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Degradation of organic contaminants by activated persulfate using zero valent copper in acidic aqueous conditions

机译:在酸性水溶液条件下使用零价铜通过活化过硫酸盐降解有机污染物

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摘要

Recently, persulfate (PS) has fascinated practitioners of water treatment as a promising oxidant for in situ chemical oxidation. In this study, zero valent copper (nZVC) particles were employed as an activator for PS to degrade organic contaminants. Benzoic acid (BA) was almost completely degraded in 25 min, and the nZVC/PS process exhibited a ubiquitous oxidizing capacity on various organic contaminants (including acid orange 7, nitrobenzene, dimethyl phthalate, diethylstilbestrol, bisphenol A, and 2,4-dichlorophenol). The mechanism investigation showed that PS can accelerate the corrosion of nZVC to release Cu+ in acidic aqueous conditions, and the reactive radicals were generated through the further activation of PS by intermediate Cu+ via a Fenton-like reaction. Both sulfate radical (SO4 degrees C) and hydroxyl radical ((OH)-O-center dot) were considered as the primary reactive radicals in the nZVC/PS process due to the intense inhibition with the addition of methanol (MA) and tert-butyl alcohol (TBA). Moreover, the degradation rate of BA increased gradually with an increase of nZVC dosage, and the decrease of the initial pH range from 5.4 to 2.0.
机译:最近,过硫酸盐(PS)吸引了水处理从业人员作为原位化学氧化的有希望的氧化剂。在这项研究中,零价铜(nZVC)颗粒被用作PS的活化剂以降解有机污染物。苯甲酸(BA)在25分钟内几乎完全降解,nZVC / PS工艺对各种有机污染物(包括酸橙7,硝基苯,邻苯二甲酸二甲酯,邻苯二甲酸二乙酯,双酚A和2,4-二氯苯酚)表现出普遍的氧化能力。 )。机理研究表明,PS可以加速nZVC在酸性水溶液条件下的腐蚀,释放出Cu +,反应性自由基是通过Fenton样反应通过中间Cu +对PS的进一步活化而产生的。硫酸根(SO4摄氏度)和羟基((OH)-O-中心点)都被认为是nZVC / PS过程中的主要反应性自由基,原因是加入甲醇(MA)和叔-丁醇(TBA)。此外,随着nZVC剂量的增加,BA的降解率逐渐增加,初始pH值从5.4降低至2.0。

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