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The impact of sulphate and magnesium on chloride binding in Portland cement paste

机译:硫酸镁和镁对硅酸盐水泥浆中氯离子结合的影响

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The effect of magnesium and sulphate present in sea water on chloride binding in Portland cement paste was investigated. Ground well hydrated cement paste was exposed to MgCl_2, NaCl, NaCl + MgCl_2, MgSO_4 + MgCl_2 and artificial sea water solutions with a range of concentrations at 20 °C. Chloride binding isotherms are determined and pH of the solutions were measured. A selection of samples was examined by SEM-EDS to identify phase changes upon exposure. The experimental data were compared with calculations of a thermodynamic model. Chloride binding from sea water was similar to chloride binding for NaCl solutions. The magnesium content in the sea water lead to a slight decrease in pH, but this did not result in a notable increase in chloride binding. The sulphate present in sea water reduces both chloride binding in C-S-H and AFm phases, as the C-S-H incorporates more sulphates instead of chlorides, and part of the AFm phases converts to ettringite.
机译:研究了海水中镁和硫酸盐对波特兰水泥浆中氯离子结合的影响。将磨细的水合水泥浆在20°C的浓度范围内暴露于MgCl_2,NaCl,NaCl + MgCl_2,MgSO_4 + MgCl_2和人造海水溶液中。确定氯化物结合等温线并测量溶液的pH。通过SEM-EDS检查选择的样品,以识别暴露后的相变。将实验数据与热力学模型的计算进行比较。来自海水的氯离子结合与NaCl溶液的氯离子结合相似。海水中的镁含量导致pH值略有降低,但这并未导致氯离子结合率显着提高。海水中存在的硫酸盐会减少C-S-H和AFm相中的氯化物结合,因为C-S-H包含更多的硫酸盐而不是氯化物,并且一部分AFm相转化为钙矾石。

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