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Sorption-Desorption Behavior of Imazethapyr and Imazapic on Six Brazilian Soils

机译:咪唑普罗斯和促进六个巴西土壤的吸附解吸行为

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The characterization of sorption-desorption for imazethapyr and imazapic in six agricultural soils was performed to assess the availability of these herbicides in pollution processes. In this pursuit, the batch equilibrium method and high-performance liquid chromatography were used. The magnitude of Kf values ranging from 0.38 to 2.52 mg1-n kg-1 Ln for imazethapyr and 0.43 to 2.72 mg1-n kg-1 Ln for imazapic indicate weak sorption in the evaluated soils. Soil pH (5.1 to 6.1) and iron oxalate affect sorption-desorption of both herbicides but the type and percentage of clay can be the main factor affecting these two processes. A high desorption percentage (70%) was found in Regosol, Dystric Plinthosol, Ferralsol (for both herbicides), and Dystric Gleysol (only imazapic) soils, which implies in leaching risks of these imidazolinone herbicides into groundwater. Lower desorption (50%) was found in Cambisol and Alisol (for both herbicides), and (~50%) in Dystric Gleysol (only imazethapyr) soils, indicating that these herbicides could potentially injure the sensitive crops grown in rotation.
机译:进行了硫氮乙炔和浸泡六种农业土壤中吸附解吸的表征,以评估这些除草剂在污染过程中的可用性。在这种追求中,使用批量平衡方法和高效液相色谱。对于咪唑氮氮杂的0.38-2.52mg1-n Kg-1 LN的KF值的大小范围为0.43-2.72mg1-n Kg-1 LN,用于浸泡地表明评估的土壤中的吸附弱。土壤pH(5.1至6.1)和铁,草酸铁酸盐影响除草剂的吸附 - 解吸,但粘土的类型和百分比可以是影响这两个过程的主要因素。在Regosol,Dystric Plinthosol,癸醇(用于除草剂)中发现高解吸百分比(> 70%),和染色葡萄糖(仅促果皮)土壤,这意味着将这些咪唑啉酮除草剂的浸出风险浸出到地下水中。在Cambisol和Alisol(用于除草剂)中发现较低的解吸(<50%),(〜50%),(〜50%),表明这些除草剂可能会损伤旋转中生长的敏感作物。

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