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High-pH/low pH ordinary Portland cement mortars impacts on compacted bentonite surfaces: Application to clay barriers performance

机译:高pH /低pH普通波特兰水泥砂浆对压实膨润土表面的影响:应用于粘土屏障的性能

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摘要

The design of engineered barrier systems for high-level radioactive waste isolation requires the use of cement-based materials. Small-scale surface reactivity interface experiments were designed to perform a reference laboratory study. It simulated granitic groundwater infiltration through cement mortar/bentonite (CB) binary columns. The tests ran duplicated over 6 and 18 months and included low-pH, CEM I and CEM II ordinary Portland cement mortars in contact with bentonite. After the experiments, the materials were analysed using scanning electron microscopy attached to energy dispersive energy X-ray analysis (EDX), surface mineralogy using grazing incidence X-ray diffraction configurations, specific surface area and effluent chemistry. EDX chemical profiles measured from CB interface contact reproduced, in 100 mu m to 1 mm thickness, a characteristic geochemical Mg perturbation in the bentonite and calcite precipitation in cement materials. These processes are known to be developed in 10-15-years within 5 mm of the interface. The comparison of these long, large scale experiments with the small scale experiments showed that the chemical perturbation thickness development rate will decrease over time. The limestone addition (CEM II) leaves less room for calcite precipitation, and ettringite became stabilized, which limited the extent of dissolution-precipitation processes. Then, the CEM II mortar had better resistance to perturbation.
机译:用于高级放射性废物隔离的工程屏障系统的设计需要使用水泥基材料。小型表面反应性界面实验旨在进行参考实验室研究。它通过水泥砂浆/膨润土(CB)二元柱模拟花岗岩地下水渗透。该试验在6至18个月中重复,包括低pH,CEM I和CEM II普通波特兰水泥砂浆,与膨润土接触。实验后,使用附着于能量分散能量X射线分析(EDX)的扫描电子显微镜分析材料,使用放牧入射X射线衍射构造,比表面积和流出物化学,表面矿物学。 EDX化学分布从Cb界面接触再现,在100μm至1mm厚度中,在水泥材料中膨润土和方解石沉淀的特征地球化学Mg扰动。已知这些过程在<5毫米界面内的10-15岁以内开发。这些长度大规模实验的比较,小规模实验表明,随着时间的推移,化学扰动厚度发育率将降低。石灰石添加(CEM II)较少的方解石沉淀的空间,并且Ettringite变得稳定,这限制了溶解沉淀过程的程度。然后,CEM II砂浆对扰动具有更好的抗性。

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