing the irritating odor in exhaust gas. When there is a certain amount of particulate matter in the air, it is recommended to choose exhaust gas pretreatment equipment such as water spray towers. This way, the pretreated exhaust gas can enter the interior of the photocatalytic equipment for treatment, and achieve a relatively ideal treatment effect.

Air purification - microwave photo oxygen exhaust gas treatment equipment

The photocatalytic deodorization equipment can effectively degrade organic chemicals: it can effectively remove major pollutants such as volatile organic compounds (VOCs), inorganic substances, hydrogen sulfide, ammonia, thiols, as well as various odors. The deodorization efficiency can reach over 99.9%, greatly exceeding the 1993 "Emission Standards for Odor Pollutants" (GB14554-93). The photocatalytic equipment generally needs to be installed in a well ventilated area and used in the presence of natural light sources, so that the catalyst inside the equipment can come into contact with the ultraviolet rays in the natural light source, generating ozone substances with oxidation effect. This can achieve ideal oxidation treatment effect for organic waste gas. The main application technology of photocatalytic equipment is what we commonly refer to as photocatalytic technology.

This technology requires the use of special wavelength ultraviolet lamps for installation and design, and workshops with different air volumes have a significant impact on the number and arrangement of ultraviolet lamps. In general, the pressure of the fan can be used to gather organic waste gas inside the photocatalytic equipment, so that relatively high concentration waste gas will begin to split and purify under the influence of strong ultraviolet light beams. The advantage of this device is that it can be installed and used in low concentration and high air volume environments, and can achieve relatively ideal treatment effects.

Exhaust gas purification and desorption process: This process is aimed at the activated carbon in the adsorption bed. It refers to the fact that the activated carbon can desorb after adsorbing a large amount of harmful substances after a period of use. The length of time the activated carbon is used is determined by the content of harmful substances in the exhaust gas and the length of time it is used. The desorption process uses a desorption tower, which uses a catalytic combustion device to evaporate the solvent in the activated carbon using hot air. The evaporated solvent cannot be directly discharged and will enter the catalytic device for combustion again. Some of the high-temperature gas after combustion is discharged into the air, but most of it is sent back to the adsorption bed as adsorption heat energy and continues to be recycled.