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Zeolite rotor + RCO
YQC zeolite rotor RCO is suitable for treating VOCs with large air volume and low concentration. After passing through the zeolite rotor, due to the van der Waals force between the molecules, the VOCs are adsorbed by the zeolite micropores, and the purified gas can be discharged to the exhaust pipe directly. The organic matter adsorbed on the zeolite rotor is then desorbed by the gas at a temperature of 180℃~200℃. The adsorbed high concentration waste gas is then sent to RCO furnace for catalytic combustion treatment. SEED specializes in manufacturing zeolite rotor RCO.
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Zeolite rotor + RTO
YQB Zeolite Rotor Concentration RTO process adopts zeolite rotor adsorption and separation method to separate and concentrate VOCs in low concentration and large air volume industrial waste gas, and then for the concentrated high concentration and small air volume polluted air, it adopts RTO (Regenerative Thermal Oxidizer) Regenerative Thermal Oxidizer (RTO), which oxidizes the organic waste gases (VOCs) into carbon dioxide and water at a high temperature (750-850℃) to purify the waste gases.
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Silane combustion tower
Silane combustion purification tower main equipment: including combustion tower, combustion barrel and fan. It is to adopt high temperature and high pressure, and utilize the reaction product of air and silane under high temperature and high pressure as absorbent. The harmful components in the exhaust gas are decomposed into carbon dioxide and nitrogen, etc., so as to achieve the purpose of purification. This equipment is characterized by small investment, low operation cost and convenient operation and maintenance. Processing flow: collection of waste gas → pretreatment → circulation in the purification tower (removing soot and some harmful components) → discharge. The gas is decomposed through the high temperature generated by combustion, and the exhaust gas treatment is so effective that it is necessary to replenish the fuel for the combustion tower to ensure the continuity of combustion.
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Arsenophosane adsorption tower
Arsenophosane adsorption tower working principle: the use of chemical reaction, complex decomposition reaction and other basic principles, and a variety of waste gas chemical reaction, to generate stable non-toxic and harmless compounds or complexes, will not produce secondary pollution. Semiconductor industry arsenic-containing waste gas from the machine end of a separate collection, the formation of an independent system, arsenic alkyl phosphide treatment system is divided into two main parts, a stage for the Local Scrubber, i.e., the local dry adsorption device, using the principle of chemical adsorption, in the arsenic-containing system on the basis of the Local Scrubber will be pooled on the roof at the Central end of the again for the dry adsorption, the use of equipment, the use of chemical adsorption. Dry adsorption, the use of equipment called arsenophosphane adsorption tower. General arsenophosphane adsorption tower will also be configured with a one-use and one-standby mode, after adsorption through the end of the fan negative pressure discharge.
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Zeolite rotor + CO
YQC zeolite rotor concentration CO process first adopts zeolite rotor adsorption and separation method to separate and concentrate VOCs in low concentration and large air volume industrial waste gas, and then for the concentrated high-concentration and small air volume polluted air, it makes use of CO (Catalytic Oxidizer) catalytic thermal oxidizing furnace to oxidize the organic waste gases (VOCs) into carbon dioxide and water at a relatively low temperature (300-400℃), so as to purify the waste gases.
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Zeolite rotor + TO
Zeolite rotor + high-temperature oxidizing furnace (TO) enterprises in the production process of VOCs emissions into the zeolite rotor adsorption, adsorption of clean gas through the chimney to meet the emission standards, the zeolite rotor exhaust gas inlet filter to remove particles in the exhaust gas. Cooling gas through the zeolite rotor cooling zone pre-heating and then through the heat exchanger to the required temperature of desorption, into the desorption zone of the zeolite rotor, to remove the organic components adsorbed in the molecular sieve, desorption of the exhaust gas from the desorption fan pressurized into the TO furnace for direct combustion. Greenstar environmental protection zeolite rotor + high temperature oxidation furnace TO direct-fired TO furnace, regenerative thermal oxidation decomposer, also known as direct-fired thermal oxidizer. The basic principle of the main body consists of a combustion chamber and three ceramic filled beds. When the exhaust gas passes through the ceramic beds, it is heated above 800℃ and oxidization reaction occurs, producing carbon dioxide and water. The heat released during decomposition is also recovered to achieve the dual purpose of environmental protection and energy saving. Zeolite rotor + high-temperature oxidizer (TO) process flow: VOCs gas collection → dry/wet filtration → zeolite rotor adsorption and concentration → high-temperature oxidizer TO → fan + chimney (up to the standard discharge)
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