Cation uptake by fine aggregate in hardened cement mortar and its effect on electrical properties

Atolo A. Tuinukuafe , Anuj Parashar , Xiaoqiang Hou , Jason H. Ideker
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Abstract

Electrical resistivity tests can be used to evaluate the transport properties of concrete and provide a durability assessment. However, the electrical resistivity is largely dependent on the pore solution composition and recent work suggests that some aggregates have the capacity for cation uptake. This study first aims to provide further evidence for adsorption of cations on aggregate surfaces, without formation of reaction products (e.g. alkali-silica reaction). Secondly, hardened mortar samples were prepared using a fine aggregate with a high alkali affinity and a non-reactive fine aggregate as a control. The electrical resistivity of mortars was measured, and the pore solution of these mortars was obtained through high-pressure extraction. The effect of aggregate moisture dilution on the pore solution was decoupled by using a pore partitioning model. The results indicate that aggregate minerology can influence the pore solution composition through cation uptake. Specific minerals of minor quantity, like biotite, may be responsible for cation exchange. While adsorbed cations strongly affected pore solution and formation factor measurement, the bulk resistivity measurements on hardened mortar were only marginally influenced. Research on other implications of similar aggregate interactions with pore solutions are an intriguing area for future research.
水泥硬化砂浆中细骨料对阳离子的吸收及其对电性能的影响
电阻率试验可用于评估混凝土的输送性能,并提供耐久性评估。然而,电阻率在很大程度上取决于孔隙溶液组成,最近的研究表明,一些聚集体具有阳离子吸收能力。本研究首先旨在提供进一步的证据,证明在不形成反应产物(如碱-硅反应)的情况下,阳离子在聚集体表面吸附。其次,以高碱亲和性细骨料和无反应性细骨料为对照,制备硬化砂浆样品。测定了砂浆的电阻率,并通过高压萃取得到了砂浆的孔隙溶液。利用孔隙分配模型解耦了骨料水分稀释对孔隙溶液的影响。结果表明,骨料矿物学通过阳离子吸收影响孔隙溶液组成。少量的特殊矿物,如黑云母,可能负责阳离子交换。虽然吸附阳离子对孔隙溶解度和地层系数的测量有强烈影响,但硬化砂浆的体电阻率测量仅受轻微影响。研究类似聚集体与孔隙溶液相互作用的其他含义是未来研究的一个有趣的领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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