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首页> 外文期刊>International Journal of Environmental Science and Technology >Decomposition of gas-phase chloroform using nanophotocatalyst downstream the novel non-thermal plasma reactor: by-products elimination
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Decomposition of gas-phase chloroform using nanophotocatalyst downstream the novel non-thermal plasma reactor: by-products elimination

机译:在新型非热等离子体反应器下游使用纳米光催化剂分解气相氯仿:消除副产物

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摘要

Combination the non-thermal plasma technique by photocatalytic oxidation can enhance volatile organic compounds degradation. In this study, the decomposition of chloroform vapors in a novel non-thermal plasma reactor as well as an integrated system of this reactor in conjunction with the photocatalysis process was investigated. Expanded graphite was used as discharge electrode of dielectric barrier discharge reactor and the support of TiO2 and ZnO catalysts as well. Results showed that chloroform degradation increased in hybrid system. The non-thermal plasma reactor had high content of NO and NO2, whereas the concentration of these two pollutants dropped dramatically in hybrid system; moreover, the generated ozone from the non-thermal plasma process was degraded on the photocatalyst and consequently was not detected in the output gas of the combined system. The generated organic by-products in non-thermal plasma process (phosgene and trichloroacetaldehyde) were reoxidized with un-oxidized chloroform in the second stage of the combined system. This increased the selectivity of CO2 and Cl-2.
机译:通过光催化氧化结合非热等离子体技术可以增强挥发性有机化合物的降解。在这项研究中,研究了氯仿蒸气在新型非热等离子体反应器中的分解以及该反应器与光催化过程的集成系统。膨胀石墨用作介电势垒放电反应器的放电电极,也用作TiO2和ZnO催化剂的载体。结果表明,混合体系中氯仿的降解增加。非热等离子体反应器中NO和NO2含量较高,而这两种污染物的浓度在混合系统中急剧下降。此外,由非热等离子体过程产生的臭氧在光催化剂上被降解,因此在组合系统的输出气体中没有被检测到。在合并系统的第二阶段,将非热等离子体过程中生成的有机副产物(光气和三氯乙醛)用未氧化的氯仿再氧化。这增加了CO 2和Cl-2的选择性。

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