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Vitrification of high molybdenum feeds in the presence of reprocessing waste liquor

机译:在存在后处理废液的情况下对高钼饲料进行玻璃化

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摘要

At Sellafield, the Post Operational Clean Out (POCO) of solids from the base of the highly active waste storage tanks, in preparation for decommissioning, will result in a high molybdenum stream which will be vitrified using the current Waste Vitrification Plant (WVP). In order to minimise the number of containers required for POCO, the high molybdenum feed could be co-vitrified by addition to reprocessing waste, using the borosilicate glass formulation currently utilised on WVP. Co-vitrification of high molybdenum feeds has been carried out using non-active simulants, both in the laboratory and on the Vitrification Test Rig (VTR) which is a full scale working replica of a WVP processing line. In addition, a new borosilicate glass formulation containing calcium has been developed by NNL which allows a higher incorporation of molybdenum through the formation of a durable CaMoO_4 phase, after the solubility limit of molybdenum in the glass has been reached. Vitrification of the high molybdenum feed in the presence of varying quantities of reprocessing waste liquor using the new glass formulation has been carried out in the laboratory. Up to ~10 wt% MoO_3 could be incorporated without any detrimental phase separation in the product glass, but increasing the fraction of reprocessing waste was found to decrease the MoO_3 incorporation. Soxhlet and static powder leach tests have been performed to assess the durability of the glass products. This paper discusses the results of the vitrification of high molybdenum feeds in the presence of reprocessing liquor in both the borosilicate glass formulation currently utilised on WVP and the modified formulation which contain calcium.
机译:在塞拉菲尔德,为进行退役准备而准备的高活性废物储存罐底部的固体进行事后清理(POCO)将产生高钼流,并将使用当前的废物玻璃化工厂(WVP)将其玻璃化。为了最大程度地减少POCO所需的容器数量,可使用WVP上目前使用的硼硅酸盐玻璃配方,通过添加再处理废料来使高钼进料共玻璃化。高钼饲料的共玻璃化已在实验室和玻璃化试验台(VTR)上使用非活性模拟物进行了,玻璃化试验台是WVP生产线的全面复制品。此外,NNL已开发出一种新的含钙硼硅酸盐玻璃配方,该配方在达到钼在玻璃中的溶解度极限后,可以通过形成持久的CaMoO_4相来使钼更高地掺入。在实验室中已经进行了使用新的玻璃配方在存在不同数量的后处理废液的情况下对高钼进料进行玻璃化的操作。在产品玻璃中可以掺入高达〜10 wt%的MoO_3而没有任何有害的相分离,但是发现增加后处理废物的比例可以减少MoO_3的掺入。进行了索氏萃取和静态粉末浸出测试,以评估玻璃产品的耐久性。本文讨论了在WVP上目前使用的硼硅酸盐玻璃配方和含钙的改性配方中,在存在后处理液的情况下高钼进料玻璃化的结果。

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  • 会议地点 Boston MA(US)
  • 作者单位

    National Nuclear Laboratory, Sellafield, Seascale, Cumbria, UK, CA20 1PG;

    National Nuclear Laboratory, Sellafield, Seascale, Cumbria, UK, CA20 1PG;

    National Nuclear Laboratory, Sellafield, Seascale, Cumbria, UK, CA20 1PG;

    Sellafield Ltd, Sellafield, Seascale, Cumbria, UK, CA20 1PG;

    Sellafield Ltd, Sellafield, Seascale, Cumbria, UK, CA20 1PG;

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  • 入库时间 2022-08-26 14:20:19

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