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利用污水污泥和表面活性剂增强土壤对杀扑磷的吸附作用。

Enhanced soil sorption of methidathion using sewage sludge and surfactants.

作者信息

Sánchez Lourdes, Romero Esperanza, Sánchez-Rasero Francisco, Dios Gonzalo, Peña Aránzazu

机构信息

Estación Experimental del Zaidín (CSIC), Departamento de Ciencias de la Tierra y Química Ambiental, E-18008 Granada, Spain.

出版信息

Pest Manag Sci. 2003 Aug;59(8):857-64. doi: 10.1002/ps.686.

Abstract

Batch experiments were carried out to examine the partitioning of an organophosphorus insecticide, methidathion, in non-amended agricultural soil and soil amended with urban sewage sludge and/or different types of surfactant. Kinetic data showed that sewage sludge significantly reduced adsorption rate, whereas amendment of the soil with the cationic surfactant tetradecyltrimethylammonium bromide (TDTMA) at 10 x CMC (critical micellar concentration) increased the adsorption rate by a factor of 10. The adsorption isotherms were evaluated using the Freundlich model. The soil adsorption capacity for methidathion was enhanced by amendment with sewage sludge and even more significantly with TDTMA at 10 x CMC or combined with sewage sludge. TDTMA conferred a high hydrophobic character to the soil, enhancing the adsorption capacity of the rather hydrophobic methidathion. The amendment of soil both with sewage sludge and TDTMA combines the increased hydrophobicity with a higher surfactant retention by organic matter, due to an increase in cation exchange capacity, which promotes even more the adsorption capacity for the insecticide. An anionic surfactant, linear alkylbenzene sulfonate, and the non-ionic Tween 80 only induced a slight modification in the kinetics and adsorption of methidathion.

摘要

进行了批次实验,以研究有机磷杀虫剂杀扑磷在未改良的农业土壤以及添加了城市污水污泥和/或不同类型表面活性剂的土壤中的分配情况。动力学数据表明,污水污泥显著降低了吸附速率,而在临界胶束浓度(CMC)的10倍下用阳离子表面活性剂十四烷基三甲基溴化铵(TDTMA)改良土壤,使吸附速率提高了10倍。使用弗伦德里希模型评估吸附等温线。用污水污泥改良可提高土壤对杀扑磷的吸附能力,而在临界胶束浓度的10倍下使用TDTMA或与污水污泥联合使用时,这种提高更为显著。TDTMA赋予土壤高疏水性,增强了疏水性较强的杀扑磷的吸附能力。用污水污泥和TDTMA同时改良土壤,由于阳离子交换容量增加,将增加的疏水性与有机物对表面活性剂的更高保留相结合,这进一步促进了对杀虫剂的吸附能力。阴离子表面活性剂直链烷基苯磺酸盐和非离子型吐温80仅对杀扑磷的动力学和吸附产生轻微影响。

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