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Comparison of Catalytic Activity of Aluminum Oxide and Silica Gel for Decomposition of Volatile Organic Compounds (VOCs) in a Plasmacatalytic Reactor

机译:氧化铝和硅胶在等离子体催化反应器中分解挥发性有机化合物(VOC)的催化活性比较

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By reducing the distance between the dielectric end-fittings of a coaxial pulsed corona reactor to values on the order of millimeters, the efficiency of volatile organic compound (VOC) decontamination of atmospheric pressure air could be increased by a factor of seven over that obtained in reactors with electrode lengths in the centimeter range. The increased efficiency is attributed to the increasing effect of surface streamers with increased electron density compared to streamers in the gas space. Packing the discharge gap of the reactor with catalytically active silica gel pellets further increased the energy efficiency of VOCs decontamination by more than 50% over that obtained in the absence of any packing. Silica gel was shown to remove VOC by adsorption until it became saturated. The adsorption provides a tool for handling surplus VOCs under fluctuating input conditions. Destruction of preadsorbed organics on silica gel was also demonstrated. Aluminum oxide pellets showed no catalytic effect on destruction of VOCs under these conditions.
机译:通过将同轴脉冲电晕反应器的电介质末端装置之间的距离减小到毫米量级,可以将大气压空气中挥发性有机化合物(VOC)的去污效率提高到原来的7倍。电极长度在厘米范围内的反应器。与气体空间中的拖缆相比,效率的提高归因于表面拖缆在电子密度增加的情况下的作用增加。与没有任何填料的情况相比,用具有催化活性的硅胶颗粒填充反应器的排放间隙可以使VOC净化的能量效率进一步提高50%以上。硅胶已显示可通过吸附除去VOC直至饱和。吸附提供了一种在波动的输入条件下处理过量VOC的工具。还证明了硅胶上预吸附有机物的破坏。在这些条件下,氧化铝粒料对VOC的破坏没有催化作用。

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