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Combined effects of temperature and salt solution on swelling of GMZ01 bentonite–sand mixtures

机译:温度和盐溶液对GMZ01膨润土 - 砂混合物肿胀的综合影响

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摘要

In order to dispose of high level nuclear waste during the operation of underground geological repositories, the buffer/backfill performance of bentonite-based material might be affected by the combined influence of temperature field and infiltrating groundwater thereby leading to uncertainties in the safe operation of repositories. In order to address this issue, bentonite-sand mixtures (BSM) were prepared by mixing GMZ01 bentonite with sand using ratios of 70:30 and 30:70 by weight. One-dimensional deformation experiments were conducted on the prepared BSM in NaCl solutions of varying concentrations (0, 0.1, and 1.0 mol/L) at three different temperatures (25, 60, and 90 degrees C). The experimental results on the BSM in NaCl solutions indicated that the swelling deformation increased as temperature rises, because osmotic swelling is the dominant swelling type under the experimental conditions. The swelling deformation of BSM could be represented by fractal e(m)-p(e) relation (e(m) is the montmorillonite void ratio, p(e) is the effective stress incorporating osmotic suction). At each temperature interval, the swelling of BSM with high bentonite content in different NaCl solutions can be expressed as a unique e(m)-p(e) relation; however, the swelling coefficient of montmorillonite in the e(m)-p(e) relationship increases at higher temperature. When the effective stress p(e) exceeds a threshold, sand-particle skeletons will be formed in BSM with low bentonite content, thus resulting in deviations in the value of e(m) from the e(m)-p(e) curve. The e(m)-p(e) relation offers a simple and efficacious method to estimate the deformation of BSM under combined thermal-salt effects.
机译:为了在地下地质储存库的运行期间处理高水平的核废料,基于膨润土的材料的缓冲/回填性能可能受到温度场和渗透地下水的综合影响的影响,从而导致存储库的安全操作中的不确定性。为了解决这个问题,通过使用70:30和30:70重量的比率混合Gmz01膨润土制备膨润土 - 砂混合物(BSM)。在三种不同温度(25,60和90℃)的不同浓度(0,0.1和1.0mol / L)的NaCl溶液中在制备的BSM中进行一维变形实验。 NaCl溶液中BSM上的实验结果表明,随着温度升高,肿胀变形增加,因为渗透溶胀是实验条件下的显性膨胀型。 BSM的肿胀变形可以由分形E(m)-p(e)关系表示(e(m)是蒙脱石空隙率,p(e)是加入渗透抽吸的有效应力)。在每个温度间隔,不同NaCl溶液中具有高膨润土含量的BSM的溶胀可以表示为独特的E(M)-P(E)关系;然而,e(m)-p(e)关系中的蒙脱石的溶胀系数在较高温度下增加。当有效应激P(e)超过阈值时,砂颗粒骨架将在BSM中形成具有低膨润土含量的BSM,因此从E(M)-P(e)曲线的E(m)的值中导致偏差。 E(m)-p(e)关系提供了一种简单而有效的方法来估算BSM的组合散热效应下的变形。

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