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使用单一吸附系数估算不同 pH 值下单价酸性除草剂的吸附。

Estimating sorption of monovalent acidic herbicides at different pH levels using a single sorption coefficient.

机构信息

Embrapa Agricultural Informatics, Campinas, SP, Brazil.

NSL ARS USDA, Oxford, MS, USA.

出版信息

Pest Manag Sci. 2020 Aug;76(8):2693-2698. doi: 10.1002/ps.5815. Epub 2020 Mar 27.

DOI:10.1002/ps.5815
PMID:32162474
Abstract

BACKGROUND

Monovalent acidic pesticide sorption can be determined for any soil pH if the dissociation constant of the compound is known, and sorption coefficients are available for at least two different pH values, measured in a wide enough range to enable estimating both neutral and anionic form coefficients. Sorption estimates have also been made from a single sorption coefficient available, assuming a non-compound specific value of the anionic form sorption coefficient or considering a generic ratio between sorption coefficients of the two forms. A compound-specific procedure for adjustment of parameters of the equation for estimating sorption of monovalent acidic herbicides at different pH levels, from a single sorption coefficient, is proposed and evaluated.

RESULTS

The quality of fits was good for sorption of all three herbicides studied, especially for 2,4-D and flumetsulam at pH above 5, even for diverse soils and experimental procedures and conditions. The best fits resulted in the following ratios of theoretical maximum organic-carbon sorption coefficients for neutral and anionic forms (Kocn':Koca'): 440:1 for 2,4-D; 132:1 for flumetsulam; and 55:1 for sulfentrazone.

CONCLUSION

The ratios of theoretical maximum sorption coefficients for neutral and anionic forms (Kocn':Koca') are compound-specific, thus this procedure should also be applied to pH-sorption datasets for other acidic pesticides to provide the respective ratio between the theoretical maximum sorption coefficients, instead of using generic assigned values. More calibration research is recommended and validation of this approach is required to demonstrate applicability of the method. © 2020 Society of Chemical Industry.

摘要

背景

如果已知化合物的离解常数,则可以在任何土壤 pH 值下确定单价酸性农药的吸附情况,并且至少有两个不同 pH 值下的吸附系数可用,这些系数的测量范围足够宽,能够估算中性和阴离子形式的系数。也可以根据可用的单一吸附系数来估算吸附量,假设阴离子形式吸附系数是非化合物特异性值,或者考虑两种形式的吸附系数之间的通用比例。本文提出并评估了一种用于根据单一吸附系数调整不同 pH 水平下估算单价酸性除草剂吸附的方程参数的化合物特异性方法。

结果

对于研究的所有三种除草剂,吸附的拟合质量都很好,特别是在 pH 高于 5 时,对于 2,4-D 和氟噻草胺,甚至对于不同的土壤和实验程序和条件也是如此。最佳拟合结果得出了以下理论最大有机碳吸附系数的中性和阴离子形式(Kocn':Koca')比值:2,4-D 为 440:1;氟噻草胺为 132:1;和噻酮磺隆为 55:1。

结论

中性和阴离子形式的理论最大吸附系数的比值(Kocn':Koca')是化合物特异性的,因此,该方法也应应用于其他酸性农药的 pH-吸附数据集,以提供理论最大吸附系数之间的相应比值,而不是使用通用分配值。建议进行更多的校准研究,并验证该方法的适用性。 © 2020 英国化学学会。

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