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首页> 外文期刊>Geosciences >Assessing the Long-Term Behaviour of the Industrial Bentonites Employed in a Repository for Radioactive Wastes by Studying Natural Bentonites in the Field
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Assessing the Long-Term Behaviour of the Industrial Bentonites Employed in a Repository for Radioactive Wastes by Studying Natural Bentonites in the Field

机译:通过研究野外天然膨润土,评估放射性废物处置库中使用的工业膨润土的长期行为

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摘要

Bentonite makes an important contribution to the performance of the engineered barriers in most radioactive waste repository designs. The choice of bentonite results from its favourable properties for waste isolation and its stability in relevant geological environments. However, the longevity of bentonite (especially the resistance to waste container sinking) has been little studied. Modelling results suggest significant bentonite deformation and associated canister sinking is unlikely and, here, long-term natural system data are used as a reality check on model predictions. Results indicate that bentonite from the investigated site shows no significant deviation in bulk physical parameters from repository bentonite. However, micro-scale shear planes can be seen throughout the sampled cores. The presence of multi-directional S- and C-type shears suggests they originate from loading from the overlying limestone, not gravitational tectonics. The plastic limits and angles of shearing resistance for natural and repository bentonites suggest both are susceptible to shearing. The impact of bentonite shear under load could be minimised by appropriate design, but existing lower activity waste container designs do not consider the potentially high external stresses from the bentonite backfill and this should be addressed in future.
机译:膨润土在大多数放射性废物处置库设计中对工程屏障的性能做出了重要贡献。膨润土的选择源于其对废物隔离的有利性能及其在相关地质环境中的稳定性。但是,对膨润土的寿命(特别是对废物容器下沉的抵抗力)的研究很少。建模结果表明,膨润土不会发生明显变形,而且不太可能发生相关的碳罐下沉,因此,这里将长期的自然系统数据用作对模型预测的现实检验。结果表明,来自调查地点的膨润土与储藏膨润土的整体物理参数没有显着偏差。但是,可以在整个采样岩心中看到微尺度的剪切面。多向S型和C型剪的存在表明它们来自上覆的石灰岩而不是重力构造。天然膨润土和储库膨润土的塑性极限和抗剪切角表明,两者均易受剪切作用。通过适当的设计可以使膨润土剪切在载荷下的影响最小化,但是现有的低活性废物容器设计并未考虑膨润土回填物可能产生的高外部应力,因此应在将来解决。

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