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首页> 外文期刊>Environmental Pollution >Sorption and mobility of metformin and guanylurea in soils as affected by biosolid amendment: Batch and column tests
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Sorption and mobility of metformin and guanylurea in soils as affected by biosolid amendment: Batch and column tests

机译:二甲双胍和鸟粪尿素在土壤中受生物固体改良剂的吸附和迁移:分批和柱试验

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Recent classification of metformin as an emerging contaminant warrants assessment of its fate and behaviour in the natural environment especially with land-based application of potentially contaminated wastewaters and biosolids. The present study provided further insight into the sorption mechanisms of metformin and its transformation product guanylurea in soil and upon biosolid fortification. Decreased metformin sorption (12.4%) as measured by the effective distribution coefficient (K-d(eff)) was observed with biosolids amendment while significant increase (2500%) in guanylurea sorption was calculated. Analysis of co-solute effects confirmed their contrasting sorption mechanisms with the absence of competitive effects in unamended soil. Results of the column tests were in good agreement with the batch sorption studies as the fitted values of retardation factors decreased and increased for metformin and guanylurea, respectively, upon addition of biosolids. The shapes of the breakthrough curves suggest slower desorption rates for both compounds in unamended soil resulting to non-equilibrium conditions and back-end tailings. However, in biosolid-amended soil columns, these tailings were less pronounced resembling equilibrium transport. Results also demonstrated enhanced mobility of both compounds upon biosolids fortification. The non-equilibrium chemical transport model fitted the measured data well (0.975 r(2) 0.988) especially for unamended soils which suggests the existence of non-equilibrium conditions and rate-limited sorption sites. (C) 2018 Elsevier Ltd. All rights reserved.
机译:二甲双胍最近被列为一种新兴污染物,因此有必要对其在自然环境中的命运和行为进行评估,尤其是在陆上应用潜在污染的废水和生物固体的情况下。本研究为进一步了解二甲双胍及其转化产物鸟嘌呤在土壤中的吸附机理以及生物固体强化后的吸附机理。观察到有效浓度系数(K-d(eff))测定的二甲双胍吸附量减少了(12.4%),而生物固形物得到了修正,而胍基脲的吸附量却显着增加了(2500%)。对共溶质效应的分析证实了它们的对比吸附机制,而在未改良的土壤中则没有竞争效应。柱测试的结果与批量吸附研究非常吻合,因为添加生物固体后二甲双胍和鸟嘌呤的阻滞因子的拟合值分别降低和升高。突破曲线的形状表明,在未修正的土壤中,两种化合物的解吸速率均较慢,这是由于非平衡条件和后端拖尾所致。但是,在经过生物固体改良的土壤柱中,这些尾矿不太明显,类似于平衡运输。结果还表明,在生物固体强化后,两种化合物的流动性均得到增强。非平衡化学迁移模型很好地拟合了实测数据(0.975> r(2)> 0.988),特别是对于未改良的土壤,这表明存在非平衡条件和速率受限的吸附位点。 (C)2018 Elsevier Ltd.保留所有权利。

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