Sustainability-oriented prioritization of nuclear fuel cycle transitions in China: a holistic MCDM framework under uncertainties

IF 3.6 1区 物理与天体物理 Q1 NUCLEAR SCIENCE & TECHNOLOGY Nuclear Science and Techniques Pub Date : 2024-09-03 DOI:10.1007/s41365-024-01504-3
Lei Wang, Ru-Xing Gao, Hyo On Nam, Hong Jang, Won Il Ko, Chun-Dong Zhang, Guo-An Ye, Wen-Heng Jing
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Abstract

A sustainability-oriented assessment of the nuclear energy system can provide informative and convincing decision-making support for nuclear development strategies in China. In our previous study, four authentic nuclear fuel cycle (NFC) transition scenarios were proposed, featuring different development stages and exhibiting distinct environmental, economic, and technical characteristics. However, because of the multiple and often conflicting criteria embedded therein, determining the top-priority NFC alternative for a sustainability orientation remains challenging. To address this issue, this study proposed a novel hybrid multi-criteria decision-making framework comprising fuzzy AHP, PROMETHEE GAIA, and MOORA. Initially, an improved fuzzy AHP weighting model was developed to determine criteria weights under uncertainty and investigate the influence of various weight aggregation and defuzzification approaches. Subsequently, PROMETHEE GAIA was used to address conflicts among the criteria and prioritize alternatives on a visualized k-dimensional GAIA plane. As a result, the alternative for direct recycling PWR spent fuel in fast reactors is considered the most sustainable. Furthermore, a sensitivity analysis was conducted to examine the influence of criteria weight variation and validate the screening results. Finally, using MOORA, some significant optimization ideas and valuable insights were provided to support decision-makers in shaping nuclear development strategies.

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以可持续发展为导向确定中国核燃料循环过渡的优先次序:不确定性条件下的整体 MCDM 框架
对核能系统进行以可持续发展为导向的评估,可为中国核电发展战略提供翔实且令人信服的决策支持。在我们之前的研究中,提出了四种真实的核燃料循环(NFC)过渡方案,它们处于不同的发展阶段,并表现出不同的环境、经济和技术特征。然而,由于其中蕴含着多种标准,而且这些标准往往相互冲突,因此,从可持续发展的角度确定最优先的核燃料循环替代方案仍具有挑战性。为解决这一问题,本研究提出了一种新型混合多标准决策框架,包括模糊 AHP、PROMETHEE GAIA 和 MOORA。首先,建立了一个改进的模糊 AHP 权重模型,以确定不确定条件下的标准权重,并研究各种权重聚合和去模糊化方法的影响。随后,利用 PROMETHEE GAIA 解决标准之间的冲突,并在可视化的 k 维 GAIA 平面上确定备选方案的优先次序。结果,在快堆中直接循环利用压水堆乏燃料的替代方案被认为最具可持续性。此外,还进行了敏感性分析,以研究标准权重变化的影响,并验证筛选结果。最后,利用 MOORA 提供了一些重要的优化思路和有价值的见解,为决策者制定核发展战略提供了支持。
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来源期刊
Nuclear Science and Techniques
Nuclear Science and Techniques 物理-核科学技术
CiteScore
5.10
自引率
39.30%
发文量
141
审稿时长
5 months
期刊介绍: Nuclear Science and Techniques (NST) reports scientific findings, technical advances and important results in the fields of nuclear science and techniques. The aim of this periodical is to stimulate cross-fertilization of knowledge among scientists and engineers working in the fields of nuclear research. Scope covers the following subjects: • Synchrotron radiation applications, beamline technology; • Accelerator, ray technology and applications; • Nuclear chemistry, radiochemistry, radiopharmaceuticals, nuclear medicine; • Nuclear electronics and instrumentation; • Nuclear physics and interdisciplinary research; • Nuclear energy science and engineering.
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