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Application of Sulfide Process to Fuel Debris Treatment

机译:硫化物过程在燃料碎片处理中的应用

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In nuclear reactor accident at Fukushima NPP, the reactor core was damaged by the severe conditions such as very high temperature and sea water injection, forming a huge amount of nuclear fuel waste so called debris fuel. Since UO_2 fuel pellets are packed in the zircaloy cladding and the fuel assemblies were charged in the reactor core, the fuel debris consists of many types of the mixture of nuclear fuel and structural materials. Some of them are the mixture of metal and oxide, or mixtures after melting. Sulfurization method is one of the promising techniques for the separation and recovery of rare metals. Especially, the dry process has an advantage for the reduction of radioactive waste in nuclear engineering field. In this paper, sulfuization behavior of uranium oxides, zirconium oxide and metal as fuel and structural materials was studied by using carbon disulfide for the sulfurization treatment of fuel debris components. No reaction was observed for Uranium oxides in the presence of CS_2 at T<773 K, while metal components, such as zirconium metal shows sulfurization at lower temperature. After the selective sulfurization treatment, separation of sulfurized materials from oxides or metals was examined by acid leaching method. Application of mechanochemical treatment was considered for the size reduction and effective sullfurization. When the mixture of simulated fuel debris was mechanochemically treated, the interaction of zirconium with UO_2 seems to occur forming the UO_2-ZrO_2 solid solution.
机译:在福岛NPP的核反应堆事故中,反应堆芯受到非常高温和海水注射等严重条件的破坏,形成了大量的核燃料废料,所以称为碎片燃料。由于UO_2燃料粒料填充在锆石覆包层中,并且在反应器芯中加入燃料组件,因此燃料碎片由许多类型的核燃料和结构材料的混合物组成。其中一些是金属和氧化物的混合物,或熔化后的混合物。硫化方法是用于分离和回收稀有金属的有希望的技术之一。特别是,干燥工艺对核工程领域的放射性废物的减少具有优势。本文采用二硫化碳处理燃料碎片组分的硫化处理,研究了氧化铀,氧化锆和金属作为燃料和结构材料的硫化行为。在T <773K的CS_2存在下,不观察到铀氧化物的反应,而金属组分如锆金属显示在较低温度下硫化。选择性硫化处理后,通过酸浸出法检查来自氧化物或金属的硫化物的分离。考虑了机械化学处理的应用,尺寸减少和有效的脱水。当机械化学处理模拟燃料碎片的混合物时,锆与UO_2的相互作用似乎发生形成UO_2-ZRO_2固溶体。

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