Optimizing material selection and the thickness of radon reduction layer in uranium tailings pond

In this paper, a multi-objective decision model is formulated utilizing both single-layer and three-layer radon reduction layer materials by considering radon emanation rate and cost as decision objectives. Through a multi-objective non-dominated ranking method, the optimal solution is identified fr...

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Bibliographic Details
Published in:Journal of radioanalytical and nuclear chemistry Vol. 333; no. 1; pp. 205 - 213
Main Authors: Deng, Nianbiao, Ding, Dexin
Format: Journal Article
Language:English
Published: Cham Springer International Publishing 01.01.2024
Springer
Springer Nature B.V
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ISSN:0236-5731, 1588-2780
Online Access:Get full text
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Summary:In this paper, a multi-objective decision model is formulated utilizing both single-layer and three-layer radon reduction layer materials by considering radon emanation rate and cost as decision objectives. Through a multi-objective non-dominated ranking method, the optimal solution is identified from a range of feasible alternatives. In the case of the example uranium tailings pond, the optimized three-layer radon reduction layer materials reduce the comprehensive cost by 47.8% compared with the single-layer radon reduction layer materials while meeting the radon emanation rate limit. Furthermore, the utilization of non-dominated multi-objective optimization techniques demonstrates higher efficiency in optimizing each radon reduction layer schemes.
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ISSN:0236-5731
1588-2780
DOI:10.1007/s10967-023-09244-1