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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Acid-base behavior of a colloidal clays fraction extracted from natural quartz sand: Effect of permanent surface charge
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Acid-base behavior of a colloidal clays fraction extracted from natural quartz sand: Effect of permanent surface charge

机译:从天然石英砂中提取的胶体粘土组分的酸碱行为:永久性表面电荷的影响

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The electrical double-layer model (EDLM), generally used in order to describe the behaviour of the solids bearing only amphoteric groups at the surface (i.e. oxides), can be extended to solid based dispersion presenting simultaneously amphoteric sites (pH-dependent charge) and permanent structural charges (pH-independent charge) at the surface (i.e. clays). In this study, the acid-base behaviours of a fraction of colloidal clays extracted from a natural quartz sand have been modelled within the EDLM frameworks. These colloidal clays also exhibit heterogeneous macroscopic surface charge distribution. We have considered the case where the colloidal fraction presents only amphoteric sites at the surface (case I) and the case where both pH-depending and pH-independent charges are present Simultaneously at the surface (case 2). The modelling results show a great difference between the theory and the experimental data for case I but a good corroboration for case 2. Therefore. in order to describe correctly the physical-chemistry properties of the colloidal fraction it is necessary to take into account the permanent charges (microscopic surface charge heterogeneity) to explain the increase in the zero protonic charge (ZPC) and in the protonation amount with decreasing ionic strength. In case 1. the double-layer model leads to a constant ZPC and to an increase in the protonation amount as a function of ionic strength, which is in disagreement with the experimental results.
机译:电双层模型(EDLM)通常用于描述表面仅带有两性基团的固体(即氧化物)的行为,可以扩展为同时显示两性位点(pH依赖电荷)的基于固体的分散体以及表面(即粘土)的永久结构电荷(与pH无关的电荷)。在这项研究中,已经在EDLM框架内模拟了从天然石英砂中提取的一部分胶体粘土的酸碱行为。这些胶体粘土还表现出不均匀的宏观表面电荷分布。我们已经考虑了胶体部分仅在表面存在两性位点的情况(情况I)以及pH依赖性和pH无关电荷同时在表面存在的情况(情况2)。建模结果表明,案例1的理论和实验数据之间存在很大差异,但案例2的确证性很好。为了正确地描述胶体级分的物理化学性质,有必要考虑永久电荷(微观表面电荷的非均质性)以解释零质子电荷(ZPC)和质子化量随离子减少而增加的情况。强度。在情况1.中,双层模型导致ZPC恒定,并且质子化量随离子强度的变化而增加,这与实验结果不一致。

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