气相脉冲放电等离子体分解水中苯酚

Yan Wu, Jie Li, Guo-Feng Li, Nan Li, Guang-Zhou Qu, Chang-Hai Sun, Masayuki Sato
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引用次数: 6

摘要

介绍了一种新型电极结构的脉冲放电反应器,用于分解水中苯酚。将多孔陶瓷管中间的钨丝和附着在反应器容器内壁的陶瓷管外的不锈钢网分别作为放电电极和接地电极。多孔陶瓷管使气相和液相分离。氧气作为气相,通过多孔陶瓷管进入苯酚溶液。在氧气气氛中脉冲放电产生的自由基,如O3、O -、·O,通过管的孔隙溶解在溶液中,苯酚可被这些自由基降解。考察了放电能量、气体鼓泡速率、溶液电导率和溶液pH对苯酚分解效率的影响。结果表明:增大放电能量可以提高分解效率;气体鼓泡速率和溶液电导率对苯酚分解效率影响不大,说明新型脉冲放电反应器在电导率较大范围内处理废水具有较好的可行性;将放电电极置于氧气氛中,可防止电极的腐蚀,有利于脉冲放电处理有机污染物的产业化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Decomposition of Phenol in Water by Gas Phase Pulse Discharge Plasma
This paper introduced a pulse discharge reactor with a novel electrode configuration for decomposition of phenol in water. A tungsten wire in the middle of the porous ceramic tube and a stainless steel mesh outside the ceramic tube attached to the inner wall of the reactor vessel were constructed as discharge electrode and ground electrode, respectively. The porous ceramic tube made gas phase and liquid phase separated. Oxygen, as the gas phase, was bubbled into phenol solution through the porous ceramic tube. The radicals, such as O3, O - , ·O, generated by pulse discharge in the oxygen atmosphere, dissolved in the solution through the pores of the tube and phenol can be degraded by these radicals. The effects of discharge energy, gas bubbling rate, solution conductivity and solution pH on the decomposition efficiency of phenol were investigated. The results showed that increased discharge energy could enhance the decomposition efficiency; the gas bubbling rate and solution conductivity had little effects on the decomposition efficiency of phenol, indicating that the new pulse discharge reactor had good feasibility for the wastewater treatment in a large range of conductivity; the discharge electrode located in oxygen atmosphere could prevent the erosion of the electrode, which was in favor of the industrialization of pulse discharge for treating organic contaminant.
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