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Aqueous 1-naphthol Decomposition by DC Water Plasma at Atmospheric Pressure

机译:直流水等离子体在大气压下进行1-萘酚水溶液

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Water thermal plasma is one of the effective methods to decompose persistent organic pollutants in waste liquid At present work, the decomposition of high concentration 1-naphthol in direct current (DC) water plasma was investigated. The experimental results showed that the major gaseous effluents were H2 (42.1—50.4%), CO2 (11.7—15.2%), CO (3.9—76%), CH4 (0.01—0.15%) and the content of the syngas was over 49.6%. The gas temperature was 5500 K under the condition of current at 7A and intial concentration at 500 mg/L. The decomposition efficiencies of 1-naphthol, COD and TOC were increased with the increase of the current (6A—SA). The maximum decomposition efficiency of 1-naphthol was over 99.5% at the current of 8 A. The higher initial concentration can lead to lower 1-naphthol degradation. This study provided an experimental analysis for the application of water vapor plasma technology in treatment of high concentration organic wastewater.
机译:水热等离子体是在当前工作中分解废液中持续有机污染物的有效方法之一,研究了高浓度1-萘酚在直流(DC)水等离子体中的分解。实验结果表明,主要气态流出物是H. 2 (42.1-50.4%),CO 2 (11.7-15.2%),CO(3.9-76%),CH 4 (0.01-0.15%),合成气的含量超过49.6%。在7A的电流条件下,气体温度为5500 k,并且在500mg / L的血液浓度下。随着电流的增加(6A-SA),增加了1-萘酚,COD和TOC的分解效率。在8A的电流下,1-萘酚的最大分解效率超过99.5%。较高的初始浓度可导致1-萘酚降低。该研究提供了水蒸气血浆技术在高浓度有机废水中应用的实验分析。

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