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Adsorption and desorption of phosphorus in subtropical soils as affected by management system and mineralogy

机译:管理制度和矿物学对亚热带土壤中磷的吸附和解吸的影响

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Phosphorus added to soil is only partly available to crops because it is sorbed to some extent by various soil components. The aim of this study was to assess the influence of mineralogy and soil management (either conventional tillage, CT, or no-tillage, NT) on the maximum P adsorption capacity (P-max). remaining P (P-rem), and maximum desorbable P (beta) in a Rhodic Paleudult, a Rhodic Hapludox and a Humic Hapludox, all from southern Brazil. P-max was estimated from the Langmuir equation describing the sorption curve for soil samples and beta from a first-order kinetic equation describing successive P extraction with an anion-exchange resin following incubation of the soils with an amount of P equivalent to 30% of P-max (P-added). P-max and P-rem were significantly correlated with the content of iron oxides (mainly in goethite, Gt). P-max was lower under NT than under CT in the Rhodic Paleudult and Rhodic Hapludox. On the other hand, P-rem was lower under CT than under NT, and exhibited significant differences between the 0-5 and 5-10 cm layers under NT. Parameter beta peaked in the soil with the highest P-max but the beta/P-added ratio was highest in the Rhodic Paleudult, which was the soil with the lowest content in iron oxides. These results suggest that the soil with the highest P-max and Gt content (viz., the Humic Hapludox) supplies plants with P at a lower rate than the other two despite its high P desorption potential. (C) 2015 Elsevier B.V. All rights reserved.
机译:添加到土壤中的磷仅部分可用于农作物,因为各种土壤成分都会在一定程度上吸收磷。这项研究的目的是评估矿物学和土壤管理(常规耕作,CT或免耕,NT)对最大磷吸附量(P-max)的影响。来自巴西南部的Rhodic Paleudult,Rhodic Hapludox和Humic Hapludox中的剩余P(P-rem)和最大可解吸P(beta)。从描述土壤样品吸附曲线的Langmuir方程和描述由一阶动力学方程的β估算P-max,该方程描述在土壤中孵育30%P的土壤后,用阴离子交换树脂连续萃取P。 P-max(加P)。 P-max和P-rem与氧化铁含量(主要在针铁矿,Gt中)显着相关。在Rhodic Paleudult和Rhodic Hapludox中,NT下的P-max低于CT下的。另一方面,CT下的P-rem低于NT下的P-rem,在NT下的0-5和5-10 cm层之间显示出显着差异。参数β在P-max最高的土壤中达到峰值,但在Rhodic Paleudult(其氧化铁含量最低的土壤)中,β/ P的添加比例最高。这些结果表明,尽管具有较高的P解吸潜力,但P-max和Gt含量最高的土壤(即Humic Hapludox)为植物提供的P速率低于其他两种。 (C)2015 Elsevier B.V.保留所有权利。

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