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首页> 外文期刊>Plasma processes and polymers >Study of the plasma–liquid interaction for an argon nonthermal microwave plasma jet from the analysis of benzene degradation
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Study of the plasma–liquid interaction for an argon nonthermal microwave plasma jet from the analysis of benzene degradation

机译:从苯降解分析中研究氩非热微波等离子体射流等离子体 - 液相相互作用

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The interaction of an argon microwave plasma jet with a benzene layer on water has been analyzed under different conditions (power, gas flow, plasma-sample distance, and treatment time) in this study. Main products formed upon treatment are phenol, catechol, and nitrobenzene, which shows that this jet is a source of radicals (OH)-O-center dot and (NO2)-N-center dot, inducing benzene oxidation and nitration. Excited argon species in the plasma have been proven to play an outstanding role in degradation processes, which mostly occur at the gas phase. Results are compared with those from the direct interaction of the plasma jet with water. For this purpose, aqueous solutions of 3-coumarin carboxylic acid are treated and the hydroxylation of this compound is studied. The effect of the benzene layer preventing water evaporation is demonstrated.
机译:在本研究中的不同条件(功率,气体流动,血浆 - 样品距离和治疗时间)下分析了氩气微波等离子体射流与苯层的相互作用。在处理时形成的主要产品是苯酚,儿茶酚和硝基苯,表明该射流是基团(OH)-O-中心点和(NO2)-N中心点的源,诱导苯氧化和硝化。已证明等离子体中的激发氩物种在降解过程中发挥着突出的作用,主要发生在气相。将结果与来自血浆喷射与水的直接相互作用的结果进行比较。为此目的,处理3-香豆素羧酸的水溶液,研究该化合物的羟基化。证明了防止水蒸发的苯层的效果。

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