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粘土矿物表面电化学性质的三层模型。

A triple-layer model of the surface electrochemical properties of clay minerals.

作者信息

Leroy P, Revil A

机构信息

Department of Hydrogeophysics and Porous Media, CNRS-CEREGE, Aix-en-Provence, France.

出版信息

J Colloid Interface Sci. 2004 Feb 15;270(2):371-80. doi: 10.1016/j.jcis.2003.08.007.

Abstract

We propose an electrical triple-layer model (TLM) to describe the electrochemical properties of clay minerals. This model includes a speciation model of the active crystallographic surface sites plus a classical description of the Stern and diffuse layers. In addition to the surface charges associated with the surface groups (aluminols, silanols, and Al--O--Si sites), the model takes into account the degree of isomorphic substitution rate inside the crystalline network. The model computes both the zeta potential and the low-frequency (few kHz) surface conductivity as these two properties are equally important to interpret electrokinetic properties of colloids and clay-rich porous materials. For surface conductivity, the model comprises two contributions; one is associated with the Stern layer (dynamic Stern layer) and the second is associated with the excess of counterions located in the diffuse Gouy-Chapman layer. The parameters of the TLM model are optimized using the Simplex algorithm. Comparison between the model and the experimental data shows good agreement for a reasonable choice of parameters close to the a priori values determined from quartz and gibbsite. Surface conductivity of smectite appears rather independent of salinity, while for kaolinite, surface conductivity increases with salinity. In both cases, the Stern layer contribution to surface conductivity dominates but the contribution associated with the diffuse layer cannot be neglected.

摘要

我们提出了一种电三层模型(TLM)来描述粘土矿物的电化学性质。该模型包括活性晶体表面位点的物种形成模型以及斯特恩层和扩散层的经典描述。除了与表面基团(铝醇、硅醇和Al-O-Si位点)相关的表面电荷外,该模型还考虑了晶体网络内部同晶替代率的程度。该模型计算了zeta电位和低频(几kHz)表面电导率,因为这两个性质对于解释胶体和富含粘土的多孔材料的电动性质同样重要。对于表面电导率,该模型包括两个贡献;一个与斯特恩层(动态斯特恩层)相关,另一个与位于扩散古伊-查普曼层中的过量反离子相关。TLM模型的参数使用单纯形算法进行优化。模型与实验数据之间的比较表明,对于接近由石英和三水铝石确定的先验值的合理参数选择,两者具有良好的一致性。蒙脱石的表面电导率似乎相当独立于盐度,而对于高岭土,表面电导率随盐度增加。在这两种情况下,斯特恩层对表面电导率的贡献占主导,但与扩散层相关的贡献不可忽略。

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