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Chemical Efficiency of $hbox{H}_{2}hbox{O}_{2}$ Production and Decomposition of Organic Compounds Under Action of DC Underwater Discharge in Gas Bubbles

机译:$ hbox {H} _ {2} hbox {O} _ {2} $的化学效率在气泡的DC水下放电作用下有机化合物的产生和分解

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摘要

A dc underwater discharge generated in gas bubbles (air, Ar, He, and $ hbox{N}_{2}$) in a $hbox{NaH}_{2}hbox{PO}_{4} bullet 2 hbox{H}_{2}hbox{O}$ solution is studied. It is shown that the maximal concentration of hydrogen peroxide produced in the discharge does not depend on gas composition. The energy efficiency of $hbox{H}_{2}hbox{O}_{2}$ production is, however, gas dependent, and the highest value of 2.95 g/kWh is obtained for air. The decomposition efficiency of the Direct Blue 106 dye, which is used as a model organic pollutant at an initial concentration of 20 mg/L, increases linearly with current in the investigated range (10–30 mA). A maximal dye decoloration of 65% is observed in a $hbox{N}_{2}$ discharge after 20 min of treatment at a current of 30 mA. Different mechanisms of dye decoloration by plasma are proposed and discussed.
机译:在$ hbox {NaH} _ {2} hbox {PO} _ {4}子弹2 hbox中,气泡(空气,Ar,He和$ hbox {N} _ {2} $)中产生的直流水下放电{研究了H} _ {2} hbox {O} $解决方案。结果表明,放电中产生的过氧化氢的最大浓度与气体成分无关。但是,$ hbox {H} _ {2} hbox {O} _ {2} $生产的能源效率取决于气体,并且空气的最高值为2.95 g / kWh。 Direct Blue 106染料的分解效率(在初始浓度为20 mg / L时用作模型有机污染物)随研究范围内的电流(10–30 mA)线性增加。在30 mA电流下处理20分钟后,在$ hbox {N} _ {2} $放电中观察到最大染料脱色率为65%。提出并讨论了等离子体使染料脱色的不同机理。

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