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Chlorinated Organic Compounds Decomposition in a Dielectric Barrier Discharge

机译:介电势垒放电中的氯化有机物分解

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The decomposition of chlorinated volatile organic compounds by non-thermal plasma generated in a dielectric barrier discharge was investigated. As model compounds trichloroethylene (TCE) and 1,2-dichloroethane (DCE) were chosen. It was found that TCE removal exceeds 95% for input energy densities above 0.2 eV/molecule, regardless of the initial concentration of TCE, in the range 100–750 ppm. On the other hand, DCE was more difficult to decompose, the removal rate reached a maximum of 60% at the highest input energy used. For both investigated compounds the selectivity towards carbon dioxide was significantly influenced by their initial concentration, increasing when low concentrations were used. The gas flow rate had also an effect on CO2 selectivity, which is higher at low flow rate, due to the higher residence time of the gas in the plasma. The best values obtained in these experiments were around 80%.
机译:研究了在电介质阻挡层放电中产生的非热等离子体对氯化挥发性有机化合物的分解。作为模型化合物,选择了三氯乙烯(TCE)和1,2-二氯乙烷(DCE)。研究发现,对于0.2 eV /分子以上的输入能量密度,无论TCE的初始浓度在100–750 ppm范围内,TCE去除率均超过95%。另一方面,DCE更难分解,在使用最高输入能量的情况下,去除率最高达到60%。对于这两种研究的化合物,其二氧化碳的选择性都受到其初始浓度的显着影响,当使用低浓度时,其选择性会增加。气体流速对CO 2选择性也有影响,由于气体在等离子体中的停留时间较长,因此在低流速下CO 2选择性更高。在这些实验中获得的最佳值约为80%。

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