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Fenton oxidation of gallic and p-coumaric acids in water assisted by an activated carbon cloth

机译:活性炭布在水中芬顿氧化没食子酸和对香豆酸

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The objective of this study was to investigate the effect of the presence of an activated carbon cloth (ACC) during the degradation and removal of gallic acid (GA) and p-coumaric acid (pCA) by Fenton oxidation using H2O2 and FeSO4 as catalyst. Removal of GA or pCA by Fenton oxidation was much higher than that of total organic carbon (TOC), indicating that a large proportion of GA or pCA degradation products was not mineralized. The presence of ACC increased the concentration of hydroxyl radicals generated in the FeSO4 + H2O2 system. The presence of ACC during Fenton oxidation largely increased TOC and GA removal, attributable to the adsorption of GA and its degradation products and the increased generation of OH center dot radicals that mineralize them. In the Fenton oxidation of pCA, the presence of ACC produced the same effects as for GA, but now the increased removal of pCA was due to adsorption on the activated carbon and not to the increased generation of hydroxyl radicals, due to the greater affinity of pCA for the carbon surface and its more difficult mineralization in comparison to GA.
机译:这项研究的目的是研究使用H2O2和FeSO4作为催化剂通过Fenton氧化降解和去除没食子酸(GA)和对香豆酸(pCA)期间活性炭布(ACC)的影响。 Fenton氧化去除GA或pCA的含量远高于总有机碳(TOC),表明大部分GA或pCA降解产物未矿化。 ACC的存在增加了FeSO4 + H2O2系统中生成的羟基自由基的浓度。 Fenton氧化过程中ACC的存在大大提高了TOC和GA的去除率,这归因于GA及其降解产物的吸附以及使它们矿化的OH中心点自由基的生成增加。在pCA的Fenton氧化中,ACC的存在产生了与GA相同的效果,但是现在pCA的去除增加是由于吸附在活性炭上,而不是由于羟基的亲和力更大而导致的羟基自由基生成增加。相对于GA,碳表面的pCA及其更难矿化。

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