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Sorption and desorption of the diketonitrile metabolite of isoxaflutole in soils

机译:异氟草醚的二酮腈代谢物在土壤中的吸附和解吸

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Isoxaflutole is a new pre-emergence corn herbicide that undergoes rapid conversion to a diketonitrile derivative (DKN) in soils. Sorption-desorption studies were conducted in five different soils varying in physical and chemical properties. A batch equilibration technique was used with total initial aqueous solution concentrations of DKN at 0.25, 0.75, 2.0,8.0, 25, 75, 150, mg 1~(-1) After the sorption process, two subsequent desorptions were conducted with an equilibration period of 7 days. A high correlation existed between the desorption coefficient, K_Fd and the organic matter content of soils (r~2 = 0.844 for the first desorption and r~2 = 0.861 for the second desorption), while the clay content did not greatly influence the desorption of DKN. Although the sorption of DKN was generally reversible, a sorption-desorption hysteresis was apparent in all soils. The site energy distribution curves emphasized the fact that DKN binds tightly to soils with higher organic matter content and greater proportion of DKN was retained by those soils
机译:异恶草胺是一种新型的出苗前玉米除草剂,可在土壤中快速转化为二酮腈衍生物(DKN)。在五种不同物理和化学性质的土壤中进行了吸附-解吸研究。使用分批平衡技术,DKN的总初始水溶液浓度为0.25、0.75、2.0、8.0、25、75、150,mg 1〜(-1)吸附过程之后,在平衡期间进行了两次后续解吸7天。土壤的解吸系数K_Fd与有机质含量之间存在高度的相关性(第一次吸附的r〜2 = 0.844,第二次解吸的r〜2 = 0.861),而粘土的含量对土壤的解吸没有很大的影响。 DKN。尽管DKN的吸附通常是可逆的,但在所有土壤中都存在明显的吸附-解吸滞后现象。站点能量分布曲线强调了这样一个事实,即DKN与有机质含量较高的土壤紧密结合,而这些土壤中却保留了较大比例的DKN

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