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Degradation of 4-Chlorophenol using a Gas–Liquid Gliding Arc Discharge Plasma Reactor

机译:气液滑弧放电等离子体反应器降解4-氯苯酚

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The gas–liquid gliding arc discharge plasma is used directly to study degradation and dechlorination of 4-Chlorophenol (4-CP) in solution. The typical AC waveforms of discharge voltage and current revealed that the discharge behavior was not definitely periodic. The chemical oxygen demand (COD) abatement of 4-CP solution with stainless steel electrode is higher than that with aluminum or brass electrode; When air was used as carrier gas the COD abated from 1,679.2 to 190 mg/L (i.e., 88.68% abatement) after 76 min plasma treatment; Increasing gas–liquid mixing rate could also increase the degradation of 4-CP; adding appropriate amounts of Fe2+ or iron chips to the solution were found to be favorable for 4-CP degradation. The main intermediates of 4-CP degradation are p-benzoquinone, hydroquinone, 4-chlorocatechol, p-chloronitrobenzene, and ring cleavage products (acetic acid, glycol, propanone, and others). Furthermore, possible pathways of 4-CP degradation in solution are proposed.
机译:气液滑行电弧放电等离子体直接用于研究溶液中4-氯酚(4-CP)的降解和脱氯。放电电压和电流的典型交流波形表明,放电行为并不是周期性的。用不锈钢焊条减少4-CP溶液的化学需氧量(COD)高于用铝或黄铜焊条减少化学需氧量(COD)。当使用空气作为载气时,等离子处理76分钟后,COD从1,679.2降低至190 mg / L(即,降低了88.68%)。气液混合速率的增加也可能会增加4-CP的降解。发现向溶液中添加适量的Fe2 +或铁屑有利于4-CP降解。 4-CP降解的主要中间体是对苯醌,对苯二酚,4-氯邻苯二酚,对氯硝基苯和环裂解产物(乙酸,乙二醇,丙酮等)。此外,提出了溶液中4-CP降解的可能途径。

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