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An approach to modelling the impact of 14C release from reactor graphite in a geological disposal facility

机译:一种模拟地质处置设施中反应堆石墨释放14C的影响的方法

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摘要

Carbon-14 (C-14) is a key radionuclide in the assessment of a geological disposal facility (GDF) for radioactive waste. In the UK a significant proportion of the national C-14 inventory is associated with reactor core graphite generated by the decommissioning of the UK’s Magnox and AGR reactors. There are a number of uncertainties associated with the fate and transport of C-14 in a post-closure disposal environment that need to be considered when calculating the radiological impacts of C-14 containing wastes. Some of these uncertainties are associated with the distribution of C-14 containing gaseous species such as 14CH4 and 14CO2 between the groundwater and gaseous release pathways. As part of the C14-BIG programme, a modelling framework has been developed to investigate these uncertainties. This framework consists of a biogeochemical near-field evolution model, incorporating a graphite carbon-14 release model, which interfaces with a geosphere/biosphere model. The model highlights the potential impact of the microbial reduction of 14CO2 to 14CH4, through the oxidation of H2, on C-14 transport. The modelling results could be used to inform the possible segregation of reactor graphite from other gas generating wastes.
机译:碳14(C-14)是评估放射性废物地质处置设施(GDF)的关键放射性核素。在英国,国家C-14的库存中有很大一部分与英国Magnox和AGR反应堆退役所产生的反应堆堆芯石墨有关。在计算含有C-14的废物的放射影响时,需要考虑与封闭后处置环境中C-14的命运和运输相关的许多不确定因素。这些不确定性中的一些与地下水和气体释放途径之间含有C-14的气体物种(例如14CH4和14CO2)的分布有关。作为C14-BIG计划的一部分,已经开发了一个建模框架来研究这些不确定性。该框架由一个生物地球化学近场演化模型组成,该模型包含一个石墨碳14释放模型,该模型与地球圈/生物圈模型对接。该模型强调了通过H2氧化将14CO2还原为14CH4的微生物对C-14迁移的潜在影响。模拟结果可用于告知反应堆石墨可能与其他产生气体的废物分离的可能性。

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