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首页> 外文期刊>Engineering Geology >Effect of synthetic water and cement solutions on the swelling pressure of compacted Gaomiaozi(GMZ) bentonite: The Beishan site case, Gansu, China
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Effect of synthetic water and cement solutions on the swelling pressure of compacted Gaomiaozi(GMZ) bentonite: The Beishan site case, Gansu, China

机译:合成水和水泥溶液对压实高密唑(GMZ)膨润土膨胀压力的影响:北山现场案例,甘肃,中国

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摘要

After construction of the repository, the bentonite will undergo some chemical effects resulting from the chemistry of site water and the solution produced by cement degradation in the high-level radioactive waste repository. In this study, the swelling pressure of compacted Gaomiaozi(GMZ) bentonite was investigated with three types of pore water simulating site groundwater (synthetic Beishan Site Water - BSW) and two cement solutions (Young Cement Water - YCW and Evolved Cement Water - ECW). X-Ray diffractometry (XRD) tests were also carried out to analyse the mineralogy of the samples before and after the swelling pressure tests. Results show that the swelling pressure curve is of "double-peak" pattern, which fades with the pH of solutions increase. The swelling pressure of GMZ bentonite decreases little with BSW, significantly with YCW and slightly with ECW. At a higher dry density, the swelling pressure of compacted GMZ bentonite reaches stability later and the final swelling pressure is higher. Cation exchange takes place in the bentonite and the montmorillonite of GMZ bentonite transforms to multi-cation dominant montmorillonite with the three types of pore waters. The swelling pressure reduction affected by the cement solutions is mainly due to the montmorillonite dissolution, but the secondary minerals are in amorphous phases. The swelling property of compacted GMZ bentonite can be reduced by cement solutions in the long-term operation of repository.
机译:在施工储存库之后,膨润土将经历由场地水化学和通过水泥降解产生的溶液产生的一些化学效果,在高水平放射性废物库中产生。在这项研究中,研究了压实高密酶(GMZ)膨润土的膨胀压力,用三种孔隙水模拟现场地下水(合成北山网站水 - BSW)和两个水泥解决方案(青少年水泥水 - YCW和进化水泥水 - ECW) 。还进行了X射线衍射测定(XRD)试验,以分析溶胀压力试验前后样品的矿物学。结果表明,膨胀压力曲线是“双峰”图案,其含有溶液的pH增加。 GMZ膨润土的溶胀压力随着BSW的少量减少,显着用YCW和略微用ECW略微下降。在更高的干密度下,压实GMZ膨润土的溶胀压力以后达到稳定性,最终的溶胀压力较高。阳离子交换发生在膨润土和GMZ膨润土的蒙脱石转化为多阳离子显性蒙脱石与三种类型的孔隙水。受水泥溶液影响的膨胀压力降低主要是由于蒙脱石溶解,但二次矿物质是无定形相。通过在储存库的长期运行中可以减少压实Gmz Bentonite的溶胀性能。

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