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Waste implications from minor impurities in European DEMO materials

机译:欧洲演示材料中小杂质的废物影响

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Waste-production predictions for the future demonstration fusion power plant (DEMO) are necessary to produce an accurate picture of the likely environmental and economic costs of radioactive waste disposal at end-of-life. An integrated simulation process combining MonteCarlo neutron transport simulations, inventory calculations, and extensive and reproducible post-processing algorithms has been used for the evolving European DEMO designs to quantify the time-varying mass inventories in different waste classes for individual regions and components of the reactor vessel, as well as for the reactor as a whole. Waste categories based on UK and French regulations reveal that minor impurities contained in structural steels, particularly Eurofer, as well as in functional materials such as tungsten, and beryllium, can have a significant impact on their waste classification prospects. Predictions for current European DEMO concepts suggest that there may be an issue in disposing of fusion structural-steel waste as low-level waste (LLW) in near-surface repositories. Detailed analysis of the subtleties of these predictions, particularly with regard to the production of long-lived radionuclides such as C-14 and Nb-94, reveal that the threshold for acceptance as LLW is only just exceeded in some situations. Several mitigation approaches are discussed in this context.The computational framework developed for these assessments can be rapidly and continuously applied to the maturing DEMO design, helping to guide design choices to mitigate long-lived waste production and ensure that most waste becomes LLW or better within a few decades.
机译:对未来示范融合电厂(演示)的废物生产预测是在寿命结束时产生准确的放射性废物处理环境和经济成本的准确图片。结合Montecarlo中子传输模拟,库存计算和广泛和可重复的后处理算法的集成仿真过程已被用于不断发展的欧洲演示设计,以量化不同废物类别的不同废物类别的各个区域和反应堆组件容器,以及整体的反应器。基于英国和法国法规的废物类别揭示了结构钢中包含的次要杂质,特别是欧元,以及钨和铍等功能材料,可能对其废物分类前景产生重大影响。对当前欧洲演示概念的预测表明,在近表面储存库中处理融合结构钢废物的融合结构钢废物可能存在问题。对这些预测的微妙之处的详细分析,特别是关于生产长寿命的放射性核素如C-14和NB-94的生产,揭示了作为LLW的接受阈值仅超过一些情况。在这种情况下讨论了几种缓解方法。为这些评估开发的计算框架可以迅速且不断地应用于成熟的演示设计,帮助指导设计选择来缓解长期的废物生产,并确保大多数垃圾在内部变得更好或更好几十年。

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