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Processes Affecting the Dissipation of the Herbicide Isoxaflutole and Its Diketonitrile Metabolite in Agricultural Soils under Field Conditions

机译:田间条件下农业土壤中除草剂异恶草酮及其二酮腈代谢产物耗散的过程

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摘要

Two-year field dissipation studies were conducted in three soil types in Minnesota to examine the processes affecting the dissipation of the herbicide isoxaflutole and its phytotoxic diketonitrile metabolite (DKN) under relatively cool, wet soil conditions. Plots of cuphea were treated with isoxaflutole and potassium bromide, a nonsorbed, nondegraded tracer. Replicate soil cores were collected six times during the growing season to a depth of 1 m, and the bromide or herbicide concentration was measured in each of five depth increments. The dissipation half-life (DT50) of isoxaflutole + DKN was 8-18 days in each soil. Bromide and herbicide concentrations were low at depths >40 cm throughout the study, and herbicide concentrations in soil 100 days after application were usually undetectable. Simulation modeling using Hydrus-1 D for the loam soil suggested that plant uptake was an important mechanism of dissipation.
机译:在明尼苏达州的三种土壤类型中进行了为期两年的田间耗散研究,以研究在相对凉爽,潮湿的土壤条件下影响除草剂异恶草酮及其植物毒性二酮腈代谢物(DKN)耗散的过程。用异氟沙丁胺和溴化钾(一种未吸附的,未降解的示踪剂)处理过的铜绿地块。在生长季节中,收集了六次重复的土壤核心,深度为1 m,并以五个深度增量中的每个增量测量了溴化物或除草剂的浓度。在每种土壤中,异恶氟草醚+ DKN的耗散半衰期(DT50)为8-18天。在整个研究中,深度> 40 cm处的溴化物和除草剂浓度较低,施用后100天的土壤中除草剂浓度通常不可检测。使用Hydrus-1 D对壤土进行的模拟建模表明,植物吸收是耗散的重要机制。

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