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铜对戊唑醇在土壤、腐殖质和水铁矿上吸附的影响。

The influence of copper on tebuconazole sorption onto soils, humic substances, and ferrihydrite.

机构信息

Czech University of Life Sciences Prague, Kamýcká 129, 165 21, Prague 6, Czech Republic.

出版信息

Environ Sci Pollut Res Int. 2013 Jun;20(6):4205-15. doi: 10.1007/s11356-012-1198-0. Epub 2012 Dec 18.

Abstract

The aim of this study is to investigate how the presence of Cu influences tebuconazole (Teb) sorption onto contrasting soil types and two important constituents of the soil sorption complex: hydrated Fe oxide and humic substances. Tebuconazole was used in commercial form and as an analytical-grade chemical at different Teb/Cu molar ratios (1:4, 1:1, 4:1, and Teb alone). Increased Cu concentrations had a positive effect on tebuconazole sorption onto most soils and humic substances, probably as a result of Cu-Teb tertiary complexes on the soil surfaces. Tebuconazole sorption increased in the following order of different Teb/Cu ratios 1:4>1:1>4:1>without Cu addition, with the only exception for the Leptosol and ferrihydrite. The highest K f value was observed for humic substances followed by ferrihydrite, the Cambisol, the Arenosol, and the Leptosol. The sorption of analytical-grade tebuconazole onto all matrices was lower, but the addition of Cu supported again tebuconazole sorption. The Teb/Cu ratio with the highest Cu addition (1:4) exhibited the highest K f values in all matrices with the exception of ferrihydrite. The differences in tebuconazole sorption can be attributed to the additives present in the commercial product. This work proved the importance of soil characteristics and composition of the commercially available pesticides together with the presence of Cu on the behavior of tebuconazole in soils.

摘要

本研究旨在探讨铜的存在如何影响噻菌灵(Teb)在不同土壤类型和土壤吸附复合物的两个重要组成部分(水合氧化铁和腐殖质)上的吸附。噻菌灵以商业形式和分析纯化学品形式,在不同的 Teb/Cu 摩尔比(1:4、1:1、4:1 和 Teb 单独)下使用。较高的铜浓度对噻菌灵在大多数土壤和腐殖质上的吸附有积极影响,这可能是由于土壤表面上形成了 Cu-Teb 三元配合物。噻菌灵的吸附按不同 Teb/Cu 比例的顺序增加,1:4>1:1>4:1>无 Cu 加入,Leptosol 和水铁矿除外。腐殖质的 K f 值最高,其次是水铁矿、Cambisol、Arenosol 和 Leptosol。所有基质中分析纯噻菌灵的吸附都较低,但 Cu 的加入再次支持了噻菌灵的吸附。在所有基质中,Cu 加入量最高(1:4)的 Teb/Cu 比除了水铁矿之外,在所有基质中都表现出最高的 K f 值。噻菌灵吸附的差异可归因于商业产品中存在的添加剂。这项工作证明了土壤特性和组成以及土壤中 Cu 的存在对噻菌灵在土壤中行为的重要性。

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