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Effect of soil properties on the degradation of isoxaflutole and the sorption-desorption of isoxaflutole and its diketonitrile degradate

机译:土壤性质对异黄磷降解,异黄磷及其二酮降解物的吸附-解吸的影响

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摘要

The transformation of isoxaflutole (ISOX) to its herbicidally active diketonitrile degradate (DKN) was significantly enhanced in the presence of soil and occurred more rapidly in systems containing soil with a greater soil pH. Sorption-desorption of ISOX and DKN in five soils collected within a field revealed both ISOX and DKN were more readily sorbed to soils with greater organic matter, clay content, and lower soil pH. Sorption of ISOX residues occurred within 2 h, and extracts contained similar concentrations of ISOX and DKN at 24 h, suggesting the 24-h sorption coefficients for ISOX-treated systems were actually for mixed ISOX residues. Freundlich sorption coefficients were 3 and 4 times greater for ISOX than for DKN. On the basis of the Freundlich organic carbon sorption constants, ISOX and DKN can be categorized in the very high and high mobility classes, suggesting their potential to leach in the soils needs to be evaluated.
机译:在存在土壤的情况下,异恶磷谷酮(ISOX)向其具有除草活性的二酮腈降解物(DKN)的转化显着增强,并且在含有土壤pH值更高的土壤的系统中发生的速度更快。在一块田地中收集的五种土壤中,ISOX和DKN的吸附-解吸结果表明,ISOX和DKN都更容易吸附到有机物含量更高,粘土含量较低且土壤pH较低的土壤中。对ISOX残留物的吸附在2小时内发生,并且提取物在24 h处含有相似浓度的ISOX和DKN,这表明ISOX处理系统的24小时吸附系数实际上是混合的ISOX残留物。 ISOX的Freundlich吸附系数比DKN高3到4倍。根据Freundlich有机碳的吸附常数,ISOX和DKN可以分为非常高和极高的迁移率类别,这表明需要评估它们在土壤中的浸出潜力。

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