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Actinide reformer concept

机译:in系重整概念

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The partitioning and transmutation technology is effective to reduce the environmental impact from disposition of high-level radioactive wastes and improve the efficiency of geological disposal. However, Am and Cm and their daughter nuclides are difficult to handle in the fuel cycle because of their high decay heat and radioactivity. These nuclides also give the chemical instability which harms the soundness of fuel pellet properties. We propose a new system concept "actinide reformer", which reforms Am and Cm into Pu by neutron capture reactions and decay. Am and Cm are separated from the PUREX reprocessing process and converted to chloride molten-salt fuel. Using liquid-type fuel, above mentioned defects can be compensated. Actinide reformer is an accelerator-driven system which is composed of a 10 MW-class cyclotron, a tungsten target and a subcritical core. Spent molten-salt fuel is reprocessed as an on-line fuel exchange manner to extract fission products and recover Pu to send back to a power generation cycle. The decay heat and neutron emission from the fuel with recovered Pu are smaller than those of MOX fuel with 5% of minor actinide addition. It expects no significant engineering difficulties and cost increase for construction of MOX fuel based reprocessing/fabrication plant and power reactors.
机译:分区trans变技术可以有效减少高放废物处置对环境的影响,提高地质处置的效率。然而,由于Am和Cm及其子核素的高衰变热和放射性,它们在燃料循环中难以处理。这些核素还会产生化学不稳定性,从而损害燃料颗粒性能的稳健性。我们提出了一种新的系统概念“ act系重整器”,它通过中子俘获反应和衰变将Am和Cm重整为Pu。 Am和Cm从PUREX后处理过程中分离出来,并转化为氯化物熔融盐燃料。使用液体燃料,可以弥补上述缺陷。 in系重整器是加速器驱动的系统,由10兆瓦级回旋加速器,钨靶和亚临界磁芯组成。用过的熔融盐燃料以在线燃料交换的方式进行后处理,以提取裂变产物并回收Pu并送回发电循环。回收了Pu的燃料的衰变热和中子排放要比添加了少量系元素的5%的MOX燃料小。对于基于MOX燃料的后处理/制造工厂和动力反应堆的建造,预计不会出现重大工程困难和成本增加。

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