首页> 外文期刊>Journal of Environmental Science and Health, Part B: Pesticides, Food Contaminants, and Agricultural Wastes >The important characteristics of soil organic matter affecting 2,4-dichlorophenoxyacetic acid sorption along a catenary sequence
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The important characteristics of soil organic matter affecting 2,4-dichlorophenoxyacetic acid sorption along a catenary sequence

机译:土壤有机质的重要特征沿链序列影响2,4-二氯苯氧基乙酸的吸附

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Variations in the characteristics of soil organic matter (SOM) at the field-scale are largely unknown, particularly in relation to observed variations in herbicide sorption. For the herbicide 2,4-D [2,4-dichlorophenoxyacetic acid], we found that its organic carbon-normalized sorption coefficient, Koc, varied by four-fold, from 76 to 315 L kg−1, in the Ap-horizon along a slope transect in an undulating agricultural field in Manitoba, Canada. In order to explain the relatively large in-field variation in 2,4-D Koc values, techniques ranging from conventional chemical fractionation methods to solid state Cross Polarization and Magic-Angle Spinning 13C-Nuclear Magnetic Resonance applied on whole soils, were used to derive SOM chemical, physical and structural parameters for correlation analyses with the measured 2,4-D Koc values on whole soils. Out of the 15 parameters considered, the 2,4-D Koc was significantly positively correlated with 1) the carbon (C) content of sodium hydroxide-extracted humic acids (r = 0.83, P < 0.01), a chemical parameter indicative of free form C in soil; 2) the molar absorptivity of humic acids at wavelength 280 nm (r = 0.81, P < 0.01), a physical parameter indicative of greater SOM aromaticity; and 3) the relatively intensity of aryl C (r = 0.92, P < 0.01) and O-aryl C (r = 0.93, P < 0.01) in whole soil, both structural parameters indicative of aromatic C. Consequently, the results suggest that in-field variations in 2,4-D Koc values are induced by variations in SOM aromaticity. Koc values are among the most sensitive parameters in herbicide fate models used in regulatory and environmental assessments. Currently, these herbicide fate models do not consider associations between SOM characteristics and Koc and hence revising model equations to include these associations may improve estimates of herbicide persistence, bioavailability and transport at the field-scale.
机译:在田间尺度上,土壤有机质(SOM)特征的变化在很大程度上是未知的,尤其是与观察到的除草剂吸附变化有关。对于除草剂2,4-D [2,4-二氯苯氧基乙酸],我们发现其有机碳标准化吸附系数Koc变化了四倍,从76升至315 L kg -1> / sup>,在加拿大曼尼托巴省起伏的农业领域中,沿斜坡横断面的Ap地平线中。为了解释2,4-D Koc值的较大变化,技术范围从常规化学分馏方法到固态交叉极化和魔角自旋 13 C-核磁共振应用于全土壤,用于推导SOM的化学,物理和结构参数,与在整个土壤上测得的2,4-D Koc值进行相关分析。在考虑的15个参数中,2,4-D Koc与1)氢氧化钠提取的腐殖酸的碳(C)含量显着正相关(r = 0.83,P <0.01),该化学参数指示游离土壤中的C型; 2)腐殖酸在波长280 nm处的摩尔吸收率(r = 0.81,P <0.01),这是指示更高的SOM芳香性的物理参数;和3)在整个土壤中芳基C(r = 0.92,P <0.01)和O-芳基C(r = 0.93,P <0.01)的相对强度,这两个结构参数均表示芳族C。因此,结果表明SOM芳香度的变化会引起2,4-D Koc值的变化。在法规和环境评估中使用的除草剂命运模型中,Koc值是最敏感的参数之一。当前,这些除草剂命运模型并未考虑SOM特征与Koc之间的关联,因此修改模型方程以包括这些关联可能会改善田间规模的除草剂持久性,生物利用度和运输量的估计。

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