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TRANSMUTATION OF NUCLEAR WASTE: SAFETY ASPECTS

机译:核废料的嬗变:安全方面

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摘要

Several ideas for accelerator driven undercritical reactors have been presented during recent years. The technical breakthrough in accelerators which can generate intensive and highly energetic proton flows has made the concept feasible. Protons hit a target - fluid lead, tungsten or molten salt has been proposed - and then generate fast neutrons by spallation. These neutrons or moderated thermic ones will transmute, say, nuclear waste into short lived and stable isotopes. These isotopes must be separated from the remaining long lived isotopes using chemical and/or physical methods. The input material could be in an aqueous or molten salt form, each of these giving rise to technical and safety related problems. Together with the transmutation the plant will also generate energy. It should be pointed out that no real analysis of the economics of transmutation has been performed up to now.
机译:近年来,已经介绍了用于加速器驱动的下临界反应器的几个想法。 可以产生密集和高度活力质子流的加速器技术突破使得该概念可行。 质子击中靶 - 流体铅,已提出钨或熔盐 - 然后通过脱晶产生快上的中子。 这些中子或受体化的热型将使核废料转化为短暂的寿命和稳定的同位素。 这些同位素必须使用化学和/或物理方法与剩余的长寿命同位素分离。 输入材料可以是含水或熔融盐形式,每种盐形式都会产生技术和安全相关问题。 与植物一起的嬗变也会产生能量。 应该指出的是,现在没有对嬗变经济学进行实际分析。

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