在浓缩过程的多流级联中浓缩铀产品的成本Calculation

E. Semenov, V. V. Kharitonov
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引用次数: 0

摘要

现代铀浓缩设施可以同时使用几种原料作为饲料,包括天然铀、SNF后处理获得的再生铀或贫铀(均以六氟化铀的形式)。作为分离级联的输出,可以同时生产不同浓缩程度的几种浓缩铀产品。本文提出了一种文献中没有的方法来计算多流分离级联中每个浓缩铀产品的成本。提出的方法使用原料和产品流的同位素值和佩尔斯-狄拉克分离势的标准定义。对三个生产问题的浓缩铀产品成本进行了数值计算,以说明该方法的有效性:1)贫六氟化铀(DUHF)参与浓缩铀产品的制造;2)同时制备两种富集产物;3)使用贫化铀,以降低两种浓缩水平中较高的产品的成本(如应用于高级耐受性燃料)。研究表明,部分添加DUHF作为多产物分离梯级的进料,可以降低富集程度较高的产物的成本;根据目前天然铀和分离工作的市场价格,有一系列尾分析表明,富集DUHF比富集天然铀更有利可图。
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Calculation of the cost of enriched uranium products in multi-stream cascades of enrichment process
Modern uranium enrichment facilities can simultaneously use several raw materials as feed, including natural uranium, regenerated uranium obtained as a result of SNF reprocessing, or depleted uranium (all in the form of uranium hexafluoride). As the output of the separating cascade, several types of enriched uranium product with different levels of enrichment can be fabricated simultaneously. The paper proposes a methodology, absent in literature, for calculating the cost of each enriched uranium product in multi-stream separating cascades. The proposed methodology uses standard definitions of the isotopic value of feed and product stream and the Peierls-Dirac separation potential. Numerical calculations of the cost of enriched uranium products for three production problems are provided as examples of the methodology effectiveness: 1) involvement of depleted uranium hexafluoride (DUHF) in fabrication of enriched uranium product; 2) simultaneous fabrication of two enriched products; 3) use of depleted uranium to reduce the cost of the product with a higher enrichment level out of two (as applied, e.g., to advanced tolerant fuel). It has been shown that partial additions of DUHF as feed for a multi-product separating cascade make it possible to reduce the cost of a product with a higher level of enrichment; with the current market prices for natural uranium and separative work, there is a range of tails assays in which it is more profitable to enrich DUHF rather than natural uranium.
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