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High Catalytic Performance of Mn-Doped Ce-Zr Catalysts for Chlorobenzene Elimination

机译:锰掺杂的Ce-Zr催化剂对氯苯消除的高催化性能

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摘要

Mn-Ce-Zr-O catalysts doped with varying Mn content were prepared and assessed for the catalytic combustion of chlorobenzene (CB). Nanosized MCZ-0.67 catalyst with amorphous phase exhibited a high and stable catalytic activity among the studied catalysts, achieving 90% CB conversion at 226 °C and withstanding stability tests, including time-based stability and the successive influence of various operating conditions. Meanwhile, the MCZ-0.67 catalyst used showed good recyclability by calcination in air. Characterization results suggested that Mn doping played a dominant role in improving the catalytic performance, resulting in larger surface area, better redox properties and greater amounts of surface active oxygen. In addition, the introduction of Zr was also indispensable for maintaining the good catalytic performance of catalysts. Finally, trace amounts of polychlorinated by-products during CB oxidation were monitored and the oxidation process was discussed.
机译:制备了掺杂有不同Mn含量的Mn-Ce-Zr-O催化剂,并评估了其对氯苯(CB)的催化燃烧。在研究的催化剂中,具有非晶相的纳米级MCZ-0.67催化剂表现出高而稳定的催化活性,在226°C下达到90%的CB转化率,并经受了包括基于时间的稳定性和各种操作条件的连续影响在内的稳定性测试。同时,所使用的MCZ-0.67催化剂通过在空气中煅烧显示出良好的再循环性。表征结果表明,Mn掺杂在改善催化性能中起主要作用,导致更大的表面积,更好的氧化还原特性和更多的表面活性氧。另外,为了保持催化剂的良好催化性能,引入Zr也是必不可少的。最后,监测了CB氧化过程中的痕量多氯代副产物,并讨论了氧化过程。

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