Sanchez-Camazano M, Sanchez-Martin M J, Rodriguez-Cruz M S
Instituto de Recursos Naturales, y Agrobiología de Salamanca, C.S.I.C., Spain.
Chemosphere. 2000 Oct;41(8):1301-5. doi: 10.1016/s0045-6535(99)00503-2.
A study was made of the adsorption-desorption of atrazine in aqueous medium in five soils with organic matter (OM) contents in the range 1.4-10.3% and also of the desorption of the herbicide in aqueous solutions of the anionic surfactant sodium dodecyl sulphate (SDS) at critical micelle concentrations (cmc) of 0.75, 1.50, 5 and 10. The adsorption and desorption isotherms in water together with the desorption isotherms in SDS solutions with concentrations of 0.75 and 1.50 cmc fit the Freundlich adsorption equation. All the desorption isotherms displayed hysteresis. The increase or reduction in hysteresis of the desorption isotherms in SDS solutions with respect to those of desorption in water depend on the SDS concentration and on the OM content of the soils. Below the cmc, SDS only increases the desorption of atrazine in the soil with the highest OM content (10.3%). However, above the cmc (5 and 10 cmc) the desorption of atrazine increases in all soils, the efficiency of desorption increasing with the OM content of the soils.
对五种土壤中阿特拉津在水介质中的吸附-解吸进行了研究,这些土壤的有机质(OM)含量在1.4%-10.3%范围内,还研究了在临界胶束浓度(cmc)分别为0.75、1.50、5和10的阴离子表面活性剂十二烷基硫酸钠(SDS)水溶液中该除草剂的解吸情况。水中的吸附和解吸等温线以及浓度为0.75和1.50 cmc的SDS溶液中的解吸等温线符合弗伦德利希吸附方程。所有解吸等温线均显示出滞后现象。SDS溶液中解吸等温线相对于水中解吸等温线的滞后增加或减少取决于SDS浓度和土壤的OM含量。在cmc以下,SDS仅增加了OM含量最高(10.3%)的土壤中阿特拉津的解吸。然而,在cmc以上(5和10 cmc),所有土壤中阿特拉津的解吸均增加,解吸效率随土壤的OM含量增加而提高。