Suppr超能文献

针铁矿对碳酸盐的吸附与磷酸盐的竞争作用

Carbonate adsorption on goethite in competition with phosphate.

作者信息

Rahnemaie Rasoul, Hiemstra Tjisse, van Riemsdijk Willem H

机构信息

Department of Soil Quality, Wageningen University, PO Box 47, NL 6700 AA Wageningen, The Netherlands.

出版信息

J Colloid Interface Sci. 2007 Nov 15;315(2):415-25. doi: 10.1016/j.jcis.2007.07.017. Epub 2007 Sep 7.

Abstract

Competitive interaction of carbonate and phosphate on goethite has been studied quantitatively. Both anions are omnipresent in soils, sediments, and other natural systems. The PO4-CO3 interaction has been studied in binary goethite systems containing 0-0.5 M (bi)carbonate, showing the change in the phosphate concentration as a function of pH, goethite concentration, and carbonate loading. In addition, single ion systems have been used to study carbonate adsorption as a function of pH and initial (H)CO3 concentration. The experimental data have been described with the charge distribution (CD) model. The charge distributions of the inner-sphere surface complexes of phosphate and carbonate have been calculated separately using the equilibrium geometries of the surface complexes, which have been optimized with molecular orbital calculations applying density functional theory (MO/DFT). In the CD modeling, we rely for phosphate on recent parameters from the literature. For carbonate, the surface speciation and affinity constants have been found by modeling the competitive effect of CO3 on the phosphate concentration in CO3-PO4 systems. The CO3 constants obtained can also predict the carbonate adsorption in the absence of phosphate very well. A combination of inner- and outer-sphere CO3 complexation is found. The carbonate adsorption is dominated by a bidentate inner-sphere complex, (FeO)2CO. This binuclear bidentate complex can be present in two different geometries that may have a different IR behavior. At a high PO(4) and CO3 loading and a high Na+ concentration, the inner-sphere carbonate complex interacts with a Na+ ion, probably in an outer-sphere fashion. The Na+ binding constant obtained is representative of Na-carbonate complexation in solution. Outer-sphere complex formation is found to be unimportant. The binding constant is comparable with the outer-sphere complexation constants of, e.g., SO(2-)4 and SeO(2-)4.

摘要

已对碳酸根和磷酸根在针铁矿上的竞争相互作用进行了定量研究。这两种阴离子在土壤、沉积物和其他自然系统中普遍存在。在含有0 - 0.5 M(碳酸氢)碳酸根的二元针铁矿体系中研究了PO₄⁻ - CO₃相互作用,展示了磷酸根浓度随pH值、针铁矿浓度和碳酸根负载量的变化。此外,还使用单离子体系研究了碳酸根吸附随pH值和初始(H)CO₃浓度的变化。实验数据已用电荷分布(CD)模型进行了描述。利用表面配合物的平衡几何结构分别计算了磷酸根和碳酸根内球表面配合物的电荷分布,这些平衡几何结构已通过应用密度泛函理论(MO/DFT)的分子轨道计算进行了优化。在CD建模中,对于磷酸根,我们依赖文献中的最新参数。对于碳酸根,通过对CO₃ - PO₄体系中CO₃对磷酸根浓度的竞争效应进行建模,得到了表面形态和亲和常数。所获得的CO₃常数在不存在磷酸根的情况下也能很好地预测碳酸根吸附。发现存在内球和外球CO₃络合的组合。碳酸根吸附主要由双齿内球配合物(FeO)₂CO主导。这种双核双齿配合物可能以两种不同的几何结构存在,其红外行为可能不同。在高PO₄和CO₃负载量以及高Na⁺浓度下,内球碳酸根配合物可能以外球方式与Na⁺离子相互作用。所获得的Na⁺结合常数代表了溶液中Na - 碳酸根的络合情况。发现外球配合物的形成不重要。该结合常数与例如SO₄²⁻和SeO₄²⁻的外球络合常数相当。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验