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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Dissolution behavior of MgO based inert matrix fuel for the transmutation of minor actinides
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Dissolution behavior of MgO based inert matrix fuel for the transmutation of minor actinides

机译:基于MgO的惰性基质燃料对轻微散光的嬗变的溶出行为

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This study explores the dissolution properties of magnesia-based inert matrix nuclear fuel (IMF) containing transuranium elements (TRU). Pure MgO pellets as well as MgO pellets containing CeO2, as surrogate for TRU oxides, and are considered as model systems for genuine magnesia based inert matrix fuel were fabricated. The aim of this study is to identify conditions at which the matrix material can be selectively dissolved during the head-end reprocessing step, allowing a separation of MgO from the actinides, whereas the actinides remain undissolved. The dissolution behavior was studied in macroscopic batch experiments as a function of nitric acid concentration, dissolution medium volume, temperature, stirring velocity, and pellet density (85, 90, 96, and 99% TD). To mimic pellets with various burnups the density of the here fabricated pellets was varied. MgO is soluble even under mild conditions (RT, 2.5 mol/L HNO3). The dissolution rates of MgO at different acid concentrations are rather similar, whereas the dissolution rate is strongly dependent on the temperature. Via a microscopic approach, a model was developed to describe the evolution of the pellet surface area during dissolution and determine a surface normalized dissolution rate. Moreover, dissolution rates of the inert matrix fuel containing CeO2 were determined as a function of the acid concentration and temperature. During the dissolution of MgO/CeO2 pellets the MgO dissolves completely, while CeO2 ( 99%) remains undissolved. This study intends to provide a profound understanding of the chemical performance of magnesia based IMF containing fissile material. The feasibility of the dissolution of magnesia based IMF with nitric acid is discussed. (C) 2018 Published by Elsevier B.V.
机译:本研究探讨了含有经核元素(TrU)的氧化镁基惰性基质核燃料(IMF)的溶出性能。纯MgO颗粒以及含有CeO 2的MgO颗粒作为Tru氧化物的替代品,并且被认为是制造真正镁质的惰性基质燃料的模型系统。该研究的目的是鉴定在头端再处理步骤期间可以选择性地溶解基质材料的条件,从而允许从散曲线中分离MgO,而散光仍未溶解。在宏观批量实验中研究了溶解行为,作为硝酸浓度,溶解培养基体积,温度,搅拌速度和颗粒密度(85,90,96和99%Td)的函数。用各种燃烧的模拟颗粒,在这里制造的颗粒的密度变化。 MgO即使在温和条件下也可溶(RT,2.5mol / L HNO3)。不同酸浓度下MgO的溶出速率相当相似,而溶出速率强烈依赖于温度。通过微观方法,开发了一种模型以描述溶解期间颗粒表面积的演变并确定表面归一化溶解速率。此外,用CeO 2的惰性基质燃料的溶出速率作为酸浓度和温度的函数测定。在MgO / CeO2颗粒的溶解期间,MgO完全溶解,而CEO2(& 99%)仍未溶解。本研究打算对含有裂变材料的基于氧化镁的IMF的化学性能进行深远的理解。讨论了基于氧化镁的溶解与硝酸的可行性。 (c)2018由elestvier b.v出版。

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