Skip to main content
Erschienen in: Clean Technologies and Environmental Policy 3/2019

24.01.2019 | Original Paper

The effect of lightweighting on greenhouse gas emissions and life cycle energy for automotive composite parts

verfasst von: Masoud Akhshik, Suhara Panthapulakkal, Jimi Tjong, Mohini Sain

Erschienen in: Clean Technologies and Environmental Policy | Ausgabe 3/2019

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Lightweighting is considered as one of the solutions for reducing transportation emissions. Automobile manufacturers and original equipment manufacturers are seeking novel ways to meet this objective. One of the options for emission reduction would be the use of natural and/or recycled fiber-reinforced composites as these materials are lighter and have low energy demand compared to the currently being used materials. In this study, we tried to examine the impact of the use of hybrid bio-based composites as an alternative to the current materials. Four different under-the-hood parts (battery tray, engine beauty shield, cam cover, and oil pan) were manufactured using hybrid bio-based (carbon/cellulose fiber) composites and compared their environmental emission in terms of the greenhouse gas (GHG) emission as well as the cumulative energy demand. The GHG was calculated in accordance with the Intergovernmental Panel on Climate Change, Fifth Assessment Report, whereas cumulative energy demand was calculated based on the International Organization for Standardization life cycle assessment method. The results of this study indicated a noticeable GHG and energy savings and a promising future for these types of hybrid materials.

Graphical abstract

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literatur
Zurück zum Zitat Akhshik M, Panthapulakkal S, Tjong J, Sain M (2017) Life cycle assessment and cost analysis of hybrid fiber-reinforced engine beauty cover in comparison with glass fiber-reinforced counterpart. Environ Impact Assess Rev 65:111–117CrossRef Akhshik M, Panthapulakkal S, Tjong J, Sain M (2017) Life cycle assessment and cost analysis of hybrid fiber-reinforced engine beauty cover in comparison with glass fiber-reinforced counterpart. Environ Impact Assess Rev 65:111–117CrossRef
Zurück zum Zitat Al-Oqla FM, Sapuan SM, Ishak MR, Nuraini AA (2015) Predicting the potential of agro waste fibers for sustainable automotive industry using a decision making model. Comput Electron Agric 113:116–127CrossRef Al-Oqla FM, Sapuan SM, Ishak MR, Nuraini AA (2015) Predicting the potential of agro waste fibers for sustainable automotive industry using a decision making model. Comput Electron Agric 113:116–127CrossRef
Zurück zum Zitat Al-Salem SM, Evangelisti S, Lettieri P (2014) Life cycle assessment of alternative technologies for municipal solid waste and plastic solid waste management in the Greater London area. Chem Eng J 244:391–402CrossRef Al-Salem SM, Evangelisti S, Lettieri P (2014) Life cycle assessment of alternative technologies for municipal solid waste and plastic solid waste management in the Greater London area. Chem Eng J 244:391–402CrossRef
Zurück zum Zitat Balaji A, Karthikeyan B, Sundar Raj C (2015) Bagasse fiber—the future biocomposite material: a review. Int J ChemTech Res 7(1):223–233 Balaji A, Karthikeyan B, Sundar Raj C (2015) Bagasse fiber—the future biocomposite material: a review. Int J ChemTech Res 7(1):223–233
Zurück zum Zitat Bare J, Young D, Qam S, Hopton M, Chief S (2012) Tool for the reduction and assessment of chemical and other environmental impacts (TRACI). US Environmental Protection Agency, Washington, DC Bare J, Young D, Qam S, Hopton M, Chief S (2012) Tool for the reduction and assessment of chemical and other environmental impacts (TRACI). US Environmental Protection Agency, Washington, DC
Zurück zum Zitat Batouli SM, Zhu Y, Nar M, D’Souza NA (2014) Environmental performance of kenaf-fiber reinforced polyurethane: a life cycle assessment approach. J Clean Prod 66:164–173CrossRef Batouli SM, Zhu Y, Nar M, D’Souza NA (2014) Environmental performance of kenaf-fiber reinforced polyurethane: a life cycle assessment approach. J Clean Prod 66:164–173CrossRef
Zurück zum Zitat Bogner JE, Spokas KA, Burton EA (1999) Temporal variations in greenhouse gas emissions at a midlatitude landfill. J Environ Qual 28(1):278–288CrossRef Bogner JE, Spokas KA, Burton EA (1999) Temporal variations in greenhouse gas emissions at a midlatitude landfill. J Environ Qual 28(1):278–288CrossRef
Zurück zum Zitat Boland C, Dekleine R, Moorthy A, Keoleian G, Kim HC, Lee E, Wallington TJ (2014) A life cycle assessment of natural fiber reinforced composites in automotive applications. SAE technical paper 2014-01-1959 Boland C, Dekleine R, Moorthy A, Keoleian G, Kim HC, Lee E, Wallington TJ (2014) A life cycle assessment of natural fiber reinforced composites in automotive applications. SAE technical paper 2014-01-1959
Zurück zum Zitat Carlson E, Nelson K (1996) Nylon under the hood: a history of innovation. SAE Automot Eng 104:84–89 Carlson E, Nelson K (1996) Nylon under the hood: a history of innovation. SAE Automot Eng 104:84–89
Zurück zum Zitat CELA (2011) Canadian environmental law association. Improving the management of end-of-life vehicles in Canada. CELA Publication, 784 CELA (2011) Canadian environmental law association. Improving the management of end-of-life vehicles in Canada. CELA Publication, 784
Zurück zum Zitat CSA (2014) SPE-14040-14-life cycle assessment of auto parts—guidelines and requirements for conducting LCA of auto parts incorporating weight changes due to material composition, manufacturing technology, or part geometry CSA (2014) SPE-14040-14-life cycle assessment of auto parts—guidelines and requirements for conducting LCA of auto parts incorporating weight changes due to material composition, manufacturing technology, or part geometry
Zurück zum Zitat Das S (2010) Recycling and life cycle issues for lightweight vehicles. In: Materials, design and manufacturing for lightweight vehicle. Woodhead Publishing Limited, Cambridge, pp 309–331. Das S (2010) Recycling and life cycle issues for lightweight vehicles. In: Materials, design and manufacturing for lightweight vehicle. Woodhead Publishing Limited, Cambridge, pp 309–331.
Zurück zum Zitat Das S (2011) Life cycle assessment of carbon fiber-reinforced polymer composites. Int J Life Cycle Assess 16(3):268–282CrossRef Das S (2011) Life cycle assessment of carbon fiber-reinforced polymer composites. Int J Life Cycle Assess 16(3):268–282CrossRef
Zurück zum Zitat European Commission (2016) Reducing CO2 emissions from passenger cars—European Commission. EC Climate Policy European Commission (2016) Reducing CO2 emissions from passenger cars—European Commission. EC Climate Policy
Zurück zum Zitat Joshi S, Drzal L, Mohanty A, Arora S (2004) Are natural fiber composites environmentally superior to glass fiber reinforced composites? Compos Part A Appl Sci Manuf 35(3):371–376CrossRef Joshi S, Drzal L, Mohanty A, Arora S (2004) Are natural fiber composites environmentally superior to glass fiber reinforced composites? Compos Part A Appl Sci Manuf 35(3):371–376CrossRef
Zurück zum Zitat Kellenberger D, Althaus HJ, Jungbluth N, Künniger T, Lehmann M, Thalmann P (2007) Life cycle inventories of building products. Final report, Ecoinvent data v2.0, no. 7. Swiss Centre for Life Cycle Inventories, Dübendorf Kellenberger D, Althaus HJ, Jungbluth N, Künniger T, Lehmann M, Thalmann P (2007) Life cycle inventories of building products. Final report, Ecoinvent data v2.0, no. 7. Swiss Centre for Life Cycle Inventories, Dübendorf
Zurück zum Zitat Khabiri M (2014) Management of automobile end of life. Trends Life Sci 3(3):370–374 Khabiri M (2014) Management of automobile end of life. Trends Life Sci 3(3):370–374
Zurück zum Zitat Kim S, Dale BE, Drzal LT, Misra M (2014) Life cycle assessment of kenaf fiber reinforced biocomposite. J Biobased Mater Bioenergy 2(1):2–3 Kim S, Dale BE, Drzal LT, Misra M (2014) Life cycle assessment of kenaf fiber reinforced biocomposite. J Biobased Mater Bioenergy 2(1):2–3
Zurück zum Zitat Lewis AM, Kelly JC, Keoleian GA (2014) Vehicle lightweighting vs. electrification: life cycle energy and GHG emissions results for diverse powertrain vehicles. Appl Energy 126:13–20CrossRef Lewis AM, Kelly JC, Keoleian GA (2014) Vehicle lightweighting vs. electrification: life cycle energy and GHG emissions results for diverse powertrain vehicles. Appl Energy 126:13–20CrossRef
Zurück zum Zitat Mansor MR, Sapuan SM, Zainudin ES, Nuraini AA, Hambali A (2014) Conceptual design of kenaf fiber polymer composite automotive parking brake lever using integrated TRIZ—Morphological Chart-Analytic Hierarchy Process method. Mater Des 1980–2015(54):473–482CrossRef Mansor MR, Sapuan SM, Zainudin ES, Nuraini AA, Hambali A (2014) Conceptual design of kenaf fiber polymer composite automotive parking brake lever using integrated TRIZ—Morphological Chart-Analytic Hierarchy Process method. Mater Des 1980–2015(54):473–482CrossRef
Zurück zum Zitat Miller L, Soulliere K, Sawyer-Beaulieu S, Tseng S, Tam E (2014) Challenges and alternatives to plastics recycling in the automotive sector. Materials 7(8):5883–5902CrossRef Miller L, Soulliere K, Sawyer-Beaulieu S, Tseng S, Tam E (2014) Challenges and alternatives to plastics recycling in the automotive sector. Materials 7(8):5883–5902CrossRef
Zurück zum Zitat NHTSA (2006) Vehicle survivability and travel mileage schedules, national highway traffic safety administration, U.S. Department of Transportation, January 2006, p 1 NHTSA (2006) Vehicle survivability and travel mileage schedules, national highway traffic safety administration, U.S. Department of Transportation, January 2006, p 1
Zurück zum Zitat Pervaiz M, Sain M (2003) Carbon storage potential in natural fiber composites. Resources Conserv Recycl 39(4):325–340CrossRef Pervaiz M, Sain M (2003) Carbon storage potential in natural fiber composites. Resources Conserv Recycl 39(4):325–340CrossRef
Zurück zum Zitat Pervaiz M, Panthapulakkal S, Birat KC, Sain M, Tjong J (2016) Emerging trends in automotive lightweighting through novel composite materials. Sci Res Publ 7(01):26–38 Pervaiz M, Panthapulakkal S, Birat KC, Sain M, Tjong J (2016) Emerging trends in automotive lightweighting through novel composite materials. Sci Res Publ 7(01):26–38
Zurück zum Zitat Protocol K (1997) United Nations framework convention on climate change. Kyoto Protocol, Kyoto, 19 Protocol K (1997) United Nations framework convention on climate change. Kyoto Protocol, Kyoto, 19
Zurück zum Zitat Rinne J, Pihlatie M, Lohila A, Thum T, Aurela M, Tuovinen JP, Vesala T (2005) Nitrous oxide emissions from a municipal landfill. Environ Sci Technol 39(20):7790–7793CrossRef Rinne J, Pihlatie M, Lohila A, Thum T, Aurela M, Tuovinen JP, Vesala T (2005) Nitrous oxide emissions from a municipal landfill. Environ Sci Technol 39(20):7790–7793CrossRef
Zurück zum Zitat Rosa AD, La Recca G, Summerscales J, Latteri A, Cozzo G, Cicala G (2014) Bio-based versus traditional polymer composites. A life cycle assessment perspective. J Clean Prod 74:135–144CrossRef Rosa AD, La Recca G, Summerscales J, Latteri A, Cozzo G, Cicala G (2014) Bio-based versus traditional polymer composites. A life cycle assessment perspective. J Clean Prod 74:135–144CrossRef
Zurück zum Zitat Stagner JA, Sagan B, Tam EK (2013) Using sieving and pretreatment to separate plastics during end-of-life vehicle recycling. Waste Manag Res J Int Solid Wastes Public Clean Assoc ISWA 31(9):920–924CrossRef Stagner JA, Sagan B, Tam EK (2013) Using sieving and pretreatment to separate plastics during end-of-life vehicle recycling. Waste Manag Res J Int Solid Wastes Public Clean Assoc ISWA 31(9):920–924CrossRef
Zurück zum Zitat Stans J, Bos H (2007) CO2 reductions from passenger cars. The European Parliament’s Committee on the Environment. Public Health and Food Safety (IP/A/ENVI/FWC/2006-172/Lot 1/C2/SC1) Stans J, Bos H (2007) CO2 reductions from passenger cars. The European Parliament’s Committee on the Environment. Public Health and Food Safety (IP/A/ENVI/FWC/2006-172/Lot 1/C2/SC1)
Zurück zum Zitat Toth RT, Oprean A, Saplontai V, Samuila A, Dascalescu L, Gheorghe M, Cojocaru I (2014) Electrostatic separation of plastic materials recycled from end of life vehicles. Materiale Plastice 51(1):81–85 Toth RT, Oprean A, Saplontai V, Samuila A, Dascalescu L, Gheorghe M, Cojocaru I (2014) Electrostatic separation of plastic materials recycled from end of life vehicles. Materiale Plastice 51(1):81–85
Zurück zum Zitat Van den Brink R, Van Wee B (2001) Why has car-fleet specific fuel consumption not shown any decrease since 1990? Quantitative analysis of Dutch passenger car-fleet specific fuel consumption. Transp Res Part D Transp Environ 6(2):75–93CrossRef Van den Brink R, Van Wee B (2001) Why has car-fleet specific fuel consumption not shown any decrease since 1990? Quantitative analysis of Dutch passenger car-fleet specific fuel consumption. Transp Res Part D Transp Environ 6(2):75–93CrossRef
Zurück zum Zitat Weidema BP, Wesnaes MS (1996) Data quality management for life cycle inventories-an example pf using data quality indicators. J Clean Prod 4(3):167–174CrossRef Weidema BP, Wesnaes MS (1996) Data quality management for life cycle inventories-an example pf using data quality indicators. J Clean Prod 4(3):167–174CrossRef
Zurück zum Zitat Wötzel K, Wirth R, Flake M (1999) Life cycle studies on hemp fibre reinforced components and ABS for automotive parts. Die Angewandte Makromolekulare Chemie 272(1):121–127CrossRef Wötzel K, Wirth R, Flake M (1999) Life cycle studies on hemp fibre reinforced components and ABS for automotive parts. Die Angewandte Makromolekulare Chemie 272(1):121–127CrossRef
Zurück zum Zitat Xu X, Jayaraman K, Morin C, Pecqueux N (2008) Life cycle assessment of wood-fibre-reinforced polypropylene composites. J Mater Process Technol 198(1–3):168–177CrossRef Xu X, Jayaraman K, Morin C, Pecqueux N (2008) Life cycle assessment of wood-fibre-reinforced polypropylene composites. J Mater Process Technol 198(1–3):168–177CrossRef
Metadaten
Titel
The effect of lightweighting on greenhouse gas emissions and life cycle energy for automotive composite parts
verfasst von
Masoud Akhshik
Suhara Panthapulakkal
Jimi Tjong
Mohini Sain
Publikationsdatum
24.01.2019
Verlag
Springer Berlin Heidelberg
Erschienen in
Clean Technologies and Environmental Policy / Ausgabe 3/2019
Print ISSN: 1618-954X
Elektronische ISSN: 1618-9558
DOI
https://doi.org/10.1007/s10098-018-01662-0

Weitere Artikel der Ausgabe 3/2019

Clean Technologies and Environmental Policy 3/2019 Zur Ausgabe