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Photocatalytic degradation of Bisphenol A: Kinetic studies and determination of the reaction pathway

机译:双酚A的光催化降解:动力学研究和反应途径的确定

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Abstract The photocatalytic degradation of BPA aqueous solutions with commercial TiO2 (Evonik P25) was carried out in a home-made batch reactor illuminated with four UV lamps (λmax=365 nm) in order to determine the kinetic parameters of the reaction rate equation and to identify and quantify some of the most stable aromatic intermediate reaction products. Low concentration (20 ppm) BPA solutions were completely degraded and mineralized in less than three hours of reaction. Whereas, BPA aqueous solutions with concentration above 50 ppm are transformed in other chemical compounds in 6 hours of reaction and fully mineralized in 15 hours of reaction. Kinetic analysis of the experimental results of BPA concentration as a function of time indicated that this photocatalytic degradation process follows a LH-HW reaction rate law where the reaction order shift from zero order to first order as the reactant concentration is decreased. Analysis of the reaction samples by different analytical techniques indicated that BPA is mineralized via formation of hydroquinone, benzoquinone, benzene-triol, catechol, and phenol by two simultaneous reaction pathways.
机译:摘要为了确定反应速率方程的动力学参数并确定四价紫外灯的动力学参数,在市售的分批反应器中,用四只紫外灯(λmax= 365 nm)对商用二氧化钛(Evonik P25)对双酚A水溶液进行了光催化降解。鉴定和定量一些最稳定的芳族中间反应产物。低浓度(20 ppm)的BPA溶液在不到三小时的反应中被完全降解并矿化。而浓度超过50 ppm的BPA水溶液在6小时的反应中转化为其他化合物,并在15小时的反应中完全矿化。 BPA浓度随时间变化的实验结果的动力学分析表明,该光催化降解过程遵循LH-HW反应速率定律,其中随着反应物浓度的降低,反应顺序从零级变为一级。通过不同的分析技术对反应样品进行分析表明,BPA是通过两个同时的反应途径通过形成对苯二酚,苯醌,苯三醇,邻苯二酚和苯酚而矿化的。

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