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Bisphenol A degradation by Fenton Advanced Oxidation Process and operation parameters optimization

机译:Fenton高级氧化法降解双酚A及其操作参数的优化

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Bisphenol A (BPA) is a kind of environmental endocrine disrupting substance, which has been used as an organic chemical as unsaturated polyester resin. The degradation of BPA includes biological methods, physical adsorption and chemical oxidation, all which have their own disadvantages. Owing to its strong oxidization capability and stable treatment performance, Fenton process can degrade organic substances at a high reactive rate and stably effective. In this paper, Fenton oxidation method was optimized to remove BPA in water, during which the intermediate products were analysed to examine its degradation path. The optimal conditions of degradation of BPA by Fenton method were a ratio of C (H2O2)/C (Fe~(2+)) of 10, a pH of 3.5, and the degradation rate increased with the increasing of reaction temperature. It was found that Fenton could break the chemical bond at the junction of BPA and isopropyl group to produce p-diphenol, phenol, isopropyl phenol and other intermediate products.
机译:双酚A(BPA)是一种环境内分泌干扰物质,已被用作有机化学品作为不饱和聚酯树脂。 BPA的降解包括生物方法,物理吸附和化学氧化,所有这些都有其自身的缺点。 Fenton工艺由于其强大的氧化能力和稳定的处理性能,可以高反应速率降解有机物质,并且稳定有效。本文对芬顿氧化法进行了优化,以去除水中的双酚A,在此过程中对中间产物进行了分析,以考察其降解途径。 Fenton法降解BPA的最佳条件是C(H2O2)/ C(Fe〜(2+))之比为10,pH为3.5,降解速率随反应温度的升高而增加。发现芬顿可以破坏BPA和异丙基连接处的化学键,从而生成对二酚,苯酚,异丙基苯酚和其他中间产物。

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