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Remediation of waters contaminated with ionic herbicides by sorption on polymerin

机译:通过对多聚酶的吸附来修复被离子除草剂污染的水

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This study investigated the sorption of paraquat and 2,4-D on polymerin, the humic acid-like fraction of olive mill wastewater. Effects of pH, contact time, initial concentration and sorbent dosage on the sorption of both herbicides were studied. The sorption mechanism of paraquat on polymerin was consistent with the ion exchange of this herbicide with Ca, Mg and K natively occurring in the sorbent; in contrast, 2,4-D was bound to polymerin by hydrogen bonding. Simulated wastewaters contaminated with paraquat were purified after three sorption cycles on polymerin renewed at each cycle, at a solid/liquid ratio of 0.5, whereas those containing 2,4-D showed a maximal residue removal of 44% after two sorption cycles at the same ratio. The possible application of this model to other water-soluble herbicides, as well as the possible exploitation of polymerin as a bio-filter for the decontamination of pollution point sources is briefly discussed.
机译:这项研究调查了百草枯和2,4-D在聚合酶上的吸附,聚合酶是橄榄磨坊废水中的腐殖酸样部分。研究了pH,接触时间,初始浓度和吸附剂用量对两种除草剂吸附的影响。百草枯在聚合酶上的吸附机理与该除草剂与天然存在于吸附剂中的Ca,Mg和K的离子交换相一致。相反,通过氢键将2,4-D结合到聚合蛋白上。经过三个吸附循环后,模拟的被百草枯污染的废水在每个吸附循环中更新后的聚合酶上进行了三个吸附循环,固/液比为0.5,而含有2,4-D的废水在相同的两个吸附循环后显示出最大残留去除率为44%比。简要讨论了该模型在其他水溶性除草剂中的可能应用,以及可能将聚合酶作为生物过滤器对污染点源进行净化的可能性。

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