[1] 况新亮, 刘垂祥, 熊朋. 锂离子电池产业分析及市场展望[J]. 无机盐工业, 2022, 54(8): 9.
[2] 陈亮, 刘玫, 黄进. GB/T 24040-2008《环境管理 生命周期评价原则与框架》国家标准解读[J]. 标准科学, 2009(2): 76-80. doi: 10.3969/j.issn.1674-5698.2009.02.016
[3] YUNG H, CHU L, KIM T, et al. Cradle-to-Gate emissions from a commercial electric vehicle Li-Ion battery: a comparative analysis.[J]. Environmental Science & Technology, 2016, 50(14): 7715-7722.
[4] SULLIVAN J L, GAINES L. Status of life cycle inventories for batteries[J]. Energy Conversion and Management, 2012, 58: 134-148. doi: 10.1016/j.enconman.2012.01.001
[5] 郁亚娟, 陈妍. 典型二次电池生命周期评价[J]. 环境污染与防治, 2010, 10: 5. doi: 10.3969/j.issn.1001-3865.2010.01.002
[6] 梁雨晗, 郁亚娟, 王冬, 等. 锂离子电池常用有机液体电解质中有机溶剂的生命周期评价[J]. 环境化学, 2013, 32(7): 5. doi: 10.7524/j.issn.0254-6108.2013.07.023
[7] LI B, GAO X, LI J, et al. Life cycle environmental impact of high-capacity lithium ion battery with silicon nanowires anode for electric vehicles[J]. Environmental Science & Technology, 2014, 48(5): 3047-3055.
[8] SANFELIX J, MESSAGIE M, OMAR N, et al. Environmental performance of advanced hybrid energy storage systems for electric vehicle applications[J]. Applied Energy, 2015, 137: 925-930. doi: 10.1016/j.apenergy.2014.07.012
[9] 毛松科. 锂离子电池生产工艺及其发展前景[J]. 化工时刊, 2019, 33(9): 4.
[10] YANG J, GU F, GUO J F, et al. Comparative life cycle assessment of mobile power banks with lithium-ion battery and lithium-ion polymer battery[J]. Sustainability, 2019, 11(19): 787-794.
[11] 庞轶, 尚丽平, 屈薇薇. 不同SOC区间及倍率下锂电池老化分析[J]. 电子元件与材料, 2022, 41(2): 143-148.
[12] NORDELF A, POULIKIDOU S, CHORDIA M, et al. Methodological approaches to end-of-life modelling in life cycle assessments of lithium-ion batteries[J]. 2019, 5(3): 51-66.
[13] Canela. ISO 14044: Environmental management — Life cycle assessment — Requirements and guidelines[J]. 2006.
[14] SCHRIJVERS D L, LOUBET P, WEIDEMA B P. To what extent is the circular footprint formula of the product environmental footprint guide consequential?[J]. Journal of Cleaner Production, 2021, 320(128): 800.
[15] 湖南山醴新能源科技有限公司. 年生产3 000万只锂电池、组装1 500万只18650电池组项目[EB/OL]. [2024-1-5]. http://img.zhuzhou.gov.cn/zzcms/DFS/file/2020/05/29/20200529105647766s8dqww.pdf.
[16] 湖南金源新材料股份有限公司. 金源新材料环保工程改建项目[EB/OL]. 2024-1-5]. https://www.yiyang.gov.cn/yyshjbhj/uploadfiles/201810/20181022165516703.pdf?phlnglfkfkfkngln.
[17] 四川长虹润天能源科技有限公司. 废旧锂电池回收综合利用项目环境影响报告书[EB/OL]. [2024-1-5]. https://www.doc88.com/p-9793832744852.html.
[18] FISHER K, COLLINS M, LAENEN P, et al. Battery waste management life cycle assessment[J]. 2006, 10: 1-230.
[19] Beijing University of Technology. Material Environmental Load Database−Sinocenter[EB/OL]. http://cnmlca.bjut.edu.cn.
[20] 孙博学, 聂祚仁, 高峰, 等. 中国能源生产的累计需求分析[J]. 北京工业大学学报, 2013(11): 1734-1739. doi: 10.11936/bjutxb2013111734
[21] 工信部印发新能源汽车废旧动力蓄电池综合利用两个行业规范文件[J]. 中国有色金属, 2020(3): 24.
[22] 张琪琪. 石墨电极材料的生命周期评价[D]. 北京: 北京工业大学, 2018.
[23] YIN R S, HU S H, YANG Y. Life cycle inventories of the commonly used materials for lithium-ion batteries in China[J]. Journal of Cleaner Production, 2019, 227: 961-969.
[24] Ecoinvent Database Ecoinvent[EB/OL]. [2023-10-11]. https://ecoinvent.org/the-ecoinvent-database/.
[25] 贾志杰, 高峰, 杜世伟, 等. 磷酸铁锂电池不同应用场景的生命周期评价[J]. 中国环境科学, 2022, 42(4): 1975-1984. doi: 10.3969/j.issn.1000-6923.2022.04.055
[26] BP 2022年报告: 世界各国电力结构分析_电力网[EB/OL]. 2023-10-21]. http://www.chinapower.com.cn/zx/zxbg/20220712/157917.html.
[27] DU S W, GAO F, NIE Z R, et al. Comparison of electric vehicle lithium-ion battery recycling allocation methods[J]. Environmental Science & Technology, 2022, 56(24): 17977-17987.