Zeolitic rotary adsorption concentration RTO
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Zeolitic rotary adsorption concentration RTO
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Zeolitic rotary adsorption concentration RTO
Pre-treated exhaust gas enters a zeolite concentration rotor + catalytic combustion system. The zeolite molecular sieve's porous adsorption property adsorbs and concentrates organic matter. Under the action of a catalyst at a temperature of 300-400℃, the C and H compounds in the organic components are oxidized and decomposed into harmless CO2 and H2O, achieving the purpose of air purification.
Technical Principle
After pretreatment (removal of dust and particulate matter), the organic waste gas flows through the concentration rotor. The organic matter is adsorbed in the rotor adsorption area. The waste gas after adsorption purification (approximately 85%~95% of the treated air volume) is discharged into the atmosphere. A small portion of the waste gas (approximately 5%~15% of the treated air volume) is cooled in the rotor cooling area, then heated to a desorption temperature of 180-220℃ via a heat exchanger, and flows into the desorption area. In the desorption area, the organic matter detaches from the adsorbent—zeolite—into the heated airflow, regenerating the rotor. The desorbed high-concentration VOCs are sent to catalytic combustion. Before entering the catalytic bed, the desorbed concentrated waste gas exchanges heat with high-temperature flue gas in the heat exchanger unit, preheating the desorbed waste gas before entering the catalytic bed. The desorbed gas rises to 300℃ in the catalytic bed, undergoing a catalytic oxidation reaction. The organic components are oxidized into harmless CO2 and H2O, releasing heat. The resulting flue gas (<650℃) is discharged after heat exchange with the incoming air, meeting emission standards.
Process Flow Diagram


Test Conditions
Medium air volume, medium and low concentration of organic waste gas.
Technical Features
Large equipment processing capacity, low pressure loss, low oxidation temperature, rotor efficiency >95%, CO efficiency can reach 99%.
Industry Applications
This technology is suitable for industrial organic waste gas treatment projects such as petroleum waste gas treatment, chemical waste gas treatment, rubber waste gas treatment, printing ink waste gas treatment, spraying waste gas treatment, cable and enamelled wire waste gas treatment, furniture waste gas treatment, and coating spraying waste gas treatment.
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