[1] 张希良, 黄晓丹, 张达, 等. 碳中和目标下的能源经济转型路径与政策研究[J]. 管理世界, 2022, 38(1): 35-66. ZHANG X L, HUANG X D, ZHANG D, et al. Research on the pathway and policies for China’s energy and economy transformation toward carbon neutrality[J]. Journal of Management World, 2022, 38(1): 35-66. [2] 麦克·施耐德, 余文敏. 2019世界核能产业现状报告[EB/OL].[2020-05-27].http://www.mifce.org/newsinfo/389002.html. [3] 李林蔚, 朱博, 刘秀. 核能在我国清洁低碳能源系统中的战略定位研究[J]. 产业与科技论坛, 2022, 21(15): 12-15. [4] UNECE. Technology brief nuclear power [R]. UNECE Task Force on Carbon Neutrality, Geneva, 2021. [5] 穆献中, 徐琴, 刘宇, 等. 基于生命周期评价的核电环境影响分析[J].安全与环境学报, 2022, 22(5): 2775-2781. MU X Z, XU Q, LIU Y, et al. Environmental effect analysis of nuclear power based on life cycle assessment[J]. Journal of Safety and Environment, 2022,22(5): 2775-2781. [6] Yasukawa S, Tadokoro Y, Kajiyama T. Life cycle CO2 emission from nuclear power reactor and fuel cycle system[C]//International Energy Agency. Proceedings of the Expert Workshop on Life-Cycle Analysis of Energy Systems, Methods and Experience. Paris: Organization for Economic Co-operation and Development, 1992: 151-160. [7] 马忠海, 潘自强, 谢建伦, 等. 我国核电链温室气体排放系数研究[J]. 辐射防护, 2001, 21(1): 19-24. MA Z H, PAN Z Q, XIE J L, et al. Study of greenhouse gases emission factor for nuclear power chain of China[J]. Radiation Protection, 2001, 21(1): 19-24. [8] Warner E S, Heath G A. Life cycle greenhouse gas emissions of nuclear electricity generation[J]. Journal of Industrial Ecology, 2012, 16: S73-S92. [9] 姜子英, 潘自强, 邢江, 等. 中国核电能源链的生命周期温室气体排放研究[J]. 中国环境科学, 2015, 35(11): 3502-3510. JIANG Z Y, PAN Z Q, XING J, et al. Greenhouse gas emissions from nuclear power chain life cycle in China[J]. China Environmental Science, 2015, 35(11): 3502-3510. [10] Osamah S, Ibrahim D. Comparative assessment of the environmental impacts of nuclear, wind and hydro-electric power plants in Ontario: A life cycle assessment [J]. Journal of Cleaner Production, 2017, 164: 848-860. [11] Pomponi F, Hart J. The greenhouse gas emissions of nuclear energy—Life cycle assessment of a European pressurised reactor [J]. Applied Energy, 2021, 290: 116743. [12] 韩梓豪, 周胜, 秦旭映, 等. 中国核电的CO2排放和放射性全生命周期分析[J]. 中国经贸导刊, 2021 (20): 46-51. [13] ISO. 温室气体 第1部分:在组织层面上对温室气体排放和清除的量化报告进行指导的规范:ISO 14064.1—2018 [S].ISO,2018. [14] 中国标准化研究院.环境管理—生命周期评价 要求与指南:GB/T 24044—2008[S].北京:中国标准出版社,2008. [15] 宋海涛, 瞿慧红, 张泽民, 等. 从生命周期角度分析核电产生的碳排放[C]//中国核科学技术进展报告(第二卷)——中国核学会2011年学术年会论文集第10册. 2011: 233-239. [16] 中国标准化研究院.工业企业温室气体排放核算和报告通则:GB/T 32150—2015[S].北京:中国标准出版社,2015. [17] 李雨晨, 秦宇, 杨柳, 等. 长江上游大中型水库碳排放量估算与分析:以IPCC国家温室气体清单指南为基础[J]. 湖泊科学, 2023, 35(1): 131-144. LI Y C, QIN Y, YANG L, et al. Estimation and analysis of carbon emissions from the large and medium sized reservoirs the upper reaches of Changjiang River: on the basis of the IPCC national greenhouse gas inventory. Journal of lakes science, 2023, 35(1): 131-144. [18] 中国标准化研究院.温室气体排放核算与报告要求 第1部分:发电企业:GB/T 32151.1—2015[S].北京:中国标准出版社,2015. [19] 生态环境部办公厅. 企业温室气体排放核算方法与报告指南 发电设施[Z]. 2021. [20] 国家发展改革委. 工业其他行业企业温室气体排放核算方法与报告指南(试行)[Z]. 2015. [21] Tokimatsu K, Kosugi T, Asami T, et al. Evaluation of life cycle CO2 emissions from the Japanese electric power sector in the 21st century under various nuclear scenarios [J]. Energy Policy, 2006, 34(7): 833-852. [22] Integrated Sustainability Analysis. Life cycle energy balance and greenhouse gas emissions of nuclear energy in Australia [R]. University of Sydney, Sydney, Australia, 2006: 15-16. [23] Fthenakis V Kim, Hyung C. Greenhouse-gas emissions from solar electric- and nuclear power: a life-cycle study [J]. Energy Policy, 2007, 35(4): 2549-2557. [24] Nian V, Chou S K, Su B, et al. Life cycle analysis on carbon emissions from power generation—The nuclear energy example [J]. Applied Energy, 2014 (118) : 68-82. [25] 孙占学, Fiaz A, 赵凯, 等. 中国铀矿采冶回顾与展望[J].有色金属(冶炼部分), 2021 (8): 1-8. SUN Z X, FIAZ A, ZHAO K, et al. Review and prospect of uranium mining and metallurgy in China[J]. Nonferrous Metals(Extractive Metallurgy), 2021 (8): 1-8. [26] 李哲坤,张立秋,杜子文,等. 城市污泥不同处理处置工艺路线碳排放比较[J]. 环境科学, 2023, 44(2): 1181-1190. LI Z K, ZHANG L Q, DU Z W, et al. Comparison of carbon emissions in different treatment and disposal process routes of municipal sludge [J]. Environmental Scicence, 2023, 44(2): 1181-1190. [27] Kadiyala A, Kommalapati R, Huque Z. Quantification of the lifecycle greenhouse gas emissions from nuclear power generation systems [J]. Energies, 2016, 9(11): 863. [28] WANG L, WANG Y, DU H B, et al. A comparative life-cycle assessment of hydro-, nuclear and wind power: A China study [J]. Applied Energy, 2019, 249: 37-45. |