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Effect of soil type and organic manure on adsorption-desorption of flubendiamide

机译:土壤类型和有机肥对氟苯二酰胺吸附-解吸的影响

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Laboratory study on adsorption-desorption of flubendiamide was conducted in two soil types, varying in their physical and chemical properties, by batch equilibrium method. After 4 h of equilibrium time, adsorption of flubendiamide on soil matrix exhibited moderately low rate of accumulation with 4.52 +/- 0.21 % in red soil and low rate with 3.55 +/- 0.21 % in black soil. After amending soils with organic manure, adsorption percentage increased to 6.42 +/- 0.21 % in red soil and (4.18 +/- 0.21 %) in black soil indicating that amendment significantly increased sorption. Variation in sorption affinities of the soils as indicated by distribution coefficient (K-d) for sorption was in the range of 2.98-4.32, 4.91-6.64, 1.04-1.45 and 1.92-2.81 ml/g for red soil, organic manure-treated red soil, black soil and organic manure-treated black soil, respectively. Desorption was slightly slower than adsorption indicating a hysteresis effect having hysteresis coefficient ranges between 0.023 and 0.149 in two test soils. The adsorption data for the insecticide fitted well the Freundlich equation. Results revealed that adsorption-desorption was influenced by soil types and showed that the maximum sorption and minimum desorption of the insecticide was observed in soils with higher organic carbon and clay content. It can be inferred that crystal lattice of the clay soil plays a significant role in flubendiamide adsorption and desorption. Adsorption was lower at acidic pH and gradually increased towards alkaline pH. As this insecticide is poorly sorbed in the two Indian soil types, there may be a possibility of their leaching to lower soil profiles.
机译:通过分批平衡法在两种土壤中理化性质各不相同的氟苯二酰胺的吸附-脱附实验研究。平衡时间为4小时后,氟苯二酰胺在土壤基质上的吸附表现为中等低的积累速率,在红壤中为4.52 +/- 0.21%,在黑土壤中为3.55 +/- 0.21%。在用有机肥改良土壤后,红壤中的吸附百分率增加到6.42 +/- 0.21%,黑土中的吸附百分率增加到(4.18 +/- 0.21%),表明改性显着增加了吸附。由红土,有机肥处理过的红土的吸附分布系数(Kd)表示,土壤的吸附亲和力变化范围为2.98-4.32、4.91-6.64、1.04-1.45和1.92-2.81 ml / g。 ,黑土和有机肥处理过的黑土。解吸比吸附稍慢,这表明在两种测试土壤中的磁滞效应的磁滞系数在0.023和0.149之间。杀虫剂的吸附数据非常符合Freundlich方程。结果表明,吸附-解吸受土壤类型的影响,并表明在有机碳和粘土含量较高的土壤中,杀虫剂的最大吸附和最小解吸。可以推断,粘土的晶格在氟苯二酰胺的吸附和解吸中起重要作用。在酸性pH下吸附较低,而在碱性pH下逐渐增加。由于该杀虫剂在两种印度土壤中的吸附能力很差,因此有可能将其浸出至较低的土壤剖面。

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