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Radiation Effects On Clay Mineral Properties

机译:辐射对粘土矿物特性的影响

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The influence of radiation on clay mineral properties remains relatively poorly documented, despite its importance for the safety assessment of high level nuclear waste repositories (HLNWR) where clays are components of the engineered barrier or the host rock in many countries. Various radiation-induced point defects have been observed in kaolinite, dickite, montmorillonite and illite. In kaolinite, the defects stable at the scale of geological periods have been used for geochemical applications or dating. Nevertheless, the potential influence of point defects on clay properties has not been demonstrated. Ballistic effects of heavy ions (alpha recoil nuclei) are able to amorphize the structure of clay minerals, as it was shown for smectite either irradiated with ion beam or doped with alpha emitters, leading to consistent amorphization doses. Several estimations show that amorphization of smectite from the engineered barrier would occur after 1000 years of exposure arising from waste leakage. Besides, amorphization by ionizing radiation in a HLNWR is unlikely because required dose is unrealistically too high. Consequences of amorphization on physico-chemical properties such as swelling, CEC, solubility are potentially very important but have not been described for clay minerals. Ionizing radiations can reduce structural Fe~(3+) in montmorillonite and may thus potentially modify its layer charge and CEC. The influence of irradiation on physico-chemical properties such as CEC is revealed only at high irradiation doses, larger than several MGy, and remains relatively limited. Nevertheless, contradictory results still exist about the effect of irradiation on redox and surface reactivity. These parameters together with their consequences on properties, obtained on model specimen used in laboratory or test experiments, must be considered in the performance assessment of the engineered barrier of a nuclear waste disposal. This paper reviews the various aspects of irradiation effects on clay minerals with emphasis on physico-chemical properties, after a presentation of the methodology of experimental irradiation.
机译:尽管辐射对于高水平核废料处置库(HLNWR)的安全性评估很重要,但辐射对粘土矿物特性的影响仍然相对较差,在许多国家中,粘土是工程屏障或主体岩石的组成部分。在高岭石,地开石,蒙脱石和伊利石中观察到各种辐射诱发的点缺陷。在高岭石中,在地质时期范围内稳定的缺陷已用于地球化学应用或测年。然而,尚未证明点缺陷对粘土性能的潜在影响。重离子(α反冲核)的弹道效应能够使粘土矿物质的结构非晶化,正如蒙脱石用离子束辐照或掺杂有α发射体所显示的那样,导致一致的非晶化剂量。一些估算表明,经过工程隔离层的蒙脱石非晶化将在废物泄漏造成1000年的暴露后发生。此外,由于所需剂量太高,在HLNWR中通过电离辐射进行非晶化的可能性不大。非晶化对诸如溶胀,CEC,溶解度之类的物理化学性质的后果可能非常重要,但尚未对粘土矿物进行描述。电离辐射可以减少蒙脱石中的Fe〜(3+)结构,从而可能改变其层电荷和CEC。仅在高辐照剂量(大于几个MGy)时才显示出辐照对诸如CEC的理化特性的影响,并且仍然相对有限。然而,关于辐射对氧化还原和表面反应性的影响仍然存在矛盾的结果。这些参数以及它们对性能的影响,是在实验室或测试实验中使用的模型样品上获得的,必须在对核废料处理的工程屏障的性能评估中予以考虑。在介绍了实验辐照方法之后,本文回顾了辐照对粘土矿物的影响的各个方面,重点是理化性质。

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