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Sorption and Desorption of Pesticides by Clay Minerals and Humic Acid-Clay Complexes

机译:黏土矿物和腐殖酸-黏土复合物对农药的吸附和解吸

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摘要

In soils, organic matter and minerals are often associated such that it is unclear how the presence of the former component influences the sorptive properties of the latter one. In this study, sorption and desorption of the herbicides 4,6-dinitro-o-cresol (C7H6N2O5) and dichlobenil (C7H3Cl2N) by Ca2+–, K+–smectites, and humic acid–smectite complexes, was investigated using batch-equilibrations and x-ray diffraction (XRD). Greater sorption of 4,6-dinitro-o-cresol compared with dichlobenil was observed for both smectites and humic acid–smectite complexes. For both pesticides, K+ smectites were more effective sorbents than Ca2+ smectites, with the lower charge-density clay (SWy-2) displaying a greater sorption capacity than the higher charge-density clay (SAz-1). The presence of humic acid did not impact pesticide sorption by K+ clays, but could enhance or suppress pesticide sorption by Ca2+–clays. A composite model for estimating pesticide sorption, which assumes mineral and organic matter function individually as sorbent phases, predicted sorption within a factor of 0.8 to 1.5 times the measured values. Humic acid did not contribute to pesticide desorption hysteresis in K+–humic acid–clay complexes, but was a source of hysteresis in the corresponding Ca2+ complexes. The basal spacings of K-SWy-2 and humic acid-modified K-SWy-2 increased gradually from approximately 10.4 to 12.2 Å with increasing 4,6-dinitro-o-cresol loadings. Also, XRD patterns of humic acid-modified and unmodified K-SWy-2 smectite clays were found identical. These results demonstrate the intercalation of 4,6-dinitro-o-cresol and suggest that humic acids are restricted to the external surfaces of clay tactoids. Together, these results indicate that clay mineral fractions in soils, including those with organic coatings, may play an important role in the retention of certain pesticides.
机译:在土壤中,有机物和矿物质通常以 的形式关联,因此尚不清楚前一种成分 的存在如何影响后一种的吸附特性。在此 研究中,除草剂4,6-二硝基邻甲酚 (C 7 H 6 N 2 O 5 )和二氯苯腈(C 7 H 3 Cl 2 N)由Ca 2 + –,K + –蒙脱石, 和腐殖酸–蒙脱石配合物进行了研究, sup>分批平衡和X射线衍射(XRD)。绿土和腐殖酸-绿土复合物的吸附量均高于二氯苯甲醚的4,6-二硝基邻甲酚 农药,K + 绿土比Ca 2 + 绿土更有效的吸附剂 ,电荷密度粘土(SWy-2) 表现出比更高的电荷密度 粘土(SAz-1)更大的吸附能力。腐殖酸的存在不会影响K + 粘土对农药 的吸附,但可以增强或抑制Ca 2+对农药 的吸附。 –粘土。估计农药吸附的复合模型,假设矿物和有机物分别作为吸附剂相,预测吸附量在0.8到1.5之间乘以测量值。腐殖酸 酸对 K + -腐殖酸-粘土复合物中的农药解吸滞后没有贡献,但是是 的来源相应的Ca 2 + 配合物中的sup>磁滞。 K-SWy-2和腐殖酸修饰的K-SWy-2的基础间距 随着4,6-二硝基-o的增加从大约10.4Å逐渐增加 -cresol 加载。同样,发现腐殖酸改性的和未改性的 K-SWy-2蒙脱石粘土的XRD图案相同。这些结果证明 插入4,6-二硝基-邻甲酚,表明腐殖酸 酸被限制在黏土触针的外表面。 这些结果共同表明,土壤中的粘土矿物组分 ,包括带有有机涂层的土壤,可能对某些农药的保留起着重要的作用。 上>

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  • 来源
    《Soil Science Society of America Journal》 |2003年第1期|122-131|共10页
  • 作者单位

    Department of Crop and Soil Sciences, Michigan State University, East Lansing, MI 48824,Department of Agronomy, Purdue University, West Lafayette, IN 47907;

    Department of Crop, Soil and Environmental Sciences, University of Arkansas, Fayetteville, AR 72701,Department of Agronomy, Purdue University, West Lafayette, IN 47907;

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  • 入库时间 2022-08-17 23:25:18

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