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Granite Recrystallization - The Key to an Alternative Strategy for HLW Disposal?

机译:花岗岩重结晶 - HLW处置替代战略的关键?

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An alternative strategy is proposed for the disposal of spent nuclear fuel (SNF) and other forms of high-level waste (HLW) whereby the integrity of a mined and engineered repository for the bulk of the waste need be preserved for only a few thousand years. This is achieved by separating the particularly problematic components, notably heat generating radionuclides (HGRs) and very long lived radionuclides (VLLRs) from the waste prior to disposal. Such a solution requires a satisfactory means of disposing of the relatively minor amounts of HGRs and VLLRs removed from the waste. This could be by high-temperature very deep disposal (HTVDD) in boreholes in the continental crust [1,2]. However, the viability of HTVDD, and hence the key to the entire strategy, depends on whether sufficient melting of granite host rock can occur at suitable temperatures and whether the melt can be completely recrystallized. The high-temperature, high-pressure experiments reported here demonstrate that granite can be partially melted and completely recrystallized on a time scale of years, as opposed to millennia as widely believed. Furthermore, both can be achieved at temperatures and on a time scale appropriate to the disposal of packages of heat generating HLW. It is therefore concluded that the proposed strategy, which offers, environmental, safety and economic benefits, could be a viable option for a substantial proportion of HLWs.
机译:替代策略是为了处理废弃的核燃料(SNF)和其他形式的高水平废物(HLW),从而只需几千年来保存了大部分废物的开采和工程储存库的完整性。这是通过在处理之前分离特别有问题的组分,特别是热产生放射性核素(HGRS)和非常长的寿命的放射性核素(VLLR)来实现。这种解决方案需要令人满意地处理相对少量的HGR和从废物中取出的VLL。这可能是大陆地壳中的高温非常深的处理(HTVDD)[1,2]。然而,HTVDD的可行性以及因此整个策略的关键取决于花岗岩宿主岩石的足够熔化是否可以在合适的温度下发生,并且熔体是否可以完全重结晶。这里报道的高温,高压实验表明,花岗岩可以部分熔化并在多年的时间等级中完全重结晶,而不是千年,直接相信。此外,两者都可以在温度和适合于处理发热HLW的包装的时间尺度上实现。因此,得出结论,提出的策略,提供,环境,安全和经济效益,可能是大部分HLW的可行选择。

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