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Potassium adsorption characteristics of soils under long term maize-legume cropping sequence

机译:玉米—豆科植物长期种植对土壤钾素吸收特征的影响

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Potassium adsorption isotherms of rainfed maize growing soils of North Kashmir were studied to visualize the adsorption behavior and factors affecting adsorption. The soils vary widely in their physico-chemical properties having?lacustrine origin.?Potassium adsorption isotherms were constructed by equilibrating 5 g soil samples with eight levels (0 to 200 mg K). At application rates of 1 and 200 mg of K contained in 10 ml of KCl solution per gram of soil, the adsorbed amounts of K varied from 13 to 15% and 9 to 12% of the added K with an average 13 and 11%, respectively. The adsorption data were fitted to Freundlich, Langmuir and Temkin equations. Freundlich equation explained K fixation behavior better than the either two equations as evidenced by higher coefficient of determination (0.90 to 0.99). The Freundlich parameter ‘a’ was significantly correlated with clay content (0.982), pH (0.919) and cation exchange capacity (CEC) (0.907) of soils.
机译:研究了克什米尔北部雨养玉米生长土壤的钾吸附等温线,以观察其吸附行为和影响吸附的因素。土壤具有不同的理化性质,其来源是湖泊湖泊碱。钾的吸附等温线是通过将5 g的土壤样品与8种水平(0至200 mg K)平衡来构建的。在每克土壤10毫升KCl溶液中所含的钾的施用量为1和200毫克时,钾的吸附量为添加的钾的13%至15%和9%至12%,平均为13%和11%,分别。吸附数据符合Freundlich,Langmuir和Temkin方程。 Freundlich方程比两个方程都更好地解释了K固定行为,这由较高的测定系数(0.90至0.99)所证明。 Freundlich参数“ a”与土壤的粘土含量(0.982),pH(0.919)和阳离子交换容量(CEC)(0.907)显着相关。

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