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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Volatile species retention during metallic fuel casting
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Volatile species retention during metallic fuel casting

机译:金属燃料铸造过程中的挥发性物质保留

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摘要

Metallic nuclear fuels are candidate transmutation fuel forms for advanced fuel cycles. Through the operation of the Experimental Breeder Reactor II metallic nuclear fuels have been shown to be robust and easily manufactured. However, concerns have been raised concerning loss of americium during the casting process because of its high vapor pressure. In order to address these concerns a gaseous diffusion model was developed and a series of experiments using both manganese and samarium as surrogates for americium were conducted. The modeling results showed that volatility losses can be controlled to essentially no losses with a modest overpressure. Experimental results also showed volatile species retention down to no detectable losses through overpressure, and although the loss values varied from the model results the same trend was seen. Based on these results it is very probable that americium losses through volatility can be controlled to no detectable losses through application of a modest overpressure during casting.
机译:金属核燃料是先进燃料循环的候选candidate变燃料形式。通过实验型增殖反应堆II的运行,已证明金属核燃料坚固且易于制造。然而,由于其高蒸气压,已经引起了在铸造过程中loss损失的担忧。为了解决这些问题,开发了一种气体扩散模型,并进行了一系列使用锰和sa作为sur的替代物的实验。建模结果表明,在适度的超压下,挥发性损失可以控制为基本没有损失。实验结果还显示,由于过压,挥发性物质的保留率低至没有可检测到的损失,尽管损失值与模型结果有所不同,但可以看到相同的趋势。根据这些结果,很可能可以通过在铸造过程中施加适度的超压将through的挥发损失控制为没有可检测的损失。

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