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The methodology followed in Belgium to investigate the compatibility with geological disposal of Eurobitum bituminized intermediate-level radioactive waste

机译:比利时采用的方法,研究了欧洲沥青沥青化中级放射性废物与地质处置的相容性

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In Belgium, Eurobitum intermediate-level long-lived bituminized radioactive waste containing large amounts of NaNO_3, which is a hygroscopic and soluble salt, is to be disposed of in an underground repository in a geologically stable clay formation. The Boom Clay is studied as a potential host formation because of its favourable properties to limit and delay the migration of the leached radionuclides and other contaminants (heavy metals, NaNO_3, organic molecules) to the biosphere. The emplacement of the bituminized waste will induce multiple processes that could have a significant effect on the key properties of the clay. Because several of these processes are interdependent, the study of the compatibility of Eurobitum with geological disposal is complex. To structure the research and to identify possible knowledge gaps, the Belgian Radioactive Waste Management Agency ONDRAF/NIRAS developed a new methodology based on safety functions and safety statements. In this paper, this methodology is briefly explained, with reference to the disposal of Eurobitum. Experimental results obtained at the Belgian Nuclear Research Centre SCK·CEN are presented and discussed in the light of the safety functions and safety statements approach. The importance of the interdependence of the processes is highlighted. Special attention is given to the evolution of the disposal design as a result of the improved understanding of key processes.
机译:在比利时,含有大量NaNO_3(吸湿性和可溶性盐)的Eurobitum中级长寿命沥青化放射性废物将在地质上稳定的粘土地层中处置。繁荣粘土被认为是潜在的宿主形成,因为其有利的特性可以限制和延迟浸出的放射性核素和其他污染物(重金属,NaNO_3,有机分子)向生物圈的迁移。沥青废物的放置将引发多个过程,这些过程可能对粘土的关键性能产生重大影响。由于这些过程中的几个过程是相互依赖的,因此对欧洲沥青与地质处置的相容性的研究非常复杂。为了组织研究并确定可能的知识差距,比利时放射性废物管理局ONDRAF / NIRAS根据安全功能和安全声明开发了一种新方法。在本文中,将参照Eurobitum的使用来简要说明此方法。根据安全功能和安全声明方法,介绍和讨论了在比利时核研究中心SCK·CEN上获得的实验结果。强调了过程相互依赖的重要性。由于对关键过程的了解不断加深,因此对处置设计的发展给予了特别的关注。

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