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蒙脱石酸碱表面化学建模

Modeling the acid-base surface chemistry of montmorillonite.

作者信息

Bourg Ian C, Sposito Garrison, Bourg Alain C M

机构信息

Department of Civil and Environmental Engineering, University of California, Berkeley, CA 94720-3114, USA.

出版信息

J Colloid Interface Sci. 2007 Aug 15;312(2):297-310. doi: 10.1016/j.jcis.2007.03.062. Epub 2007 Mar 31.

Abstract

Proton uptake on montmorillonite edge surfaces can control pore water pH, solute adsorption, dissolution kinetics and clay colloid behavior in engineered clay barriers and natural weathering environments. Knowledge of proton uptake reactions, however, is currently limited by strong discrepancies between reported montmorillonite titration data sets and by conflicting estimates of edge structure, reactivity and electrostatics. In the present study, we show that the apparent discrepancy between titration data sets results in large part from the widespread use of an erroneous assumption of zero specific net proton surface charge at the onset of titration. Using a novel simulation scheme involving a surface chemistry model to simulate both pretreatment and titration, we find that montmorillonite edge surface chemistry models that account for the "spillover" of electrostatic potential from basal onto edge surfaces and for the stabilization of deprotonated Al-Si bridging sites through bond-length relaxation at the edge surface can reproduce key features of the best available experimental titration data (the influence of pretreatment conditions on experimental results, the absence of a point of zero salt effect, buffer capacity in the acidic pH range). However, no combination of current models of edge surface structure, reactivity and electrostatics can quantitatively predict, without fitted parameters, the experimental titration data over the entire range of pH (4.5 to 9) and ionic strength (0.001 to 0.5 mol dm(-3)) covered by available data.

摘要

在工程黏土屏障和自然风化环境中,蒙脱石边缘表面的质子吸收可以控制孔隙水的pH值、溶质吸附、溶解动力学以及黏土胶体行为。然而,目前关于质子吸收反应的知识受到已报道的蒙脱石滴定数据集之间的巨大差异以及边缘结构、反应性和静电学相互矛盾的估计的限制。在本研究中,我们表明滴定数据集之间的明显差异在很大程度上是由于在滴定开始时广泛使用了零比净质子表面电荷的错误假设。通过使用一种涉及表面化学模型来模拟预处理和滴定的新型模拟方案,我们发现考虑从基面到边缘表面的静电势“溢出”以及通过边缘表面的键长弛豫来稳定去质子化的铝硅桥连位点的蒙脱石边缘表面化学模型可以重现现有最佳实验滴定数据的关键特征(预处理条件对实验结果的影响、不存在零盐效应点、酸性pH范围内的缓冲容量)。然而,目前边缘表面结构、反应性和静电学模型的任何组合都无法在不使用拟合参数的情况下定量预测现有数据所涵盖的整个pH范围(4.5至9)和离子强度(0.001至0.5 mol dm⁻³)内的实验滴定数据。

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