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Remove mechanisms of sulfamethazine by goethite: the contributions of pH and ionic strength

机译:针铁矿去除磺胺二甲嘧啶的机理:pH和离子强度的贡献

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Sulfamethazine (SMT) as an ionic compound can enter the soil environment via the application of livestock wastes in agricultural fields and via the abuse of pharmaceuticals. Goethite as one of the most important iron oxides in soil might interact with SMT and influence its environmental behavior and bioavailability in soil. In this study, the sorption properties of SMT on goethite under different solution conditions were investigated. The sorption isotherm exhibited a significant nonlinear shape and desorption hysteresis, while the data could be fitted well by the Freundlich model with the correlation coefficient R-2 = 0.991. Sorption capacity initially increased and then decreased as pH values increased from 3 to 13, while the strongest uptake occurred in neutral conditions. The sorption increased slightly and then kept relatively constant as the ionic strength of the solution increased. The results indicated that the sorption mechanism would be altered in different solution conditions. In acidic and neutral conditions, the p-p electron donor-acceptor interactions and outer-and inner-sphere complexions might be the dominating sorption mechanisms. The sorption in alkali conditions might be dominated by electrostatic interactions between SMT and goethite. It should be noted that the heterogeneous sorption affinity of SMT on goethite under various solution conditions will influence its environmental fate.
机译:作为一种离子化合物的磺胺二甲嘧啶(SMT)可以通过在农业领域中使用牲畜粪便以及滥用药物进入土壤环境。针铁矿作为土壤中最重要的铁氧化物之一,可能与SMT相互作用并影响其在土壤中的环境行为和生物利用度。在这项研究中,研究了表面活性剂在针铁矿在不同溶液条件下的吸附性能。吸附等温线表现出明显的非线性形状和解吸滞后现象,而数据可以通过Freundlich模型很好地拟合,相关系数R-2 = 0.991。吸附能力最初会增加,然后随着pH值从3增加到13而下降,而最强的吸收发生在中性条件下。随着溶液离子强度的增加,吸附量略有增加,然后保持相对恒定。结果表明,在不同的溶液条件下吸附机理都会发生变化。在酸性和中性条件下,p-p电子供体-受体相互作用以及外球和内球络合物可能是主要的吸附机制。 SMT和针铁矿之间的静电相互作用可能主导着碱性条件下的吸附。应当指出,在各种溶液条件下,SMT在针铁矿上的异质吸附亲和力都会影响其环境命运。

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