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13种不同田间土壤中5种农药吸附与解吸过程的比较

A comparison of five pesticides adsorption and desorption processes in thirteen contrasting field soils.

作者信息

Boivin Arnaud, Cherrier Richard, Schiavon Michel

机构信息

George E. Brown, Jr. Salinity Laboratory, USDA-ARS, 450 West Big Springs Road, Riverside, CA 92507-4617, USA.

出版信息

Chemosphere. 2005 Nov;61(5):668-76. doi: 10.1016/j.chemosphere.2005.03.024.

Abstract

Batch adsorption and desorption experiments were performed using thirteen agricultural soil samples and five pesticides. Experimental data indicated a gradient in pesticide adsorption on soil: trifluralin >> 2,4-D > isoproturon> atrazine >> bentazone. Atrazine, isoproturon and trifluralin adsorption were correlated to soil organic matter content (r2 = 0.7, 0.82, 0.79 respectively). Conversely, bentazone adsorption was governed by soil pH (r2 = 0.68) while insignificant effect has been shown in the case of 2,4-D. Multiple linear regressions were used to combine relationships between the various soil parameters and the Freundlich adsorption coefficient (K(f)) of each pesticide. Then desorption was assessed since it may reflect some of the interactions involved between the pesticides and the soil components. Adsorbed molecules were released into aqueous solution in the following order: bentazone >> atrazine> isoproturon> 2,4-D >> trifluralin. The occurrence of hysteresis did not allow an accurate interpretation of the pesticide desorption data because of the possible interplay of several processes.

摘要

使用13个农业土壤样本和5种农药进行了批量吸附和解吸实验。实验数据表明农药在土壤上的吸附存在梯度:氟乐灵>>2,4-滴>异丙隆>阿特拉津>>苯达松。阿特拉津、异丙隆和氟乐灵的吸附与土壤有机质含量相关(r2分别为0.7、0.82、0.79)。相反,苯达松的吸附受土壤pH值控制(r2 = 0.68),而2,4-滴的情况显示出不显著的影响。使用多元线性回归来结合各种土壤参数与每种农药的弗伦德利希吸附系数(K(f))之间的关系。然后评估了解吸情况,因为它可能反映了农药与土壤成分之间的一些相互作用。吸附的分子按以下顺序释放到水溶液中:苯达松>>阿特拉津>异丙隆>2,4-滴>>氟乐灵。由于几个过程可能相互作用,滞后现象的出现使得无法准确解释农药解吸数据。

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