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High-temperature, very deep, geological disposal: a safer alternative for high-level radioactive waste?

机译:高温,非常深的地质处置:高放废物的更安全替代方案?

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摘要

Safe disposal of radioactive waste, especially spent fuel, ex-military fissile materials and other forms of high-level waste (HLW), is one of the major challenges facing contemporary science. Currently, the internationally preferred solution is for geological disposal by interment in a mined and engineered, multi-barrier repository. Although this is often referred to as “deep” disposal, the depths involved are usually quite shallow in geological terms. A new scheme, currently under development, for the high-temperature dis- posal of concentrated HLW in very deep boreholes is outlined. Recent advances in the knowledge of continental crustal rocks and fluids at depths of several kilometres suggest that much deeper disposal might offer a safer and environmentally more acceptable solution to the HLW problem. The new scheme seeks to capitalise on this potential while turning the problematical heat output of the waste to advantage. It appears to offer significant benefits over both mined repositories and earlier borehole scenarios, parti- cularly in terms of satety.
机译:安全处置放射性废物,特别是乏燃料,军用易裂变材料和其他形式的高放废物(HLW),是当代科学面临的主要挑战之一。当前,国际上首选的解决方案是通过在采矿和工程设计的多壁垒库中进行穿插进行地质处置。尽管这通常被称为“深层”处置,但所涉及的深度在地质方面通常很浅。概述了目前正在开发的一种新方案,该方案用于在深井眼中进行高温高放废物的高温处置。几公里深度的大陆地壳岩石和流体的知识方面的最新进展表明,更深入的处置可能会为高放废物问题提供更安全,环境更可接受的解决方案。新方案力求利用这一潜力,同时将废物中有问题的热量输出转化为优势。它似乎对开采的储层和较早的钻孔方案都具有明显的好处,尤其是在安全性方面。

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