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Which one is greener for the consumer? Product emission comparison between diesel and battery electric vehicles

Year 2025, Volume: 8 Issue: 1, 44 - 56, 31.03.2025
https://doi.org/10.35208/ert.1443410

Abstract

This study delves into a comparative analysis of electric vehicles (EVs) and diesel vehicles (DVs) across emissions, design, technology, and fuel consumption. One of the aims is to reveal the relationship between changes in form-based mass of the designed part, material selection influenced by production technologies, and the resulting production emissions and mass-based fuel consumption. The research aims to elucidate the environmental impact of EVs and DVs, particularly focusing on emissions stemming from raw materials of the production. Methodologically, the study employs theoretical analysis alongside practical assessments using Autodesk Fusion360 and CCaLC2 software for mass determination and emissions calculation, respectively. Through an examination of key parameters such as vehicle design, material usage, and powertrain systems, the study sheds light on the nuances of emissions generated by each vehicle type's parts. The research contextualizes the growing importance of sustainable transportation solutions in the face of escalating environmental concerns, emphasizing the need for rigorous evaluation of alternative fuel vehicles. By comprehensively analyzing data on emissions, design, and fuel consumption, the study provides insights into the complexities of sustainability in the automotive industry. The findings underscore the critical role of industrial design in emissions reduction and offer recommendations for stakeholders to prioritize sustainability in vehicle production and consumption practices. Also, mentioning important notes for green consumers who are buying products according to environmental effects. The study contributes to advancing understanding in the field of sustainable transportation and underscores the importance of methodological rigor in evaluating environmental impacts.

Thanks

We thank Rudis F&E GmbH for their valuable technical assistance.

References

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  • Renault Zoe. https://en.wikipedia.org/wiki/Renault_Zoe Accessed on Feb 26, 2024
  • EV Specifications, Renault Zoe https://www.evspecifications.com/en/model/bf8e8b,. Nov 10, 2023
  • Baumüller, Electric Motors. https://www.baumueller.com/en/download?task=download&file=download_datei&id=1146, Accessed on Nov 13, 2024.
  • George Scott. Ultra-Lightweight Design of a Single Speed EV Transmission. Drive System Design. https://www.drivesystemdesign.com/wp-content/uploads/2019/12/DSD-Ultra-Lightweight-Design-of-a-Single-Speed-Transmission-CTI-Berlin-Dec-2017.pdf Accessed on Sep 17, 2024.
  • European Economic Area Grants. https://www.eeagrants.gov.pt/media/2776/conversion-guidelines.pdf Accessed on Feb 20, 2024
  • American Chemistry Council. https://www.automotiveplastics.com/automotive-plastics-today/interior/ Accessed on Feb 26, 2024
  • Prestige Perfection Pty Ltd. https://www.prestigeperfection.com.au/choosing-the-right-car-floor-mat-material/ Accessed on Feb 26, 2024
  • SyBridge Technologies, “An introduction to common plastics used in automotive manufacturing,” https://sybridge.com/automotive-manufacturing-plastics/ Accessed on Sep 17, 2024.
  • A. Rassõlkin, A. Kallaste1, S. Orlova, L. Gevorkov, T. Vaimann, and A. Belahcen, “Re-use and recycling of different electrical machines,” Latvian Journal of Physics and Technical Sciences, Vol. 55(4) pp. 13-23, 2018. [CrossRef]
  • C. Xu, B. Steubing, M. Hu, C. Harpprecht, M. van der Meide, and A. Tukker, “Future greenhouse gas emissions of automotive lithium-ion battery cell production,” Resources, Conservation and Recycling, Vol. 187, Article 106606, 2022. [CrossRef]
Year 2025, Volume: 8 Issue: 1, 44 - 56, 31.03.2025
https://doi.org/10.35208/ert.1443410

Abstract

References

  • R. C. Allen, “The industrial revolution: A very short introduction,” Oxford University Press, 2007.
  • J. Dargay, D. Gately, and M. Sommer, “Vehicle ownership and income growth, Worldwide: 1960-2030,” The Energy Journal, Vol. 28(4), pp. 143-170, 2007. [CrossRef]
  • J. Martins, and F. P. Brito, “Alternative fuels for internal combustion engines,” Energies, Vol. 13(16), Article 4086, 2020. [CrossRef]
  • K. Wróbel, J. Wróbel, W. Tokarz, J. Lach, K. Podsadni, and A. Czerwiński, “Hydrogen internal combustion engine vehicles: A review,” Energies, Vol. 15(23), Article 8937, 2022. [CrossRef]
  • M. Ciniviz, and H. Köse, “Hydrogen use in internal combustion engine: A review,” International Journal of Automotive Engineering and Technologies, Vol. 1(1), pp. 1-15, 2012.
  • M. Nitti, V. Pilloni, G. Colistra, and L. Atzori, “The virtual object as a major element of the internet of things: a survey,” IEEE Communications Surveys & Tutorials, 18(2), pp. 1228-1240, 2016. [CrossRef]
  • S. Sharma, A. K. Panwar, and M. M. Tripathi, “Storage technologies for electric vehicles,” Journal of Traffic and Transportation Engineering (English Edition), Vol. 7(3), pp. 340-361, 2020. [CrossRef]
  • M. Koniak, and A Czerepicki, “Selection of the battery pack parameters for an electric vehicle based on performance requirements,” IOP Conference Series Materials Science and Engineering, Vol. 211(1), International Conference on Aerospace, Mechanical and Mechatronic Engineering 21–23 April 2017, Bangkok, Thailand, 2017. [CrossRef]
  • P. Doran, “Doing more with less: Ensuring sustainable consumption and production,” https://www.iisd.org/articles/doing-more-less-ensuring-sustainable-consumption-and-production Accessed on Nov 30, 2023
  • F. Ağlargöz, “Making sense of repurposing in sustainable consumption by visuals,” Alanya Academic Review Journal, Vol. 6(2), pp. 2457-2479, 2022. [Turkish] [CrossRef]
  • İ. Alkara, and M. Çalışkan, “A research on social media posts of businesses included in BIST sustainability index,” Journal Of Business Research-Turk, Vol. 15(3), pp. 2065-2083, 2023. [Turkish]
  • J. Zuo, X. Jin, and Lisa M. Flynn, “Social sustainability in construction–an explorative study,” International Journal of Construction Management, Vol. 12, pp. 51-63, 2012. [CrossRef]
  • S. Günaslan, B. E. Nalbur, and S. S. Cindoruk, “Otomotiv Endüstrisinde Döngüsel Ekonomi ve Elektrikli Araçlar İçin Yaşam Döngüsü Değerlendirmesinin İncelenmesi,” International Journal of Advanced Natural Sciences and Engineering Researches, Vol. 7(4), pp. 313-318, 2023. [Turkish] [CrossRef]
  • D. Fındık, “An empirical study on the effect of circular economy practices on firm performance in EU countries,” Journal of Productivity Circular Economy and Sustainability Special Issue, pp. 37-52, 2023. [CrossRef]
  • P. Chaihanchanchai, and S. Anantachart, “Encouraging green product purchase: Green value and environmental knowledge as moderators of attitude and behavior relationship,” Business Strategy and the Environment, Vol. 32(1), pp. 289–303, 2023. [CrossRef]
  • S. Sachdeva, J. Jordan and Nina Mazar, “Green consumerism: moral motivations to a sustainable future,” Current Opinion in Psychology, Vol. 6, pp. 60-65, 2015. [CrossRef]
  • M. Ali, S. Ullah, M. S. Ahmad, M. Y. Cheok, and H. Alenezi, “Assessing the impact of green consumption behavior and green purchase intention among millennials toward sustainable environment,” Environmental Science and Pollution Research, Vol. 30, pp. 23335–23347, 2023. [CrossRef]
  • United States Environmental Protection Agency. 2023. Scope 1 and Scope 2 Inventory Guidance. EPA Center for Corporate Climate Leadership. https://www.epa.gov/climateleadership/scope-1-and-scope-2-inventory-guidance Accessed on Sep 17, 2024.
  • S. S. Raykar, “Analysis of energy use and carbon emissions from automobile manufacturing (Master’s thesis)”, MIT Libraries. (Identifier 929445382), 2015.
  • H. Hao, Z. Mu, S. Jiang, Z. Liu, and F. Zhao, “GHG Emissions from the Production of Lithium-Ion Batteries for Electric Vehicles in China,” Sustainability, Vol. 9(4), Article 504, 2017. [CrossRef]
  • A. Märtz, P. Plötz, and P. Jochem, “Global perspective on CO2 emissions of electric vehicles,” Environmental Research Letters, Vol. 16, Article 054043, 2021. [CrossRef]
  • M. Canbulat, and A. F. Savaş, “Sürdürülebilir Tasarım ve Elektrikli Araç Şarj İstasyonları.,”In A. Bilgiç and Ş. Balbay (Eds.), Endüstriyel Sürdürülebilirlik ve Döngüsel Ekonomi Uygulamaları: Dünyadan ve Türkiye’den Yeşil Dönüşüm Örnekleri. Detay Yayıncılık. pp. 1-16, 2023.
  • A. Desreveaux, E. Hittinger, A. Bouscayrol, E. Castex, and G. M. Sirbu, "Techno-Economic Comparison of Total Cost of Ownership of Electric and Diesel Vehicles,” IEEE Access, Vol. 8, pp. 195752-195762, 2020. [CrossRef]
  • https://www.cars-data.com/en/renault-clio/curb-weight, Renault Clio Curb Weight, Cars-Data. Accessed on Feb 20, 2024Lotus Engineering Inc. “An Assessment of Mass Reduction Opportunities for a 2017 – 2020 Model Year Vehicle Program,” The International Council on Clean Transportation, 2010.
  • J. Sullivan, J. Kelly, and A. Elgowainy. Vehicle Materials: Material Composition of Powertrain Systems. Argonne National Laboratory. https://greet.anl.gov/files/2015-powertrain-materials 2015. Accessed on Sep 17, 2024.
  • Renault Zoe. https://en.wikipedia.org/wiki/Renault_Zoe Accessed on Feb 26, 2024
  • EV Specifications, Renault Zoe https://www.evspecifications.com/en/model/bf8e8b,. Nov 10, 2023
  • Baumüller, Electric Motors. https://www.baumueller.com/en/download?task=download&file=download_datei&id=1146, Accessed on Nov 13, 2024.
  • George Scott. Ultra-Lightweight Design of a Single Speed EV Transmission. Drive System Design. https://www.drivesystemdesign.com/wp-content/uploads/2019/12/DSD-Ultra-Lightweight-Design-of-a-Single-Speed-Transmission-CTI-Berlin-Dec-2017.pdf Accessed on Sep 17, 2024.
  • European Economic Area Grants. https://www.eeagrants.gov.pt/media/2776/conversion-guidelines.pdf Accessed on Feb 20, 2024
  • American Chemistry Council. https://www.automotiveplastics.com/automotive-plastics-today/interior/ Accessed on Feb 26, 2024
  • Prestige Perfection Pty Ltd. https://www.prestigeperfection.com.au/choosing-the-right-car-floor-mat-material/ Accessed on Feb 26, 2024
  • SyBridge Technologies, “An introduction to common plastics used in automotive manufacturing,” https://sybridge.com/automotive-manufacturing-plastics/ Accessed on Sep 17, 2024.
  • A. Rassõlkin, A. Kallaste1, S. Orlova, L. Gevorkov, T. Vaimann, and A. Belahcen, “Re-use and recycling of different electrical machines,” Latvian Journal of Physics and Technical Sciences, Vol. 55(4) pp. 13-23, 2018. [CrossRef]
  • C. Xu, B. Steubing, M. Hu, C. Harpprecht, M. van der Meide, and A. Tukker, “Future greenhouse gas emissions of automotive lithium-ion battery cell production,” Resources, Conservation and Recycling, Vol. 187, Article 106606, 2022. [CrossRef]
There are 35 citations in total.

Details

Primary Language English
Subjects Human Impacts of Climate Change and Human Adaptation, Environmentally Sustainable Engineering, Sustainability and Energy
Journal Section Research Articles
Authors

Mustafa Canbulat 0000-0002-5390-2919

İbrahim Alkara 0000-0001-8575-2524

Publication Date March 31, 2025
Submission Date February 27, 2024
Acceptance Date July 29, 2024
Published in Issue Year 2025 Volume: 8 Issue: 1

Cite

APA Canbulat, M., & Alkara, İ. (2025). Which one is greener for the consumer? Product emission comparison between diesel and battery electric vehicles. Environmental Research and Technology, 8(1), 44-56. https://doi.org/10.35208/ert.1443410
AMA Canbulat M, Alkara İ. Which one is greener for the consumer? Product emission comparison between diesel and battery electric vehicles. ERT. March 2025;8(1):44-56. doi:10.35208/ert.1443410
Chicago Canbulat, Mustafa, and İbrahim Alkara. “Which One Is Greener for the Consumer? Product Emission Comparison Between Diesel and Battery Electric Vehicles”. Environmental Research and Technology 8, no. 1 (March 2025): 44-56. https://doi.org/10.35208/ert.1443410.
EndNote Canbulat M, Alkara İ (March 1, 2025) Which one is greener for the consumer? Product emission comparison between diesel and battery electric vehicles. Environmental Research and Technology 8 1 44–56.
IEEE M. Canbulat and İ. Alkara, “Which one is greener for the consumer? Product emission comparison between diesel and battery electric vehicles”, ERT, vol. 8, no. 1, pp. 44–56, 2025, doi: 10.35208/ert.1443410.
ISNAD Canbulat, Mustafa - Alkara, İbrahim. “Which One Is Greener for the Consumer? Product Emission Comparison Between Diesel and Battery Electric Vehicles”. Environmental Research and Technology 8/1 (March 2025), 44-56. https://doi.org/10.35208/ert.1443410.
JAMA Canbulat M, Alkara İ. Which one is greener for the consumer? Product emission comparison between diesel and battery electric vehicles. ERT. 2025;8:44–56.
MLA Canbulat, Mustafa and İbrahim Alkara. “Which One Is Greener for the Consumer? Product Emission Comparison Between Diesel and Battery Electric Vehicles”. Environmental Research and Technology, vol. 8, no. 1, 2025, pp. 44-56, doi:10.35208/ert.1443410.
Vancouver Canbulat M, Alkara İ. Which one is greener for the consumer? Product emission comparison between diesel and battery electric vehicles. ERT. 2025;8(1):44-56.