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Investigation of the Relative Reactivity of Unsaturated Volatile Organic Compounds in Air Under the Action of Pulsed Corona Discharge Plasma

机译:脉冲电晕放电等离子体作用下空气中不饱和挥发性有机化合物的相对反应性研究

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Unsaturated volatile organic compounds (VOCs) are an important pollutant of industrial ventilation air emissions. The presence of a double bond in the composition of their molecules increases their reactivity with respect to plasma components generated by a pulsed corona discharge. This paper presents studies of the influence of the nature and structure of unsaturated VOCs on the efficiency of their destruction under the action of pulsed corona discharge with a duration of 20–45 ns. The method of competing reactions based on the investigation of mixtures of the studied compounds is proposed as a research tool. The method allows us to determine the relative reactivity of compounds with high accuracy and identify the main mechanisms. The obtained results showed that the cleaning efficiency for compounds that do not contain chlorine in their composition correlates well with their reactivity with respect to ozone. Halogen-containing unsaturated compounds, in contrast, are resistant to ozone and are removed more efficiently in nitrogen than in air. The found regularities will be useful for the development of air purification systems in the production of plastics and processes involving halogen-containing solvents.
机译:不饱和挥发性有机化合物(VOC)是工业通风空气排放的重要污染物。在其分子组成中双键的存在增加了它们相对于由脉冲电晕放电产生的血浆成分的反应性。本文介绍了在20–45 ns持续时间的脉冲电晕放电作用下,不饱和VOC的性质和结构对其破坏效率的影响的研究。提出了基于对所研究化合物的混合物进行研究的竞争反应方法作为研究工具。该方法使我们能够高精度地确定化合物的相对反应性,并确定主要机理。所得结果表明,对于组成中不含氯的化合物,其清洁效率与其对臭氧的反应性密切相关。相反,含卤素的不饱和化合物具有抗臭氧性,并且在氮中比在空气中更有效地被去除。所发现的规律性将有助于开发用于生产塑料和涉及含卤素溶剂的工艺的空气净化系统。

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