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An investigation of an underwater steam plasma discharge as alternative to air plasmas for water purification

机译:水下蒸汽等离子排放替代空气等离子净化水的研究

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An underwater steam plasma discharge, in which water itself is the ionizing media, is investigated as a means to introduce advanced oxidation species into contaminated water for the purpose of water purification. The steam discharge avoids the acidification observed with air discharges and also avoids the need for a feed gas, simplifying the system. Steam discharge operation did not result in a pH changes in the processing of water or simulated wastewater, with the actual pH remaining roughly constant during processing. Simulated wastewater has been shown to continue to decompose significantly after steam treatment, suggesting the presence of long-lived plasma produced radicals. During steam discharge operation, nitrate production is limited, and nitrite production was found to be below the detection threshold of (roughly 0.2 mg L-1). The discharge was operated over a broad range of deposited power levels, ranging from approximately 30 W to 300 W. Hydrogen peroxide production was found to scale with increasing power. Additionally, the hydrogen peroxide production efficiency of the discharge was found to be higher than many of the rates reported in the literature to date.
机译:水下蒸汽等离子体放电,其中水本身是离子化介质,已被研究作为一种将高级氧化物质引入污染水中以净化水的方法。蒸汽排放避免了空气排放时发生的酸化现象,也避免了对进料气的需求,从而简化了系统。蒸汽排放操作不会导致水或模拟废水的处理过程中pH值发生变化,而实际pH值在处理过程中大致保持恒定。已显示,经过模拟处理的废水在蒸汽处理后仍会继续大量分解,这表明存在长寿命的等离子体产生的自由基。在蒸汽排放过程中,硝酸盐的产生受到限制,并且亚硝酸盐的产生低于检测阈值(约0.2 mg L-1)。放电工作在大约30 W至300 W的较宽功率范围内。发现过氧化氢的产生随功率的增加而扩大。另外,发现放电的过氧化氢生产效率高于迄今为止文献中报道的许多速率。

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