首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Nuclear fuel cycle waste stream immobilization with cermets for improved thermal properties and waste consolidation
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Nuclear fuel cycle waste stream immobilization with cermets for improved thermal properties and waste consolidation

机译:用金属陶瓷固定核燃料循环废物流,以改善热性能和废物合并

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摘要

In the pursuit of methods to improve nuclear waste form thermal properties and combine potential nuclear fuel cycle wastes, a bronze alloy was combined with an alkali, alkaline earth metal bearing ceramic to form a cermet. The alloy was prepared from copper and tin (10 mass%) powders. Pre-sintered ceramic consisting of cesium, strontium, barium and rubidium alumino-silicates was mixed with unalloyed bronze precursor powders and cold pressed to 300 × 10 ~3 kPa, then sintered at 600 C and 800 C under hydrogen. Cermets were also prepared that incorporated molybdenum, which has a limited solubility in glass, under similar conditions. The cermet thermal conductivities were seven times that of the ceramic alone. These improved thermal properties can reduce thermal gradients within the waste forms thus lowering internal temperature gradients and thermal stresses, allowing for larger waste forms and higher waste loadings. These benefits can reduce the total number of waste packages necessary to immobilize a given amount of high level waste and immobilize troublesome elements.
机译:在寻求改善热能形式的核废料并结合潜在的核燃料循环废料的方法时,将青铜合金与带有碱金属,碱土金属的陶瓷结合形成了金属陶瓷。该合金由铜和锡(10质量%)粉末制成。将由铯,锶,钡和rub铝硅酸盐组成的预烧结陶瓷与非合金青铜前体粉末混合,冷压至300×10〜3 kPa,然后在氢气下于600℃和800℃下烧结。还制备了掺入钼的金属陶瓷,该钼在类似条件下在玻璃中的溶解度有限。金属陶瓷的热导率是仅陶瓷的七倍。这些改进的热性能可以减少废物形式中的热梯度,从而降低内部温度梯度和热应力,从而允许更大的废物形式和更高的废物装载量。这些好处可以减少固定给定量的高含量废物和固定麻烦元素所需的废物包总数。

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