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Effects Of γ-irradiation On The Stability Of Colloidal Na~+-montmorillonite Dispersions

机译:γ射线辐照对胶态Na〜+蒙脱土分散体稳定性的影响

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In many concepts for final storage of spent nuclear fuel bentonite will be used as an engineered barrier, mainly due to its inertness, plasticity and ability to retard transport of radionuclides by adsorption. In the event of water-bearing fractures making contact with the bentonite barrier, generation and transport of colloidal particles will strongly depend on groundwater composition and the surface properties of the colloidal particles. The bentonite barrier will unavoidably be exposed to ionizing radiation from the spent nuclear fuel but very little is known about effects of ionizing radiation on bentonite concerning colloidal stability. In this work we have studied the effect of γ-radiation on the stability of dilute colloidal Na~+-montmorillonite dispersions using a Cs-137 γ-source (doses of 0-53.2 kGy). Aggregation kinetics and sedimentation experiments revealed significant radiation effects, evident as increased colloid stability. The only rationale for this is a γ-radiation induced increase in surface potential. The effects appeared to depend on the Na~+-montmorillonite concentration in the irradiated dispersions, indicating that the change in surface potential is induced by aqueous radiolysis products.
机译:在许多用于最终存储乏核燃料的概念中,膨润土将被用作工程屏障,这主要是由于其惰性,可塑性以及通过吸附来阻止放射性核素运输的能力。在含水裂缝与膨润土屏障接触的情况下,胶体颗粒的产生和运输将在很大程度上取决于地下水的组成和胶体颗粒的表面性质。膨润土阻挡层将不可避免地暴露于乏核燃料产生的电离辐射中,但有关胶体稳定性的电离辐射对膨润土的影响知之甚少。在这项工作中,我们研究了使用Cs-137γ源(剂量为0-53.2 kGy),γ辐射对稀胶体Na〜+-蒙脱土分散体稳定性的影响。聚集动力学和沉降实验显示出明显的辐射效应,表现为胶体稳定性增加。唯一的理由是γ射线引起的表面电势增加。效果似乎取决于所辐照的分散体中Na〜+-蒙脱土的浓度,表明表面电位的变化是由水性辐射分解产物引起的。

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