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首页> 外文期刊>Journal of Colloid and Interface Science >Addition of carboxylic acids modifies phosphate sorption on soil and boehmite surfaces: A solution chemistry and XANES spectroscopy study
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Addition of carboxylic acids modifies phosphate sorption on soil and boehmite surfaces: A solution chemistry and XANES spectroscopy study

机译:羧酸的添加可改善磷酸盐在土壤和勃姆石表面的吸附:溶液化学和XANES光谱研究

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摘要

Soil acidification is a globally significant agricultural issue, as the plant availability of phosphorus (P) is decreased through increased P sorption onto aluminium (Al) hydroxides and other solid phase binding sites. X-ray absorption near edge structure (XANES) spectroscopy generated new information on the speciation of Al and P in the presence of carboxylic acids on soil and boehmite (gamma-AIOOH) surfaces. XANES spectra were acquired in the soft X-ray regime at the P and Al L-2,L-3-edges, and the Al K-edge, respectively. Adding oxalic acid to soil enhanced Al dissolution and exposed previously occluded soil P, while hydroxybenzoic anti coumaric acids did not compete with P for surface binding sites. Boehmite strongly adsorbed carboxylic acids in the absence of applied phosphorus. However, when P was applied with carboxylic acids, the carboxylics were unable to compete with P for binding, especially hydroxybenzoic and coumaric acids. Using XANES in both total electron yield and fluorescence yield modes provided valuable information on both surface and near-surface processes of P and Al due to different information depths. The Al K-edge XANES provided baseline information on the solid-phase matrix. XANES in total electron yield mode and at the P L-edge shows promise for speciation of elements on soil surfaces due to enhanced sensitivity for speciation of surface-adsorbed species compared to the commonly used P K-edge XANES. (C) 2008 Elsevier Inc. All rights reserved.
机译:土壤酸化是一个全球性的重大农业问题,因为磷(P)在植物中的可利用性通过增加磷在铝(Al)氢氧化物和其他固相结合位点上的吸附而降低。在土壤和勃姆石(γ-AIOOH)表面上存在羧酸时,X射线吸收近边缘结构(XANES)光谱产生了有关Al和P形态的新信息。 XANES光谱是分别在P和Al L-2,L-3-边缘和Al K边缘在软X射线状态下采集的。向土壤中添加草酸可增强Al的溶解度,并暴露先前吸附的土壤P,而羟基苯甲酸抗香豆酸则不能与P竞争表面结合位点。在没有施加磷的情况下,勃姆石强烈吸附羧酸。然而,当P与羧酸一起使用时,羧酸不能与P竞争结合,特别是羟基苯甲酸和香豆酸。由于总的信息深度不同,在总电子产率和荧光产率模式中使用XANES可以在P和Al的表面和近表面过程中提供有价值的信息。 Al K-edge XANES提供了有关固相基质的基线信息。与通常使用的P K边缘XANES相比,由于总吸附率提高了对表面吸附物质形成物种的敏感性,因此XANES在总电子产率模式下和在P L边缘显示出对土壤表面元素形成物种的希望。 (C)2008 Elsevier Inc.保留所有权利。

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