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首页> 外文期刊>The Science of the Total Environment >Removal of bisphenols A and S by adsorption on activated carbon clothes enhanced by the presence of bacteria
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Removal of bisphenols A and S by adsorption on activated carbon clothes enhanced by the presence of bacteria

机译:通过吸附在活性炭衣服上而去除双酚A和S,细菌的存在增强了这种活性

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摘要

This study investigated the adsorption of two endocrine-disrupting chemicals, bisphenol A (BPA) and S (BPS), from water using activated carbon clothes (ACCs), as-received and oxidized, in the absence and presence of bacteria, analyzing both kinetic and equilibrium adsorption data. Kinetic study of the different systems showed that the adsorption rate was affected both by the oxidation of the adsorbent and by the presence of bacteria. Bisphenol adsorption kinetics followed a second-order kinetic model, with rate constants between 0.0228 and 0.0013 g min(-1) mol(-1). ACC was a much better adsorbent of E. coli compared to granular activated carbons, achieving 100% adsorption at 24 h. ACC oxidation reduced the adsorption capacity and the adsorbent-adsorbate relative affinity due to the decrease in carbon surface hydrophobicity. Conversely, the presence of bacteria in aqueous solution increased the ACC surface hydrophobicity and therefore enhanced the adsorption capacity of BPA and BPS on ACC, which was 33% and 24%, respectively. In all cases, more BPS than BPA was removed due to the greater dipolar moment of the former. Results found show that activated carbon clothes in the presence of bacteria can be an adequate process to remove bisphenol A and S from different aqueous systems. (C) 2019 Elsevier B.V. All rights reserved.
机译:这项研究调查了在不存在细菌的情况下,使用活性炭衣服(ACC)吸收并氧化了两种破坏内分泌的化学物质,双酚A(BPA)和S(BPS)从水中的吸附情况,并分析了动力学和平衡吸附数据。对不同系统的动力学研究表明,吸附速率受吸附剂氧化和细菌存在的影响。双酚吸附动力学遵循二级动力学模型,速率常数介于0.0228至0.0013 g min(-1)mol(-1)之间。与颗粒状活性炭相比,ACC对大肠杆菌的吸附性要好得多,在24小时内达到100%的吸附率。由于碳表面疏水性的降低,ACC氧化降低了吸附能力和吸附剂-被吸附物的相对亲和力。相反,水溶液中细菌的存在增加了ACC表面的疏水性,因此提高了BPA和BPS在ACC上的吸附能力,分别为33%和24%。在所有情况下,由于前者的偶极矩更大,因此去除的BPS比BPA多。结果发现,在有细菌存在的情况下,活性炭衣服可能是从不同水性系统中去除双酚A和S的适当方法。 (C)2019 Elsevier B.V.保留所有权利。

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