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Effect of manganese ion on the mineralization of 2,4-dichlorophenol by ozone

机译:锰离子对2,4-二氯苯酚被臭氧矿化的影响

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摘要

Mineralization of 2,4-dichlorophenol (DCP) was studied by ozone with Mn~(2+) as an ozonation catalyst. Laboratory scale semi-batch ozonation experiments were conducted at room temperature. The results showed that trace amount of Mn~(2+) accelerated the mineralization of DCP. Total organic carbon removal rate was independent on Mn~(2+) dosage at its range of 0.1-0.5 mg L~(-1). Dissolved ozone concentration in the solution remained low level in the catalytic ozonation process, which indicated that Mn~(2+) catalyzed decomposition of ozone. DCP mineralization was inhibited in catalytic ozonation by the addition of carbonate. Electron spin resonance/spin-trapping technique was used to determine hydroxyl radicals, and the results showed that larger amounts of hydroxyl radicals were produced in catalytic ozonation system than those of single ozonation. Intermediates mainly including aliphatic carboxylic acids were determined qualitatively and semi-quantitatively by GC-MS. And, a general pathway for mineralization of DCP was proposed.
机译:以Mn〜(2+)为臭氧催化剂,研究了臭氧对2,4-二氯苯酚(DCP)的矿化作用。在室温下进行实验室规模的半间歇臭氧化实验。结果表明,微量的Mn〜(2+)促进了DCP的矿化。在0.1〜0.5 mg L〜(-1)范围内,总有机碳去除率与Mn〜(2+)剂量无关。在催化臭氧化过程中,溶液中溶解的臭氧浓度保持较低水平,这表明Mn〜(2+)催化了臭氧的分解。加入碳酸盐可抑制DCP的矿化作用。用电子自旋共振/自旋捕获技术测定羟基自由基,结果表明,催化臭氧氧化体系中产生的羟基自由基数量要大于单臭氧氧化体系。通过GC-MS定性和半定量确定主要包括脂族羧酸的中间体。并且,提出了DCP矿化的一般途径。

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