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Geochemical optimisation of a disposal system for high-level

机译:高层处置系统的地球化学优化

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摘要

Geochemical exploration commonly utilises observations from nature to help find,and explain the genesis of,anomalies such as ore bodies.Radioactive waste disposal involves the inverse process of using such expertise to design a geochemical anomaly (the repository)which will persist for geological timescales.The particular challenge is developing a disposal concept which is "robust" - based on materials and processes which can be relied upon to function in a predictable manner.With regard to long-term performance,experience has indicated that geochemical barriers generally tend to be more robust in this sense than mechanical or hydrological barriers.They are also often easier to support with natural analogue arguments.With the aim of developing a practical design of engineered barriers which will provide convincing long-term safety in a wide range of geological environments,optimisation of the materials under consideration is examined from a geochemical perspective.
机译:地球化学勘探通常利用自然界的观察来帮助发现并解释诸如矿体之类的异常。放射性废物处置涉及利用这种专业知识设计地球化学异常(储存库)的逆过程,该过程将持续到地质时标。面临的特殊挑战是开发一种“稳健”的处置概念-基于可预测地依赖其功能的材料和过程。就长期性能而言,经验表明,地球化学障碍通常趋向于更多在这种意义上说,它比机械或水文屏障更坚固。通常,它们也更容易受到自然模拟论点的支持。目的是开发一种工程屏障的实用设计,以在各种地质环境中提供令人信服的长期安全性。从地球化学的角度检查了所考虑的材料。

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