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Decommissioning and safety issues of liquid-mercury waste generated from high power spallation sources with particle accelerators

机译:高功率散裂源中使用粒子加速器产生的液态汞废物的退役和安全问题

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摘要

Large spallation sources are intended to be constructed in Europe (EURISOL nuclear physics facility and ESS-European Spallation Source). These facilities accumulate more than 20 metric tons of irradiated mercury in the target, which has to be treated as highly radioactive and chemo-toxic waste. Because solids are the only appropriate (immobile) form for this radiotoxic and toxic type of waste solidification is required for irradiated mercury. Our irradiation experimental studies on mercury waste revealed that mercury sulfide is a reasonable solid for disposal and shows larger stability in assumed accidents with water ingress in a repository compared to amalgams. For preparation of mercury sulfide a wet process is more suitable than a dry one. It is easier to perform under hot cell conditions and allows complete Hg-conversion. Embedding HgS in a cementitious matrix increases its stability.
机译:计划在欧洲建造大型散裂源(EURISOL核物理设施和ESS-欧洲散裂源)。这些设施在目标中累积了超过20吨的辐射汞,这些汞必须被视为具有高放射性和化学毒性的废物。因为固体是这种放射性物质的唯一合适的(固定的)形式,所以辐射汞需要固化。我们对汞废物进行的辐射实验研究表明,与汞合金相比,硫化汞是一种合理的固体废物处理方式,并且在假设的事故中(随着水浸入储存库)显示出更大的稳定性。对于制备硫化汞,湿法比干法更合适。在热室条件下更容易执行,并且可以实现完全的汞转换。将HgS嵌入水泥基中可提高其稳定性。

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