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Removal Efficiency and Mechanism of Sulfamethoxazole in Aqueous Solution by Bioflocculant MFX

机译:生物絮凝剂MFX对磺胺甲恶唑的去除效果及机理

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摘要

Although the treatment technology of sulfamethoxazole has been investigated widely, there are various issues such as the high cost, inefficiency, and secondary pollution which restricted its application. Bioflocculant, as a novel method, is proposed to improve the removal efficiency of PPCPs, which has an advantage over other methods. Bioflocculant MFX, composed by high polymer polysaccharide and protein, is the metabolism product generated and secreted by Klebsiella sp. In this paper, MFX is added to 1 mg/L sulfanilamide aqueous solution substrate, and the removal ratio is evaluated. According to literatures review, for MFX absorption of sulfanilamide, flocculant dosage, coagulant-aid dosage, pH, reaction time, and temperature are considered as influence parameters. The result shows that the optimum condition is 5 mg/L bioflocculant MFX, 0.5 mg/L coagulant aid, initial pH 5, and 1 h reaction time, and the removal efficiency could reach 67.82%. In this condition, MFX could remove 53.27% sulfamethoxazole in domestic wastewater, and the process obeys Freundlich equation. R 2 value equals 0.9641. It is inferred that hydrophobic partitioning is an important factor in determining the adsorption capacity of MFX for sulfamethoxazole solutes in water; meanwhile, some chemical reaction probably occurs.
机译:尽管对磺胺甲恶唑的处理技术进行了广泛的研究,但是仍然存在各种问题,例如成本高,效率低和二次污染限制了其应用。提出了一种生物絮凝剂作为一种新的方法来提高PPCP的去除效率,它比其他方法具有优势。由高分子多糖和蛋白质组成的生物絮凝剂MFX是克雷伯菌(Klebsiella sp。)产生和分泌的代谢产物。本文将MFX加入到1 ismg / L磺胺酰胺水溶液中,评估去除率。根据文献综述,对于磺胺的MFX吸收,絮凝剂剂量,助凝剂剂量,pH,反应时间和温度被认为是影响参数。结果表明,最佳工艺条件为生物絮凝剂MFX5μmg/ L,助凝剂0.5μmg/ L,初始pH 5,反应时间1μh,脱除率可达67.82%。在此条件下,MFX可以去除生活污水中的53.27%磺胺甲恶唑,该过程符合Freundlich方程。 R 2 值等于0.9641。据推测,疏水性分配是决定MFX对磺胺甲恶唑溶质在水中的吸附能力的重要因素。同时,可能发生一些化学反应。

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