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深入了解物理化学和微生物参数对深部地质处置库安全性能的影响

Insights into the Impact of Physicochemical and Microbiological Parameters on the Safety Performance of Deep Geological Repositories.

作者信息

Morales-Hidalgo Mar, Povedano-Priego Cristina, Martinez-Moreno Marcos F, Ruiz-Fresneda Miguel A, Lopez-Fernandez Margarita, Jroundi Fadwa, Merroun Mohamed L

机构信息

Department of Microbiology, Faculty of Sciences, University of Granada, 18071 Granada, Spain.

出版信息

Microorganisms. 2024 May 19;12(5):1025. doi: 10.3390/microorganisms12051025.

Abstract

Currently, the production of radioactive waste from nuclear industries is increasing, leading to the development of reliable containment strategies. The deep geological repository (DGR) concept has emerged as a suitable storage solution, involving the underground emplacement of nuclear waste within stable geological formations. Bentonite clay, known for its exceptional properties, serves as a critical artificial barrier in the DGR system. Recent studies have suggested the stability of bentonite within DGR relevant conditions, indicating its potential to enhance the long-term safety performance of the repository. On the other hand, due to its high resistance to corrosion, copper is one of the most studied reference materials for canisters. This review provides a comprehensive perspective on the influence of nuclear waste conditions on the characteristics and properties of DGR engineered barriers. This paper outlines how evolving physico-chemical parameters (e.g., temperature, radiation) in a nuclear repository may impact these barriers over the lifespan of a repository and emphasizes the significance of understanding the impact of microbial processes, especially in the event of radionuclide leakage (e.g., U, Se) or canister corrosion. Therefore, this review aims to address the long-term safety of future DGRs, which is critical given the complexity of such future systems.

摘要

目前,核工业产生的放射性废物正在增加,这促使人们制定可靠的封存策略。深层地质处置库(DGR)概念已成为一种合适的储存解决方案,即将核废料置于稳定的地质构造中。膨润土因其特殊性能而闻名,是DGR系统中的关键人工屏障。最近的研究表明,膨润土在与DGR相关的条件下具有稳定性,这表明它有可能提高处置库的长期安全性能。另一方面,由于铜具有高耐腐蚀性,它是用于罐体的研究最多的参考材料之一。本综述全面阐述了核废料条件对DGR工程屏障的特性和性能的影响。本文概述了核处置库中不断变化的物理化学参数(如温度、辐射)在处置库寿命期间可能如何影响这些屏障,并强调了了解微生物过程影响的重要性,特别是在发生放射性核素泄漏(如铀、硒)或罐体腐蚀的情况下。因此,本综述旨在探讨未来DGR的长期安全性,鉴于此类未来系统的复杂性,这一点至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e24/11123828/9acc522789ab/microorganisms-12-01025-g001.jpg

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