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Some Thermodynamic Features of Uranium-Plutonium Nitride Fuel in the Course of Burnup

机译:燃烧过程中铀 - 钚氮化物燃料的一些热力学特征

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Calculation studies on the effect of carbon and oxygen impurities on the chemical and phase compositions of nitride uranium-plutonium fuel in the course of burnup are performed using the IVTANTHERMO code. It is shown that the number of moles of UN decreases with increasing burnup level, whereas UN1.466, UN1.54, and UN1.73 exhibit a considerable increase. The presence of oxygen and carbon impurities causes an increase in the content of the UN1.466, UN1.54 and UN1.73 phases in the initial fuel by several orders of magnitude, in particular, at a relatively low temperature. At the same time, the presence of impurities abruptly reduces the content of free uranium in unburned fuel. Plutonium in the considered system is contained in form of Pu, PuC, PuC2, Pu2C3, and PuN. Plutonium carbides, as well as uranium carbides, are formed in small amounts. Most of the plutonium remains in the form of nitride PuN, whereas unbound Pu is present only in the areas with a low burnup level and high temperatures.
机译:使用IVTANTHERMO码进行碳和氧杂质对燃烧过程中氮化物铀 - 钚燃料化学和相组合物的效果的计算研究。结果表明,随着燃烧水平的增加,联合国的摩尔数减少,而UN1.466,UN1.54和UN1.73表现出相当大的增加。氧气和碳杂质的存在导致UN1.466,UN1.54和UN1.73在初始燃料中的含量增加几个数量级,特别是在相对低的温度下。同时,杂质的存在突然降低了不燃烧燃料中游离铀的含量。考虑系统中的钚含有PU,PUC,PUC2,PU2C3和双关语的形式。钚碳化物和碳化物,含量少量形成。大多数钚仍然是氮化物片的形式,而未结合的PU仅存在于具有低燃烧水平和高温的区域。

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