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Effect of pH and soil structure on transport of sulfonamide antibiotics in agricultural soils

机译:pH和土壤结构对磺胺类抗生素在农业土壤中迁移的影响

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We investigated the effect of solution pH and soil structure on transport of sulfonamide antibiotics (sulfamethoxazole, sulfadimethoxine and sulfamethazine) in combination with batch sorption tests and column experiments. Sorption isotherms properly conformed to Freundlich model, and sorption potential of the antibiotics is as follows; sulfadimethoxine > sulfamethoxazole > sulfamethazine. Decreasing pH values led to increased sorption potential of the antibiotics on soil material in pH range of 4.0-8.0. This likely resulted from abundance of neutral and positive-charged sulfonamides species at low pH, which electrostatically bind to sorption sites on soil surface. Due to destruction of macropore channels, lower hydraulic conductivities of mobile zone were estimated in the disturbed soil columns than in the undisturbed soil columns, and eventually led to lower mobility of the antibiotics in disturbed column. The results suggest that knowledge of soil structure and solution condition is required to predict fate and distribution of sulfonamide antibiotics in environmental matrix. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们结合分批吸附试验和色谱柱实验研究了溶液pH和土壤结构对磺酰胺类抗生素(磺胺甲恶唑,磺胺二甲氧嘧啶和磺胺二甲嘧啶)转运的影响。吸附等温线完全符合Freundlich模型,抗生素的吸附潜力如下:磺胺二甲嘧啶>磺胺甲恶唑>磺胺甲二嗪。 pH值降低导致抗生素在4.0-8.0的土壤材料上的吸附潜力增加。这很可能是由于在低pH下有大量中性和带正电的磺酰胺类物质引起的,这些物质与土壤表面的吸附位点静电结合。由于大孔通道的破坏,在扰动土壤柱中流动区的水力传导率估计比未扰动土壤柱低,最终导致抗生素在扰动柱中的迁移率较低。结果表明,需要土壤结构和溶液条件的知识来预测磺胺类抗生素在环境基质中的命运和分布。 (C)2016 Elsevier Ltd.保留所有权利。

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