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High level liquid waste solidification using a 'cold' crucible induction melter

机译:使用“冷”坩埚感应熔化的高水平液体废物凝固

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At the present time the primary problem in a closed nuclear feel cycle is the management of high level liquid waste (HLLW) generated by the recovery of uranium and plutonium from spent nuclear fuel. Long-term storage of the HLLW, even in special storage facilities, poses a real threat of ecological accidents. This problem can be solved by incorporating the radioactive waste into solid fixed forms that minimize the potential for biosphere pollution by long-lived radionuclides and ensure ecologically acceptable safe storage, transportation, and disposal. In the present report, the advantages of a two-stage HLLW solidification process using a "cold" crucible induction melter (CCIM) are considered in comparison with a one-stage vitrification process in a ceramic melter. This paper describes the features of a process and equipment for a two-stage HLLW solidification technology using a "cold" crucible induction melter (CCIM) and identifies the advantages compared to a one-stage ceramic melter. A two-stage pilot facility and the technical characteristics of the equipment are described using a once-through evaporator and cold-crucible induction melter currently operational at the IA "Mayak" facility in Ozersk, Russia. The results of pilot-plant tests with simulated HLLW to produce a phosphate glass are described. Features of the new mineral-like waste form matrices synthesized by the CCIM method are also described. Subject to further development, the CCIM technology is planned to be used to solidify all accumulated HLLW at Mayak - first to produce borosilicate glass waste forms and then minerallike waste forms.
机译:目前,闭合核感觉循环中的主要问题是通过从废核燃料中恢复铀和钚而产生的高水平液体废物(HLLW)。即使在特殊的储存设施中,HLLW的长期储存也会构成了生态事故的真正威胁。通过将放射性废物掺入固体固定形式的固定形式可以解决这个问题,以最大限度地减少长期放射性核素的生物圈污染的可能性,并确保生态上可接受的安全储存,运输和处置。在本报告中,与陶瓷熔化中的单阶段玻璃化方法相比,考虑了使用“冷”坩埚感应融化器(CCIM)的两级HLLW凝固过程的优点。本文介绍了使用“冷”坩埚感应熔化(CCIM)的两级HLLW凝固技术的过程和设备的特征,并与单级陶瓷熔化器相比识别优势。使用一条通过蒸发器和冷坩埚感应熔化物目前在俄罗斯欧扎克斯克的IA“Mayak”设施中运行的一条通过蒸发器和冷坩埚感应熔化器来描述设备的两级试验设施和设备的技术特性。描述了用模拟HLLW产生产生磷酸盐玻璃的试验植物试验结果。还描述了通过CCIM方法合成的新型矿物样废形式基质的特征。在进一步发展的情况下,计划用来用于巩固Mayak的所有积累的HLLW - 首先生产硼硅酸盐玻璃废物形式,然后是米内克废物形式。

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