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An insight into the swelling pressure of GMZ01 bentonite with consideration of salt solution effects

机译:考虑到盐溶液效应,对GMZ01膨润土的膨胀压力的洞察力

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Investigation of the swelling pressure of compacted bentonite is of great importance in evaluating the performance of the engineered barrier system in deep geological repositories for disposal of high-level radioactive waste. In this study, three methods including Cui method (Cui et al., 2013), swell-consolidation method and constant-volume method were employed for determining the swelling pressure of compacted GMZ01 bentonite with infiltration of different concentrations of salt solutions. The swell-consolidation method gave higher value of swelling pressure, while the other two methods produced almost the same values. A critical void ratio was determined for separating the swelling induced by combination effects of double-layer swelling and crystalline swelling from that caused by the effect of crystalline swelling. Based on this, the salt solution effect on swelling pressure can be well explained. For specimens with a void ratio higher than this critical value, swelling pressure decreases with the increase of concentration of NaCl solution, due to the inhibition of the double-layer swelling and crystalline swelling. On the contrary, in case of void ratio near this critical value, the salt solution effects become negligibly. Conclusions reached on GMZ01 bentonite in this work are useful for determination of geological engineering parameters for construction of the Chinese deep geological repository.
机译:对压实膨润土的膨胀压力的调查非常重视评估在深层地质储存库中的工程障碍系统的性能,以处理高级放射性废物。在该研究中,采用了三种方法(Cui等,2013),膨胀固结方法和恒定体积法,用于测定压实GMZ01膨润土的溶胀压力,具有不同浓度的盐溶液。膨胀合并方法具有更高的溶胀压力值,而另外两种方法产生几乎相同的值。测定临界空隙率,用于分离通过双层溶胀和结晶溶胀的组合效应诱导的溶胀,从晶体溶胀的作用引起的。基于此,可以很好地解释盐溶液对溶胀压力的影响。对于具有高于该临界值的空隙率的标本,由于抑制双层溶胀和结晶溶胀,溶胀压力随着NaCl溶液浓度的增加而降低。相反,在这种临界值附近的空隙率的情况下,盐溶液效果可忽略。在这项工作中达到GMZ01 Bentonite的结论可用于确定中国深层地质储存库的地质工程参数。

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