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实验室测定的农药分配系数值与柱和田间尺度实验测定的分配系数值相匹配吗?对相关文献的批判性分析。

Do lab-derived distribution coefficient values of pesticides match distribution coefficient values determined from column and field-scale experiments? A critical analysis of relevant literature.

机构信息

Agrosphere Institute, ICG-4, Forschungszentrum Jülich, Jülich, Germany.

出版信息

J Environ Qual. 2011 May-Jun;40(3):879-98. doi: 10.2134/jeq2010.0404.

DOI:10.2134/jeq2010.0404
PMID:21546674
Abstract

In this study, we analyzed sorption parameters for pesticides that were derived from batch and column or batch and field experiments. The batch experiments analyzed in this study were run with the same pesticide and soil as in the column and field experiments. We analyzed the relationship between the pore water velocity of the column and field experiments, solute residence times, and sorption parameters, such as the organic carbon normalized distribution coefficient ( ) and the mass exchange coefficient in kinetic models, as well as the predictability of sorption parameters from basic soil properties. The batch/column analysis included 38 studies with a total of 139 observations. The batch/field analysis included five studies, resulting in a dataset of 24 observations. For the batch/column data, power law relationships between pore water velocity, residence time, and sorption constants were derived. The unexplained variability in these equations was reduced, taking into account the saturation status and the packing status (disturbed-undisturbed) of the soil sample. A new regression equation was derived that allows estimating the values derived from column experiments using organic matter and bulk density with an value of 0.56. Regression analysis of the batch/column data showed that the relationship between batch- and column-derived values depends on the saturation status and packing of the soil column. Analysis of the batch/field data showed that as the batch-derived value becomes larger, field-derived values tend to be lower than the corresponding batch-derived values, and vice versa. The present dataset also showed that the variability in the ratio of batch- to column-derived value increases with increasing pore water velocity, with a maximum value approaching 3.5.

摘要

在这项研究中,我们分析了从批量和柱实验或批量和田间实验中得出的农药吸附参数。本研究中分析的批量实验是使用与柱和田间实验相同的农药和土壤进行的。我们分析了柱和田间实验的孔隙水速度、溶质停留时间和吸附参数(如有机碳归一化分配系数( )和动力学模型中的质量交换系数)之间的关系,以及从基本土壤性质预测吸附参数的能力。批量/柱分析包括 38 项研究,共有 139 个观测值。批量/田间分析包括五项研究,得出了 24 个观测值的数据集。对于批量/柱数据,推导出了孔隙水速度、停留时间和吸附常数之间的幂律关系。通过考虑土壤样品的饱和度状态和填充状态(扰动-未扰动),减少了这些方程中无法解释的可变性。得出了一个新的回归方程,该方程允许使用有机物质和体密度以及 值为 0.56 来估计从柱实验中得出的值。对批量/柱数据的回归分析表明,批量和柱实验得出的值之间的关系取决于土壤柱的饱和度状态和填充状态。对批量/田间数据的分析表明,随着批量实验得出的值变大,田间实验得出的值往往低于相应的批量实验得出的值,反之亦然。本数据集还表明,批量实验和柱实验得出的值的比值的变异性随着孔隙水速度的增加而增加,最大值接近 3.5。

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1
Do lab-derived distribution coefficient values of pesticides match distribution coefficient values determined from column and field-scale experiments? A critical analysis of relevant literature.实验室测定的农药分配系数值与柱和田间尺度实验测定的分配系数值相匹配吗?对相关文献的批判性分析。
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