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首页> 外文期刊>Plasma Science & Technology >Removal of volatile organic compounds (VOCs) mixture by multi-pin-mesh corona discharge combined with pulsed high-voltage
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Removal of volatile organic compounds (VOCs) mixture by multi-pin-mesh corona discharge combined with pulsed high-voltage

机译:多针网状电晕放电结合脉冲高压去除挥发性有机化合物(VOC)混合物

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摘要

Removal of single component and binary mixtures of benzene and m-xylene using a multi-pin-mesh reactor was studied to find the decomposition characteristics, carbon balance and CO2 selectivity. The decomposition rate of benzene in mixture was approximately 16% lower than that of single component benzene. However, the decomposition rate of m-xylene in mixture was slightly higher than that of single component m-xylene. Carbon balance of the mixture decomposition process achieved a lower level than that of single component benzene/m-xylene. Increase in the specific input energy was helpful to improve CO2 selectivity in the single component decomposition process, while the specific input energy had a negligible effect on CO2 selectivity in the mixture decomposition process. By changing the oxygen content in background gas, we found that different types of radicals showed different reaction activities toward benzene and m-xylene. Benzene was more likely to react with nitrogen-containing radicals, while m-xylene was more likely to react with oxygen-containing radicals.
机译:研究了使用多针网式反应器去除苯和间二甲苯的单组分和二元混合物,以了解其分解特性,碳平衡和CO2选择性。混合物中苯的分解速率比单组分苯的分解速率低约16%。但是,混合物中间二甲苯的分解速率略高于单组分间二甲苯的分解速率。混合物分解过程的碳平衡低于单组分苯/间二甲苯的碳平衡。比输入能量的增加有助于改善单组分分解过程中的CO 2选择性,而比输入能量对混合物分解过程中的CO 2选择性影响可忽略不计。通过改变背景气体中的氧含量,我们发现不同类型的自由基对苯和间二甲苯的反应活性不同。苯更可能与含氮自由基发生反应,而间二甲苯更可能与含氧自由基发生反应。

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