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Effects of temperature on adsorption and oxidative degradation of bisphenol A in an acid-treated iron-amended granular activated carbon

机译:温度对酸处理铁改性颗粒活性炭中双酚A吸附和氧化降解的影响

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摘要

The present study suggests a combined adsorption and Fenton oxidation using an acid-treated Feamended granular activated carbon (Fe-GAC) for effective removal of bisphenol A in water. When the Fe-GAC adsorbs, and is saturated with BPA in water, Fenton oxidation of BPA occurs in the BPA-spent Fe-GAC for regeneration of the GAC. Particularly this study showed temperature as an effective mean to enhance adsorption, desorption, diffusion and Fenton oxidation associated with the adsorption and Fenton oxidation of BPA on the Fe-GAC. The adsorption rates of BPA onto the Fe-GAC were enhanced with increasing temperature mainly due to increase in diffusion of BPA. The estimated thermodynamic parameters associated with adsorption of BPA indicated that the adsorption of BPA onto the Fe-GAC was a spontaneous, exothermic and physical adsorption process. On the other hand, the molar ratio of [H2O2]:[BPA] (36-108 H2O2/mol BPA) in the Fenton oxidation of the BPA-spent Fe-GAC led to 91-99% removal of BPA with negligible aromatic products and some soluble organic acids. The oxidation rates of BPA and H2O2 during the Fenton oxidation of the BPA-spent Fe-GAC were drastically enhanced by the factor of 2.5 and 5 when the reaction temperature increased from 293 to 331 K, respectively. The comparative analysis of temperature-dependent enhancement in diffusion, desorption and oxidation rates of EPA in Fe-GAC indicated that the BPA oxidation in the Fe-GAC is mainly controlled by diffusive transport of BPA from the Fe-GAC. Besides, the Thiele-modulus analysis clearly supported more significant pore diffusion limitation of H2O2 in the Fe-GAC with increasing temperature and the Fe-GAC particle size. (C) 2014 Elsevier B.V. All rights reserved.
机译:本研究建议使用酸处理的Feamended颗粒状活性炭(Fe-GAC)进行吸附和Fenton氧化相结合,以有效去除水中的双酚A。当Fe-GAC吸附并在水中被BPA饱和时,在BPA消耗的Fe-GAC中会发生BPA的芬顿氧化,从而使GAC再生。特别地,该研究表明温度是增强与Fe-GAC上BPA的吸附和Fenton氧化有关的吸附,解吸,扩散和Fenton氧化的有效手段。随着温度的升高,BPA在Fe-GAC上的吸附速率增加,这主要是由于BPA扩散的增加​​。估计的与BPA吸附有关的热力学参数表明BPA在Fe-GAC上的吸附是自发的,放热的和物理的吸附过程。另一方面,在用过的BPA废Fe-GAC的Fenton氧化中,[H2O2]:[BPA]的摩尔比(36-108 H2O2 / mol BPA)导致芳族产物微不足道的BPA去除率为91-99%和一些可溶性有机酸。当反应温度从293 K升高到331 K时,BPA废Fe-GAC的Fenton氧化过程中BPA和H2O2的氧化速率分别提高了2.5和5倍。对Fe-GAC中EPA扩散,解吸和氧化速率的温度依赖性增强的比较分析表明,Fe-GAC中的BPA氧化主要受B-PA从Fe-GAC的扩散传输控制。此外,Thiele模量分析清楚地表明,随着温度和Fe-GAC粒径的增加,H2O2在Fe-GAC中的孔扩散限制更为明显。 (C)2014 Elsevier B.V.保留所有权利。

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