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黏土/电解质界面的耦合化学过程:钠蒙脱石的批量滴定研究

Coupled chemical processes at clay/electrolyte interface: a batch titration study of Na-montmorillonites.

作者信息

Duc Myriam, Thomas Fabien, Gaboriaud Fabien

机构信息

Laboratoire de Chimie Physique et Microbiologie pour l'Environnement, UMR 7564, CNRS-UHP Nancy 1, 405 rue de Vandoeuvre, F-54600 Villers-lès-Nancy, France.

出版信息

J Colloid Interface Sci. 2006 Aug 15;300(2):616-25. doi: 10.1016/j.jcis.2006.04.081. Epub 2006 Jun 13.

Abstract

The present work addresses the protolytic charge of montmorillonite, which occurs on the broken-bond sites at the particle edges. The purpose is to overcome the general difficulty arising in potentiometric titration due to coupled side reactions, which severely impede the titrant budget (partial dissolution of the clay and of secondary phases, hydrolysis and readsorption of dissolved species, cation exchange). Batch potentiometric titrations were carried out on the montmorillonite fractions extracted from two bentonites (MX80 and SWy2) to quantify their protolytic charge. The effects of equilibration time (24 h and 7 days), pH from 4 to 10, and ionic strength (0.1 and 0.01 mol L(-1)) were extensively studied for the MX80 sample. Quantification of dissolution was achieved by analysis of the equilibrium solutions for dissolved species and by La(3+) exchange of the readsorbed species. The results clearly show that secondary phases such as iron- or silica-rich minerals contribute to the dissolved species, according to the nature of the raw bentonite. Furthermore, readsorption affects significant amounts of dissolved species. The overconsumption of proton/hydroxide due to dissolution, readsorption, and hydrolysis of dissolved species was evaluated using a self-consistent thermodynamic calculation. The ability of such calculation to correct the raw titration curves in order to extract the titrable surface charge of montmorillonite was evaluated by comparison with the continuous titration procedure. Especially in the alkaline domain, correcting the raw batch titration curves for the measured side reactions failed to reproduce the continuous titration curves. These observations demonstrate the limitations of the batch titration method and the superiority of fast, continuous methods for quantifying the dissociable surface charge of clays.

摘要

本研究探讨了蒙脱石的质子化电荷,其发生在颗粒边缘的断键位点上。目的是克服电位滴定中由于耦合副反应而产生的普遍困难,这些副反应严重阻碍了滴定剂预算(粘土和次生相的部分溶解、溶解物种的水解和再吸附、阳离子交换)。对从两种膨润土(MX80和SWy2)中提取的蒙脱石级分进行了批量电位滴定,以量化它们的质子化电荷。针对MX80样品,广泛研究了平衡时间(24小时和7天)、pH值从4到10以及离子强度(0.1和0.01 mol L(-1))的影响。通过分析溶解物种的平衡溶液和对再吸附物种进行La(3+)交换来实现溶解的量化。结果清楚地表明,根据原膨润土的性质,诸如富含铁或硅的矿物等次生相对溶解物种有贡献。此外,再吸附影响大量的溶解物种。使用自洽热力学计算评估了由于溶解、再吸附和溶解物种的水解导致的质子/氢氧化物的过量消耗。通过与连续滴定程序比较,评估了这种计算校正原始滴定曲线以提取蒙脱石可滴定表面电荷的能力。特别是在碱性区域,校正原始批量滴定曲线以考虑测量到的副反应无法重现连续滴定曲线。这些观察结果证明了批量滴定法的局限性以及快速、连续方法在量化粘土可解离表面电荷方面的优越性。

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