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土壤中可电离农药的吸附作用。

Adsorption of ionisable pesticides in soils.

作者信息

Kah M, Brown C D

机构信息

Environment Department, University of York, Heslington, York, YO10 5DD, UK.

出版信息

Rev Environ Contam Toxicol. 2006;188:149-217. doi: 10.1007/978-0-387-32964-2_5.

Abstract

Understanding the fate of a pesticide in soil is fundamental to the accurate assessment of its environmental behaviour and vital in ensuring the safe use of new and existing products. Ionisable pesticides comprise a significant proportion of both existing and new active substances registered for use in agriculture worldwide. This group of pesticides includes chemicals that are frequently found in groundwater and surface waters in many different countries. Despite this, approaches to predict the influence of soil properties on the behaviour of ionisable pesticides in soils are poorly developed. Current regulatory assessments frequently default to methods developed for nonionic chemicals, although it is evident that ionisable compounds do not often react like neutral molecules. This review presents the state of knowledge on the adsorption of ionisable pesticides in soils. It first introduces the issues concerning adsorption and the characteristics of this particular kind of chemical. The mechanisms postulated for the adsorption of ionisable pesticides are then described: these are hydrophobic partitioning, ionic exchange, charge transfer, ligand exchange, cation or water bridging, and the formation of bound residues. Relatively little experimental evidence is available, and we are still unable to determine the quantitative contribution of each process in a particular situation. Knowledge is still lacking concerning phenomena occurring at the surfaces of soil particles. Measurements do not allow determination of the operative pH at the surface of soil particles or in microenvironments, and the influence of ionic strength or competition effects is difficult to assess. Subsequently, the review focuses on the influence of soil properties on adsorption and on potential to predict the behaviour of ionisable pesticides in soils. Unlike hydrophobic compounds, adsorption of ionisable pesticides is highly sensitive to variation in pH. This relationship mainly derives from the different proportion of ionic and neutral forms of the pesticide present at each pH level but also from the presence of surfaces with pH-dependent charges in soils. Soil organic matter generally promotes adsorption, although a negative influence has sometimes been reported. Clay and oxides can also play a significant role in some cases. So far, no modelling approach has been applied successfully to a range of ionisable pesticides to predict their adsorption in soils. The standardization of experimental settings and the application of approaches specific to a particular class of pesticide or different type of soil might be necessary to describe the complexity of interactions among ionisable molecules. Degradation of ionisable pesticides is influenced by soil pH in a particular way that relates to changes in sorption, changes in composition and activity of the microbial community, and to shifts in the balance between different degradative mechanisms.

摘要

了解农药在土壤中的归宿是准确评估其环境行为的基础,对于确保新老产品的安全使用至关重要。可离子化农药在全球范围内登记用于农业的现有和新活性物质中占很大比例。这类农药包括在许多不同国家的地下水和地表水中经常发现的化学品。尽管如此,预测土壤性质对可离子化农药在土壤中行为影响的方法仍不完善。目前的监管评估常常默认采用为非离子化学品开发的方法,尽管很明显可离子化化合物的反应方式通常与中性分子不同。本综述介绍了关于可离子化农药在土壤中吸附的知识现状。它首先介绍了与吸附有关的问题以及这类化学品的特性。然后描述了假定的可离子化农药吸附机制:这些机制包括疏水分配、离子交换、电荷转移、配体交换、阳离子或水桥连以及结合残留的形成。相对而言,实验证据较少,我们仍然无法确定在特定情况下每个过程的定量贡献。关于土壤颗粒表面发生的现象仍然缺乏了解。测量无法确定土壤颗粒表面或微环境中的有效pH值,离子强度或竞争效应的影响也难以评估。随后,综述重点关注土壤性质对吸附的影响以及预测可离子化农药在土壤中行为的潜力。与疏水化合物不同,可离子化农药的吸附对pH值变化高度敏感。这种关系主要源于每种pH值水平下农药离子形式和中性形式的不同比例,也源于土壤中存在pH依赖电荷的表面。土壤有机质通常促进吸附,尽管有时也有负面影响的报道。在某些情况下,粘土和氧化物也可发挥重要作用。到目前为止,还没有一种建模方法成功应用于一系列可离子化农药以预测它们在土壤中的吸附。可能需要对实验设置进行标准化,并应用针对特定类农药或不同类型土壤的方法来描述可离子化分子之间相互作用的复杂性。可离子化农药的降解受到土壤pH的特殊影响,这与吸附变化、微生物群落组成和活性的变化以及不同降解机制之间平衡的转变有关。

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