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An energy-efficient process for decomposing perfluorooctanoic and perfluorooctane sulfonic acids using dc plasmas generated within gas bubbles

机译:使用气泡内产生的直流等离子体分解全氟辛酸和全氟辛烷磺酸的节能方法

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Perfluorooctanoic acid (PFOA) and perfluorooctane sulfonic acid (PFOS) are environmentally harmful and persistent substances. Their decomposition was investigated using dc plasmas generated within small gas bubbles in a solution. The plasma characteristics including discharge voltage, voltage drop in the liquid, plasma shape and the emission spectrum were examined with different gases. The decomposition rate and energy efficiency were evaluated by measuring the concentration of fluoride and sulfate ions released from PFOA/PFOS molecules. The concentration of fluoride ions and energy efficiency in the treatment of a PFOS solution were 17.7 mg l~(-1) (54.8% of the initial amount of fluorine atoms) and 26 mg kWh~(-1), respectively, after 240 min of operation. The addition of scavengers of hydroxyl radicals and hydrated electrons showed little effect on the decomposition. The decomposition processes were analyzed with an assumption that positive species reacted with PFOA/PFOS molecules at the boundary of the plasma-solution surface. This type of plasma showed a much higher decomposition energy efficiency compared with energy efficiencies reported in other studies.
机译:全氟辛酸(PFOA)和全氟辛烷磺酸(PFOS)是对环境有害且持久的物质。使用溶液中小气泡内产生的直流等离子体研究了它们的分解。用不同的气体检查了等离子体特性,包括放电电压,液体中的电压降,等离子体形状和发射光谱。通过测量从PFOA / PFOS分子释放的氟离子和硫酸根离子的浓度来评估分解速率和能效。在处理240分钟后,处理全氟辛烷磺酸溶液中的氟离子浓度和能效分别为17.7 mg l〜(-1)(初始氟原子量的54.8%)和26 mg kWh〜(-1)。操作。羟基自由基清除剂和水合电子的添加对分解几乎没有影响。分析分解过程的假设是,正离子与血浆溶液表面边界处的PFOA / PFOS分子发生反应。与其他研究报告的能量效率相比,这种等离子体显示出更高的分解能量效率。

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