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Decomposition of Volatile Organic Compounds in Plasma-Catalytic System

机译:等离子体催化系统中挥发性有机化合物的分解

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A plasma-catalytic combined reactor system was used to decompose volatile organic compounds. Metal oxide catalysts, as well as Pt-based catalyst, were employed in the studies. The plasma treatment alone leads to the formation of high concentration of byproducts. A Pt-based catalyst, combined with plasma reactor, was helpful in minimizing the byproduct formation. The plasma reactor significantly enhances the catalytic performance. Plasma reactor, combined with Pt-based catalyst, removed more than 90% of toluene. The Pt-based catalyst completely removed the CO produced by plasma reactor. In order to determine the mechanism of the plasma treatment, the plasma reactor was replaced, by ozone reactor and the results were compared with plasma-catalytic reactor. It was found that ozone plays a significant role in enhancing the catalytic activity.
机译:等离子体催化组合反应器系统用于分解挥发性有机化合物。在研究中使用了金属氧化物催化剂以及基于Pt的催化剂。单独的等离子体处理导致高浓度的副产物的形成。铂基催化剂与等离子反应器相结合,有助于最大程度地减少副产物的形成。等离子体反应器大大提高了催化性能。等离子体反应器与基于Pt的催化剂相结合,去除了90%以上的甲苯。基于Pt的催化剂完全除去了由等离子体反应器产生的CO。为了确定等离子体处理的机理,用臭氧反应器代替了等离子体反应器,并将结果与​​等离子体催化反应器进行了比较。发现臭氧在增强催化活性中起重要作用。

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