Impacts of Vehicle Weight Reduction via Material Substitution on Life-Cycle Greenhouse Gas Emissions

被引:119
|
作者
Kelly, Jarod C. [1 ]
Sullivan, John L. [1 ]
Burnham, Andrew [1 ]
Elgowainy, Amgad [1 ]
机构
[1] Argonne Natl Lab, Div Energy Syst, Syst Assessment Grp, Argonne, IL 60439 USA
关键词
CLIMATE-CHANGE IMPACTS; AUTOMOTIVE MATERIAL; FUEL CONSUMPTION; KYOTO PROTOCOL; ALUMINUM; SUSTAINABILITY; AUTOMOBILES; BENEFITS; STEEL;
D O I
10.1021/acs.est.5b03192
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This study examines the vehicle-cycle and vehicle total life-cycle impacts of substituting lightweight materials into vehicles. We determine part-based greenhouse gas (GHG) emission ratios by collecting material substitution data and evaluating that alongside known mass-based GHG ratios (using and updating Argonne National Laboratory's Greet model) associated with material pair substitutions, Several vehicle parts are lightweighted via material substitution, using substitution ratios from a U.S. Department of Energy report, to determine GHG emissions. We then examine fuel-cycle GHG reductions from lightweighting. The fuel reduction value methodology is applied using FRV estimates of 0.15-0.25, and 0.25-0.5 L/(100km.100 kg), with and without powertrain adjustments, respectively. GHG breakeven values are derived for both driving distance and material substitution ratio. While material substitution can reduce vehicle weight, it often increases vehicle-cycle GHGs. It is likely that replacing steel (the dominant vehicle material) with wrought aluminum, carbon fiber reinforced plastic (CRFP), or magnesium will increase vehicle-cycle GHGs. However, lifetime fuel economy benefits often outweigh the vehicle-cycle, resulting in a net total life-cycle GHG benefit. This is the case for steel replaced by wrought aluminum in all assumed cases, and for CFRP and magnesium except for high substitution ratio and low FRV.
引用
收藏
页码:12535 / 12542
页数:8
相关论文
共 50 条
  • [1] Carsharing's life-cycle impacts on energy use and greenhouse gas emissions
    Chen, T. Donna
    Kockelman, Kara M.
    [J]. TRANSPORTATION RESEARCH PART D-TRANSPORT AND ENVIRONMENT, 2016, 47 : 276 - 284
  • [2] Life-cycle greenhouse gas emissions reduction potential for corn ethanol refining in the USA
    Xu, Hui
    Lee, Uisung
    Wang, Michael
    [J]. BIOFUELS BIOPRODUCTS & BIOREFINING-BIOFPR, 2022, 16 (03): : 671 - 681
  • [3] Modeling Future Life-Cycle Greenhouse Gas Emissions and Environmental Impacts of Electricity Supplies in Brazil
    Dale, Alexander T.
    Pereira de Lucena, Andre Frossard
    Marriott, Joe
    Moreira Cesar Borba, Bruno Soares
    Schaeffer, Roberto
    Bilec, Melissa M.
    [J]. ENERGIES, 2013, 6 (07) : 3182 - 3208
  • [4] Life-Cycle Greenhouse Gas Emissions of Shale Gas, Natural Gas, Coal, and Petroleum
    Burnham, Andrew
    Han, Jeongwoo
    Clark, Corrie E.
    Wang, Michael
    Dunn, Jennifer B.
    Palou-Rivera, Ignasi
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2012, 46 (02) : 619 - 627
  • [5] Life-Cycle Greenhouse Gas Emissions of Materials Used in Road Construction
    Hanson, Christopher S.
    Noland, Robert B.
    Cavale, Karthik Rao
    [J]. TRANSPORTATION RESEARCH RECORD, 2012, (2287) : 174 - 181
  • [6] Life-cycle greenhouse gas emissions of corn kernel fiber ethanol
    Qin, Zhangcai
    Li, Qianfeng
    Wang, Michael
    Han, Jeongwoo
    Dunn, Jennifer B.
    [J]. BIOFUELS BIOPRODUCTS & BIOREFINING-BIOFPR, 2018, 12 (06): : 1013 - 1022
  • [7] The life-cycle assessment of greenhouse gas emissions and life-cycle costs of e-waste management in Thailand
    Aweewan Mangmeechai
    [J]. Sustainable Environment Research, 32
  • [8] The life-cycle assessment of greenhouse gas emissions and life-cycle costs of e-waste management in Thailand
    Mangmeechai, Aweewan
    [J]. SUSTAINABLE ENVIRONMENT RESEARCH, 2022, 32 (01)
  • [9] Aggregation and Allocation of Greenhouse Gas Emissions in Oil and Gas Production: Implications for Life-Cycle Greenhouse Gas Burdens
    Chen, Qining
    Dunn, Jennifer B.
    Allen, David T.
    [J]. ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2019, 7 (20): : 17065 - 17073
  • [10] Consideration of Black Carbon and Primary Organic Carbon Emissions in Life-Cycle Analysis of Greenhouse Gas Emissions of Vehicle Systems and Fuels
    Cai, Hao
    Wang, Michael Q.
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2014, 48 (20) : 12445 - 12453