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铝和铁(氢)氧化物 - 水界面处硫酸盐吸附的量子化学计算——吉布斯自由能的估算

Quantum chemical calculations of sulfate adsorption at the Al- and Fe-(hydr)oxide-H20 interface-estimation of gibbs free energies.

作者信息

Paul Kristian W, Kubick James D, Sparks Donald L

机构信息

Department of Plant and Soil Sciences, 152 Townsend Hall, University of Delaware, Newark, Delaware 19716, USA.

出版信息

Environ Sci Technol. 2006 Dec 15;40(24):7717-24. doi: 10.1021/es061139y.

Abstract

Quantum chemical calculations were performed to estimate relative Gibbs free energies of sulfate adsorption on variably charged Al- and Fe-(hydr)oxide clusters. Innersphere bidentate bridging and monodentate adsorption were predicted to be exergonic on positively charged Al- and Fe-(hydr)oxides (ranging from -19 to -124 kJ mol-1). However, inner-sphere and H-bonded adsorption on neutral Al- and Fe-(hydr)oxides was predicted to be endergonic (ranging from +5 to +61( kJ mol-1)). Atthe highest positive surface charge, bidentate bridging adsorption was most thermodynamically favorable. At intermediate positive surface charge, bidentate bridging and monodentate adsorption energies were equivalent on Al-(hydr)oxides; monodentate adsorption was more thermodynamically favorable on Fe-(hydr)oxides as compared with bidentate bridging adsorption. The predicted thermodynamic favorability of sulfate adsorption on Al- and Fe-(hydr)oxides was directly related to positive surface charge and indirectly related to the HO-/SO42- exchange stoichiometry, chi. Predicted Gibbs free energies of bidentate bridging and monodentate sulfate adsorption on an Fe-(hydr)oxide cluster (charge = +1, chi = 1) agreed reasonably well with published experimental estimates of sulfate adsorption on geothite (predicted values -34 and -52 kJ mol-1, respectively, and experimental range -36 to -30 kJ mol-').

摘要

进行了量子化学计算,以估算可变电荷的铝和铁(氢)氧化物簇上硫酸盐吸附的相对吉布斯自由能。预测内界双齿桥连和单齿吸附在带正电荷的铝和铁(氢)氧化物上是放能的(范围为-19至-124 kJ mol-1)。然而,预测中性铝和铁(氢)氧化物上的内界和氢键吸附是吸能的(范围为+5至+61 kJ mol-1)。在最高正表面电荷下,双齿桥连吸附在热力学上最有利。在中等正表面电荷下,双齿桥连和单齿吸附能在铝(氢)氧化物上相当;与双齿桥连吸附相比,单齿吸附在铁(氢)氧化物上在热力学上更有利。预测的硫酸盐在铝和铁(氢)氧化物上吸附的热力学有利性与正表面电荷直接相关,与HO-/SO42-交换化学计量比χ间接相关。预测的铁(氢)氧化物簇(电荷=+1,χ=1)上双齿桥连和单齿硫酸盐吸附的吉布斯自由能与已发表的针铁矿上硫酸盐吸附的实验估计值相当吻合(预测值分别为-34和-52 kJ mol-1,实验范围为-36至-30 kJ mol-1)。

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