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Degradation of bisphenol a in water by Fe(III)/UVA and Fe(III)/ polycarboxylate/UVA photocatalysis

机译:Fe(III)/ UVA和Fe(III)/聚羧酸盐/ UVA光催化降解水中的双酚a

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摘要

The photodegradation of the endocrine disrupting chemical Bisphenol A (BPA) under UVA irradiation in the presence of Fe(III) or Fe(III)-polycarboxylate systems was studied. The effect of Fe(III) concentration, aqueous pH and the presence of four carboxylic acids (oxalic, malic, tartaric and citric) were investigated. The Fe(III)/UVA system was able to effectively degrade BPA at pH 3 but failed at pH > 4. At any rate, no mineralization of BPA was achieved with the Fe(III)/UVA system. The presence of carboxylic acids greatly enhanced the BPA degradation rate because of the formation of photoactive Fe(III)-polycarboxylate complexes. Aqueous pH in the 3-7 range exerted a negative effect on the BPA degradation rate and TOC conversion in the presence of oxalic, malic and tartaric acids. Only slight effect of pH was observed in the presence of citric acid, being the BPA degradation rate significant even at pH 7.
机译:研究了在Fe(III)或Fe(III)-聚羧酸盐体系存在下,UVA照射下内分泌干扰化学双酚A(BPA)的光降解。研究了Fe(III)浓度,pH水溶液和四种羧酸(草酸,苹果酸,酒石酸和柠檬酸)的存在的影响。 Fe(III)/ UVA系统能够在pH 3时有效降解BPA,但在pH> 4时失败。无论如何,Fe(III)/ UVA系统无法实现BPA矿化。羧酸的存在极大地提高了BPA的降解速度,因为形成了光敏的Fe(III)-聚羧酸盐配合物。在草酸,苹果酸和酒石酸的存在下,水溶液的pH在3-7范围内会对BPA降解速率和TOC转化产生负面影响。在柠檬酸存在下,仅观察到pH值的轻微影响,即使在pH值为7时,BPA的降解速度也很明显。

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