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首页> 外文期刊>Chemosphere >Degradation mechanisms of 4-chlorophenol in a novel gas-liquid hybrid discharge reactor by pulsed high voltage system with oxygen or nitrogen bubbling
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Degradation mechanisms of 4-chlorophenol in a novel gas-liquid hybrid discharge reactor by pulsed high voltage system with oxygen or nitrogen bubbling

机译:氧气或氮气鼓泡的脉冲高压系统在新型气液混合放电反应器中降解4-氯苯酚的机理

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摘要

The effect of gas bubbling on the removal efficiency of 4-chlorophenol (4-CP) in aqueous solution has been investigated using a novel pulsed high voltage gas-liquid hybrid discharge reactor, which generates gas-phase discharge above the water surface simultaneously with the spark discharge directly in the liquid. The time for 100% of 4-CP degradation in the case of oxygen bubbling (7 min) was much shorter than that in the case of nitrogen bubbling (25 min) as plenty of hydrogen peroxide and ozone formed in oxygen atmosphere enhanced the removal efficiency of 4-CP. Except for the main similar intermediates (4-chlorocatechol, hydroquinone and 1,4-benzoqui-none) produced in the both cases of oxygen and nitrogen bubbling, special intermediates (5-chloro-3-nitropyrocatechol, 4-chloro-2-nitro-phenol, nitrate and nitrite ions) were produced in nitrogen atmosphere. The reaction pathway of 4-CP in the case of oxygen bubbling was oxygen/ozone attack on the radical hydroxylated derivatives of 4-CP. However, in the case of nitrogen bubbling, hydroxylation was the main reaction pathway with effect of N atom on degradation of 4-CP.
机译:使用新型脉冲高压气液混合放电反应器研究了气体鼓泡对水溶液中4-氯苯酚(4-CP)去除效率的影响,该反应器在水表面上方产生气相放电,同时产生火花直接在液体中放电。氧气鼓泡(7分钟)中4-CP降解100%的时间比氮气鼓泡(25分钟)中4-CP降解的时间短得多,因为在氧气气氛中形成大量的过氧化氢和臭氧提高了去除效率4-CP。除了在氧气和氮气鼓泡的情况下都产生的主要相似中间体(4-氯邻苯二酚,对苯二酚和1,4-苯并喹酮)外,还有特殊中间体(5-氯-3-硝基邻苯二酚,4-氯-2-硝基-苯酚,硝酸根和亚硝酸根离子)在氮气氛下产生。在氧气鼓泡的情况下,4-CP的反应途径是氧/臭氧攻击4-CP的自由基羟基化衍生物。然而,在氮鼓泡的情况下,羟基化是影响N原子降解4-CP的主要反应途径。

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