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首页> 外文期刊>Adsorption Science & Technology >Adsorption and movement of cypermethrin on Indian soils amended with cationic, non-ionic and anionic surfactants
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Adsorption and movement of cypermethrin on Indian soils amended with cationic, non-ionic and anionic surfactants

机译:阳离子,非离子和阴离子表面活性剂对氯氰菊酯在印度土壤上的吸附和移动

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摘要

Laboratory studies were conducted to determine the adsorption and movement of cypermethrin on surfactant-free (natural) and surfactant-amended soils at different micelle concentrations (below the CMC, at the CMC and above the CMC) using batch equilibrium and soil TLC techniques. The measured equilibrium adsorption isotherms for both surfactant-free and surfactant-amended soils were of type C and in close agreement with the Freundlich isotherm. Higher adsorption of cypermethrin in both types of system was observed on silt loam soil than on sandy loam soil as anticipated by the values obtained for the Freundlich constant, K-F, and the partition coefficient, K-D.The values of K-F and K-D confirmed that cypermethrin adsorption on surfactant-amended soils followed the order cationic > non-ionic > anionic under all CMC conditions studied. The K-F and K-D values also confirmed that cypermethrin adsorption was higher on soils amended with surfactants maintained below the CMC, while lower values of K-F and K-D confirmed the lower adsorption of cypermethrin on soils amended with both non-ionic and anionic surfactants maintained at or above the CMC value relative to the situation with surfactant-free soils. The higher values of K-F and K-D showed that the adsorption of cypermethrin increased on soils amended with CTAB when the latter was at or above the CMC value relative to surfactant-free soils.The R-f values obtained from soil TLC studies were inversely proportional to the K-F and K-D values for both surfactant-free and surfactant-amended soils. The affinity of cypermethrin towards the organic carbon and clay content of the soils was evaluated by calculating the K-OC and K-D values, when it was found that the affinity of cypermethrin was better correlated with the clay content of the soils than with their organic carbon content. The results obtained are interesting in that they afford basic data resulting to the possible use of surfactants for solving problems of soil contamination posed by cypermethrin.
机译:使用批次平衡和土壤薄层色谱技术,进行了实验室研究,确定了氯氰菊酯在无表面活性剂(天然)和表面活性剂修饰的土壤中,在不同胶束浓度(CMC以下,CMC以下和CMC上方)的吸附和迁移。不含表面活性剂和经表面活性剂改良的土壤的平衡吸附等温线均为C型,与Freundlich等温线非常吻合。根据弗氏常数KF和分配系数KD的预测,粉质壤土上的氯氰菊酯在两种系统中的吸附率均高于沙质壤土.KF和KD的值证实了氯氰菊酯的吸附在所有研究的CMC条件下,表面活性剂改性土壤上的阳离子在阳离子>非离子>阴离子上的顺序为: KF和KD值还证实了氯氰菊酯在改性剂保持在CMC以下的条件下对土壤的吸附较高,而KF和KD较低的值证实氯氰菊酯在经非离子和阴离子表面活性剂改性后的土壤上对氯氰菊酯的吸附较低。 CMC值相对于不含表面活性剂的土壤的情况。较高的KF和KD值表明,氯氰菊酯在CTAB修正的土壤上的吸附量相对于不含表面活性剂的土壤增加,而CTAB修正后的土壤中氯氰菊酯的吸附量增加。从土壤TLC研究获得的Rf值与KF成反比无表面活性剂和经表面活性剂改良的土壤的KD值。当发现氯氰菊酯的亲和力与土壤中的粘土含量比与其有机碳含量相关性更好时,通过计算K-OC和KD值来评估氯氰菊酯对土壤中有机碳和粘土含量的亲和力。内容。所获得的结果令人感兴趣,因为它们提供了基础数据,从而可能使用表面活性剂来解决由氯氰菊酯引起的土壤污染问题。

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