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The impact of materials selection on long-term activation in fusion power plants

机译:材料选择对聚变电站长期活化的影响

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Neutron-induced transmutation of materials in a D-T fusion power plant will give rise to the potential for long-term activation. To ensure that the attractive safety and environmental characteristics of fusion power are not degraded, careful design choices are necessary. An aim of optimising power plant design must be to minimise both the level of activation and the total volume of active material that might ultimately be categorised as waste requiring disposal. Materials selection is central to this optimisation. In this paper we assess the influence of materials choices for a power plant on the waste volume and the potential to clear (i.e, remove from regulatory control) and recycle material. Although the use of low activation materials in regions of high neutron flux is an important part of the strategy to minimise the level of activation, different choices may result from a strategy aimed at minimising the volume of active waste. (C) 2000 UKAEA. Published by Elsevier Science B.V. All rights reserved. [References: 25]
机译:D-T聚变电厂中中子诱发的材料materials变将产生长期活化的潜力。为确保聚变能的吸引力安全性和环境特性不会降低,必须谨慎选择设计。优化电厂设计的目的必须是最小化活化水平和活性物质的总量,活性物质的总量最终可能被归类为需要处置的废物。材料选择对于这种优化至关重要。在本文中,我们评估了电厂选择材料对废物量的影响以及清除(即从监管控制中清除)和回收材料的潜力。尽管在高中子通量区域中使用低活化材料是最小化活化水平的重要策略,但旨在最小化活性废物量的策略可能会产生不同的选择。 (C)2000 UKAEA。由Elsevier Science B.V.保留所有权利。 [参考:25]

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