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土壤富里酸和胡敏酸对针铁矿/溶液界面上 Pb 结合的影响:配体电荷分布建模和 Pb 的形态分布。

Effect of Soil Fulvic and Humic Acids on Pb Binding to the Goethite/Solution Interface: Ligand Charge Distribution Modeling and Speciation Distribution of Pb.

机构信息

College of Resources and Environment, Huazhong Agricultural University , Wuhan 430070, P.R. China.

Department of Soil Quality, Wageningen University , P.O. Box 8005, 6700 EC, Wageningen, The Netherlands.

出版信息

Environ Sci Technol. 2018 Feb 6;52(3):1348-1356. doi: 10.1021/acs.est.7b05412. Epub 2018 Jan 23.

Abstract

The effect of adsorbed soil fulvic (JGFA) and humic acid (JGHA) on Pb binding to goethite was studied with the ligand charge distribution (LCD) model and X-ray absorption fine structure (XAFS) spectroscopy analysis. In the LCD model, the adsorbed small JGFA particles were evenly located in the Stern layer, but the large JGHA particles were distributed over the Stern layer and the diffuse layer, which mainly depended on the JGHA diameter and concentrations. Specific interactions of humic substances (HS) with goethite were modeled by inner-sphere complexes between the -FeOH of goethite and the -COO of HS and by Pb bridges between surface sites and COO groups of HS. At low Pb levels, nearly 100% of Pb was bound as Pb bridges for both JGFA and JGHA. At high Pb levels and low HS loading, Pb-goethite almost dominated over the entire studied pH range, but at high HS loading, the primary species was goethite-HS-Pb at acidic pH and goethite-Pb at alkaline pH. Compared with JGFA, there was a constant contribution of Pb bridges of about 10% for JGHA. The linear combination fit of EXAFS, using Pb-HS and Pb-goethite as references, indicated that with increased HS loading more Pb was bound to adsorbed HS and less to goethite, which supported the LCD calculations.

摘要

研究了土壤腐殖酸(JGFA)和胡敏酸(JGHA)吸附对针铁矿结合 Pb 的影响,采用配体电荷分布(LCD)模型和 X 射线吸收精细结构(XAFS)光谱分析。在 LCD 模型中,吸附的小 JGFA 颗粒均匀地分布在斯特恩层中,而大 JGHA 颗粒分布在斯特恩层和扩散层中,这主要取决于 JGHA 的直径和浓度。通过针铁矿的 -FeOH 与 HS 的 -COO 之间的内球络合物以及表面位点与 HS 的 COO 基团之间的 Pb 桥,对 HS 与针铁矿的特定相互作用进行了建模。在低 Pb 水平下,对于 JGFA 和 JGHA,几乎 100%的 Pb 被结合为 Pb 桥。在高 Pb 水平和低 HS 负载下,整个研究 pH 范围内几乎主要是 Pb-针铁矿,而在高 HS 负载下,在酸性 pH 下主要是针铁矿-HS-Pb,在碱性 pH 下主要是针铁矿-Pb。与 JGFA 相比,JGHA 中 Pb 桥的恒定贡献约为 10%。使用 Pb-HS 和 Pb-针铁矿作为参考的 EXAFS 的线性组合拟合表明,随着 HS 负载的增加,更多的 Pb 结合到吸附的 HS 上,而与针铁矿结合的 Pb 减少,这支持了 LCD 计算。

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