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Reversible Experiments: Putting Geological Disposal to the Test

机译:可逆实验:测试地质处置

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摘要

Conceiving of nuclear energy as a social experiment gives rise to the question of what to do when the experiment is no longer responsible or desirable. To be able to appropriately respond to such a situation, the nuclear energy technology in question should be reversible, i.e. it must be possible to stop its further development and implementation in society, and it must be possible to undo its undesirable consequences. This paper explores these two conditions by applying them to geological disposal of high-level radioactive waste (GD). Despite the fact that considerations of reversibility and retrievability have received increased attention in GD, the analysis in this paper concludes that GD cannot be considered reversible. Firstly, it would be difficult to stop its further development and implementation, since its historical development has led to a point where GD is significantly locked-in. Secondly, the strategy it employs for undoing undesirable consequences is less-than-ideal: it relies on containment of severely radiotoxic waste rather than attempting to eliminate this waste or its radioactivity. And while it may currently be technologically impossible to turn high-level waste into benign substances, GD’s containment strategy makes it difficult to eliminate this waste’s radioactivity when the possibility would arise. In all, GD should be critically reconsidered if the inclusion of reversibility considerations in radioactive waste management has indeed become as important as is sometimes claimed.
机译:核能作为一种社会实验的概念引发了一个问题,即当实验不再是负责任的或不可取的时,该怎么办。为了能够适当地应对这种情况,所讨论的核能技术应该是可逆的,即必须有可能停止其进一步的发展和在社会上的实施,并且必须有可能消除其不良后果。本文将这两个条件应用于高放废物的地质处置中,探索了这两个条件。尽管对可逆性和可恢复性的考虑已在GD中得到了越来越多的关注,但本文的分析得出的结论是GD无法视为可逆的。首先,由于其历史发展已导致GD被严重锁定,因此很难停止其进一步的开发和实施。其次,它用于消除不良后果的策略不是理想的:它依赖于对严重放射性废物的控制,而不是试图消除这种废物或其放射性。尽管目前从技术上讲不可能将高放废物转变为良性物质,但GD的遏制策略使得在可能的情况下很难消除这种废物的放射性。总之,如果将可逆性考虑因素纳入放射性废物管理确实确实像有时声称的那样重要,则应严格考虑GD。

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