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Catalytic non-thermal plasma reactor for the decomposition of a mixture of volatile organic compounds

机译:催化非热等离子体反应器,用于分解挥发性有机化合物的混合物

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摘要

The decomposition of mixture of selected volatile organic compounds (VOCs) has been studied in a catalytic non-thermal plasma dielectric barrier discharge reactor. The VOCs mixture consisting n-hexane, cyclo-hexane and p-xylene was chosen for the present study. The decomposition characteristics of mixture of VOCs by the DBD reactor with inner electrode modified with metal oxides of Mn and Co was studied. The results indicated that the order of the removal efficiency of VOCs followed as p-xylene > cyclo-hexane > n-hexane. Among the catalytic study, MnOx/SMF (manganese oxide on sintered metal fibres electrode) shows better performance, probably due to the formation of active oxygen species by in situ decomposition of ozone on the catalyst surface. Water vapour further enhanced the performance due to the in situ formation of OH radicals. [Figure not available: see fulltext.]
机译:已在催化非热等离子体介电势垒放电反应器中研究了所选挥发性有机化合物(VOC)混合物的分解。本研究选择了由正己烷,环己烷和对二甲苯组成的VOCs混合物。研究了内电极经锰和钴金属氧化物改性的DBD反应器对VOCs混合物的分解特性。结果表明,VOCs的去除效率顺序为对二甲苯>环己烷>正己烷。在催化研究中,MnOx / SMF(金属纤维烧结电极上的氧化锰)表现出更好的性能,这可能是由于臭氧在催化剂表面原位分解而形成的活性氧。由于原位形成OH自由基,水蒸气进一步提高了性能。 [图不可用:请参见全文。]

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