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模拟未来乏核燃料热化学后处理废物的台式区域精炼

Benchtop Zone Refinement of Simulated Future Spent Nuclear Fuel Pyroprocessing Waste.

作者信息

Scrimshire Alex, Backhouse Daniel J, Deng Wei, Mann Colleen, Ogden Mark D, Sharrad Clint A, Harrison Mike T, McKendrick Donna, Bingham Paul A

机构信息

Materials and Engineering Research Institute, Sheffield Hallam University, Sheffield S1 1WB, UK.

The Henry Royce Institute and Department of Materials Science and Engineering, The University of Sheffield, Sheffield S1 3JD, UK.

出版信息

Materials (Basel). 2024 Apr 12;17(8):1781. doi: 10.3390/ma17081781.

Abstract

The UK's adoption of pyroprocessing of spent nuclear fuel as an alternative to the current aqueous processing routes requires a robust scientific underpinning of all relevant processes. One key process is the clean-up of the contaminated salt from the electroreducing and electrorefining processes. A proposed method for this clean-up is zone refining, whereby the tendency of the contaminants to remain in the liquid phase during melting and freezing is exploited to 'sweep' the contaminants to one end of the sample. Experiments were performed, utilising off-the-shelf laboratory equipment, to demonstrate the feasibility of zone refining for clean-up of electroreducing and electrorefining wastes. This was successful for the electrorefining simulant samples, with effective segregation coefficient, , values, which provide a measure of the degree of separation in the sample, between 0 and 1. Lower values indicate greater separation, with values of as low as 0.542 achieved here, corresponding to a reduction in RECl content from 10.0 wt.% to 8.4 wt.% (for 80% salt reuse). Due to difficulties in obtaining a fully homogeneous electroreducing simulant waste, it was not possible to demonstrate the feasibility of zone refining using the current experimental setup. Further research is required to elucidate the correct preparation conditions for production of homogeneous electroreducing waste simulants.

摘要

英国采用乏核燃料的火法后处理作为当前水法后处理路线的替代方法,这需要所有相关过程有坚实的科学基础。一个关键过程是清理电还原和电精炼过程中受污染的盐。一种提议的清理方法是区域精炼,即利用污染物在熔化和凝固过程中倾向于留在液相中的特性,将污染物“扫”到样品的一端。利用现成的实验室设备进行了实验,以证明区域精炼用于清理电还原和电精炼废物的可行性。对于电精炼模拟样品,这一方法取得了成功,有效分离系数的值在0到1之间,该值可衡量样品中的分离程度。较低的值表示分离程度更高,此处达到了低至0.542的值,这对应于RECl含量从10.0 wt.%降至8.4 wt.%(对于80%的盐再利用)。由于难以获得完全均匀的电还原模拟废物,因此无法使用当前的实验装置证明区域精炼的可行性。需要进一步研究以阐明生产均匀电还原废物模拟物的正确制备条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e59e/11051018/54185742b5ac/materials-17-01781-g0A1.jpg

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