Exhaust gas catalytic combustion equipment:
1. Catalytic oxidation (CO) technology is the treatment of gaseous pollutants following the high temperature (TO) technology. Regenerative catalytic oxidation (RCO) technology is based on catalytic oxidation (CO) using a series of energy-saving design and material selection following the development of modern waste gas treatment technology, which is mainly manifested in the nature of: low-temperature oxidation conditions, avoiding the RTO due to high temperature and produce secondary gaseous pollutants - nitrogen oxides (HOx) - the problem of the more and more stringent environmental protection laws and regulations, and at the same time significantly lower operating temperature so that operating energy savings. At the same time, the low operating temperature saves a lot of operating energy.
2. The basic principle of catalytic oxidation (CO) technology is: the use of different substances in different characteristics of the catalyst surface contact oxidation reaction occurs in the energy required, less than the energy required for its direct oxidation of the basic principle; will be the working temperature of the exhaust gas treatment equipment from 800 ℃ to 400 ℃, or even a substantial reduction in the temperature, so that the operation of the energy to a large extent to save. High-temperature incineration (TO) due to high temperature so that the nitrogen in the air and oxygen have a strong oxidation reaction to produce new secondary gaseous pollutants - nitrogen oxides (HOx) and catalytic oxidation (CO) of the low-temperature reaction conditions to control the generation of HOx.
3.Regenerative catalytic oxidation (RCO) technology is developed on the basis of catalytic oxidation (CO), which mainly adopts the heat exchange design technology and the selection of new animal heat materials. The exchange efficiency of the traditional heat exchange design technology is generally 50-70%, improving the heat exchange efficiency means geometrically increasing the manufacturing cost of the equipment and greatly increasing the volume of the heat exchange equipment; regenerative heat exchange adopts modern design concepts, so that the volume of the equipment and manufacturing cost control at the same time will be improved to even high heat exchange efficiency.
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