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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Pyrochemical reduction of uranium dioxide and plutonium dioxide by lithium metal
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Pyrochemical reduction of uranium dioxide and plutonium dioxide by lithium metal

机译:锂金属热化学还原二氧化铀和二氧化p

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The lithium reduction process has been developed to apply a pyrochemical recycle process for oxide fuels. This process uses lithium metal as a reductant to convert oxides of actinide elements to metal. Lithium oxide generated in the reduction would be dissolved in a molten lithium chloride bath to enhance reduction. In this work, the solubility of Li2O in LiCl was measured to be 8.8 wt% at 650 degreesC. Uranium dioxide was reduced by Li with no intermediate products and formed porous metal. Plutonium dioxide including 3% of americium dioxide was also reduced and formed molten metal. Reduction Of PuO2 to metal also occurred even when the concentration of lithium oxide was just under saturation. This result indicates that the reduction proceeds more easily than the prediction based on the Gibbs free energy of formation. Americium dioxide was also reduced at 1.8 wt% lithium oxide, but was hardly reduced at 8.8 wt%. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 10]
机译:已经开发出锂还原工艺以将热化学循环工艺应用于氧化物燃料。该方法使用锂金属作为还原剂以将act系元素的氧化物转化为金属。还原中产生的氧化锂将溶解在熔融的氯化锂浴中以增强还原。在这项工作中,在650℃下测得Li 2 O在LiCl中的溶解度为8.8重量%。 Li将二氧化铀还原,没有中间产物,形成了多孔金属。包含3%的二氧化meric的二氧化也被还原并形成熔融金属。即使当氧化锂的浓度刚刚达到饱和时,PuO2也还原为金属。该结果表明,与基于吉布斯自由形成能的预测相比,还原更容易进行。二氧化meric在氧化锂为1.8重量%时也被还原,但是在8.8重量%时几乎不被还原。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:10]

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