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Decomposion of Indoor Ozone on Activated Carbon-Supported Catalysts

机译:活性炭负载型催化剂上室内臭氧的分解

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Activated carbon-supported copper, silver and manganese catalysts (Cu/GAC, Ag/GAC and Mn/GAC) were prepared by impregnation. Orthogonal experiments were conducted to find the optimum preparation conditions including metal loading, calcination temperature and calcination time. Each catalyst was prepared under the optimum conditions. Catalytic activities for decomposition of ozone of Cu/GAC, Ag/GAC, Mn/GAC, activated carbon (GAC) and molecular sieve (MS) were investigated. The comparison experiments showed that Ag/GAC had the highest activity and was an ideal catalyst to remove indoor ozone. X-ray diffraction (XRD) of Cu/GAC, Mn/GAC and Ag/GAC showed that copper and silver were loaded as atoms on activated carbon, while manganese was present as the monoxide. Finally, possible mechanisms for ozone decomposition on the surface of Cu/GAC, Ag/GAC and Mn/GAC are proposed.
机译:通过浸渍制备活性炭负载的铜,银和锰催化剂(Cu / GAC,Ag / GAC和Mn / GAC)。进行正交试验以找到最佳的制备条件,包括金属负载量,煅烧温度和煅烧时间。每种催化剂均在最佳条件下制备。研究了Cu / GAC,Ag / GAC,Mn / GAC,活性炭(GAC)和分子筛(MS)对臭氧分解的催化活性。对比实验表明,Ag / GAC活性最高,是去除室内臭氧的理想催化剂。 Cu / GAC,Mn / GAC和Ag / GAC的X射线衍射(XRD)表明,铜和银作为原子负载在活性炭上,而锰则作为一氧化碳存在。最后,提出了在Cu / GAC,Ag / GAC和Mn / GAC表面臭氧分解的可能机理。

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