首页> 外文期刊>Journal of land use science >Sorption of Atenolol, Sulfamethoxazole and Carbamazepine onto Soil Aggregates from the Illuvial Horizon of the Haplic Luvisol on Loess
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Sorption of Atenolol, Sulfamethoxazole and Carbamazepine onto Soil Aggregates from the Illuvial Horizon of the Haplic Luvisol on Loess

机译:从黄土血清洛维索尔的光明范围内的土木罗尔

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摘要

The leakage of pharmaceuticals present in soils towards groundwater is largely controlled by sorption of those compounds in soils. In some soils, soil aggregates are covered by coatings, which may have considerably different composition in comparison to that in an inner part of the aggregates. The aim of this study was to evaluate the sorption of three pharmaceuticals, which were applied in single or all compounds solutions, onto soil samples taken from the Bt horizon of a Haplic Luvisol. Analyses were performed on three types of disturbed soil samples: (1) entire aggregates, (2) aggregates from which coatings were removed, and (3) clay-organic coatings. Sorption of atenolol onto material from coatings was slightly higher than that onto material from the inner parts of the aggregates. On the other hand, sorption of sulfamethoxazole onto material from the coatings was lower than that from the aggregate interior. Both associates with a dominant fraction of clay particles (that are mostly negatively charged) in the coatings in comparison to soil composition in interiors and thus larger cation exchange capacity, which increased sorption of the positively charged atenolol and decreased sorption of the negatively charged sulfamethoxazole. Sorption of carbamazepine, which was in neutral form, did not substantially differ. The sorption of all three compounds did not decrease due to the competition between these compounds for the same sorption sites when applied simultaneously. Atenolol sorption was similar for both applications. Sorption of sulfamethoxazole increased when applied in solution with the other two compounds in comparison to its negligible sorption measured for the single compound solution likely due to sorption of the positively charged molecules of atenolol onto the negatively charged surface of soil components and reduction of repulsion between the soil components and the negatively charged molecules of sulfamethoxazole. Carbamazepine sorption also increased probably due to ionization of molecules due to dipole - induced dipole interaction between non-polar and polar molecules in solution.
机译:存在于地下水的土壤中存在的药物泄漏主要通过土壤中这些化合物的吸附来控制。在一些土壤中,涂层覆盖土壤聚集体,其可与聚集体内部的内部相比具有相当大的组成。本研究的目的是评估三种药物的吸附,其在单一或所有化合物溶液中施用于从单胶石Luvisol的BT地平线所取的土壤样品上。在三种类型的干扰土样品上进行分析:(1)整个聚集体,(2)除去涂层的聚集体,和(3)粘土 - 有机涂层。从涂层中吸附到来自涂层材料上的材料略高于聚集体内部的材料上。另一方面,来自涂层中的磺胺甲恶唑的吸附低于聚集室内的材料。与内部的土壤组合物相比,与涂层中的粘土颗粒的主要粘土颗粒(其大多负电荷)的缔合物兼容,其较大的阳离子交换能力增加,该阳离子交换能力增加了带正电荷的阿绿醇的吸附并降低了带负电荷的磺胺甲恶唑的吸附。含有中性形式的卡巴马嗪的吸附没有显着不同。所有三种化合物的吸附在同时施用时,这些化合物与同一吸附位点之间的竞争没有降低。 Atenolol吸附对于这两种应用相似。当用其他两种化合物施用溶液时,磺胺甲恶唑的吸附相比,与其可忽略的吸附,其用于单个化合物溶液的可忽略的吸附,可能由于吸附的土豆洛尔的带正电荷分子到土壤成分的带负电荷的表面和减少之间的排斥土壤成分和磺胺甲恶唑的带负电荷分子。由于偶极和极性分子在溶液中的偶极子分子之间的偶极子诱导的偶极相互作用,Carbamazepine吸附也可能增加。

著录项

  • 来源
    《Journal of land use science》 |2018年第3期|共7页
  • 作者单位

    Czech Univ Life Sci Fac Agrobiol Food &

    Nat Resources Dept Soil Sci &

    Soil Protect Prague Czech Republic;

    Czech Univ Life Sci Fac Agrobiol Food &

    Nat Resources Dept Soil Sci &

    Soil Protect Prague Czech Republic;

    Univ South Bohemia Ceske Budejovice Fac Fisheries &

    Protect Waters South Bohemian Res Ctr Aquaculture &

    Biodivers Hy Vodnany Czech Republic;

    Czech Univ Life Sci Fac Agrobiol Food &

    Nat Resources Dept Soil Sci &

    Soil Protect Prague Czech Republic;

    Czech Univ Life Sci Fac Agrobiol Food &

    Nat Resources Dept Soil Sci &

    Soil Protect Prague Czech Republic;

    Czech Univ Life Sci Fac Agrobiol Food &

    Nat Resources Dept Soil Sci &

    Soil Protect Prague Czech Republic;

    Czech Univ Life Sci Fac Agrobiol Food &

    Nat Resources Dept Soil Sci &

    Soil Protect Prague Czech Republic;

    Univ South Bohemia Ceske Budejovice Fac Fisheries &

    Protect Waters South Bohemian Res Ctr Aquaculture &

    Biodivers Hy Vodnany Czech Republic;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    aggregates; aggregates interior; clay-organic coatings; illuvial horizon; pharmaceuticals; sorption;

    机译:聚集物;聚集内部;粘土 - 有机涂料;裂化;药物;吸附;

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