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材料导报  2019, Vol. 33 Issue (z1): 53-56    
  无机非金属及其复合材料 |
基于LCA评价模型的动力电池回收阶段环境性研究
陈坤, 李君, 曲大为, 卢强
吉林大学汽车仿真与控制国家重点实验室,长春 130022
Study of Environmental Impact of Power Battery in Recycling Stage Based on LCA Assessment Model
CHEN Kun, LI Jun, QU Dawei, LU Qiang
State Key Laboratory of Automotive Simulation and Control, Jilin University, Changchun 130022
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摘要 为了降低动力电池全生命周期内的能耗和排放,提高动力电池和电动汽车的环保性能,在深入学习和理解生命周期评价(Life cycle assessment,LCA)理论和方法的基础上,以国产磷酸铁锂电池和镍氢电池为研究对象,以动力电池回收阶段为评价区间,建立了LCA评价模型。通过清单分析,对动力电池回收阶段的能源消耗和环境排放进行计算和评价,研究结果对我国动力电池生产、使用和回收具有一定的指导意义。
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陈坤
李君
曲大为
卢强
关键词:  动力电池  LCA评价模型  能耗  排放  磷酸铁锂电池  镍氢电池    
Abstract: In order to reduce the energy consumption and environmental emissions in life cycle of power batteries and improve the environmental protection performance of power batteries and electric vehicles, the LCA assessment model was established with the evaluation period of recovery stage based on in-depth study and understanding of life cycle assessment (LCA) theory and method. The research objects are lithium iron phosphate battery and nickel-hydrogen battery. With inventory analysis, calculation and evaluation of the energy consumption and environmental emissions during the power battery recovery stage were made. The research results are of guiding significance to the production, use and recycling of power batteries
Key words:  power battery    LCA assessment model    energy consumption    environmental emissions    lithium iron phosphate battery    nickel-hydrogen battery
               出版日期:  2019-05-25      发布日期:  2019-07-05
ZTFLH:  TK421  
基金资助: 国家重点研发计划(2017YFB0102101)
作者简介:  陈坤,现就读于吉林大学汽车工程学院,主要研究方向为新能源汽车动力总成技术。在国内重要期刊发表论文4篇,申报发明专利7项。曲大为,吉林大学汽车工程学院内燃机系,副主任。2012年7月毕业于吉林大学内燃机系,工学博士学位。同年加入吉林大学汽车仿真与控制重点实验室工作至今,主要从事发动机电控、微粒排放等研究。在国内外重要期刊发表文章20多篇,申报发明专利10余项。14128275@qq.com
引用本文:    
陈坤, 李君, 曲大为, 卢强. 基于LCA评价模型的动力电池回收阶段环境性研究[J]. 材料导报, 2019, 33(z1): 53-56.
CHEN Kun, LI Jun, QU Dawei, LU Qiang. Study of Environmental Impact of Power Battery in Recycling Stage Based on LCA Assessment Model. Materials Reports, 2019, 33(z1): 53-56.
链接本文:  
http://www.mater-rep.com/CN/  或          http://www.mater-rep.com/CN/Y2019/V33/Iz1/53
1 蒲毅, 徐树杰, 吴蒙.汽车与配件,2015(32),36.
2 Fave J A, Denison R, Jones B, et al. Society of Environmental Toxicology and Chemistry,1990,8,18.
3 Matheys J, Timmermans J M, Van Mierlo J, et al. International Journal of Sustainable Manufacturing,2009,1(3),318.
4 Cohn R S. Electric vehicle life cycle analysis. Master’s Thesis, Massachusetts Institute of Technology, USA,1994.
5 陈妍, 郁亚娟. 2010中国环境科学学会学术年会论文集,上海,2010,pp.126.
6 郁亚娟, 王冬, 王翔, 等.工业安全与环保,2012,38(6),13.
7 黄志甲, 张旭.同济大学学报,2003,31(12),1472.
8 束庆. 公交车能源供应及动力系统生命周期评价. 硕士学位论文, 同济大学,2004.
9 伍昌鸿, 马晓茜, 陈勇, 等.汽车工程,2006,28(2),207.
10 艾江鸿, 李海锋, 林鉴军.技术经济,2010,29(3),35.
11 Majeau-Bettez G, Hawkins T R, Strømman A H. Environmental Science & Technology,2011,45(10),4548.
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