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Selection of the Most Appropriate Vehicles with the Aim of Decarbonising the Transportation Sector Using AHP Cover

Selection of the Most Appropriate Vehicles with the Aim of Decarbonising the Transportation Sector Using AHP

Open Access
|May 2025

References

  1. ANDALORO, L. – MICARI, S. – NAPOLI, G. – POLIMENI, A. – ANTONUCCI, V. 2016. A hybrid electric fuel cell minibus: Drive test. In World Electric Vehicle Journal, vol. 8, no. 1, pp. 131–138. DOI: https://doi.org/10.3390/wevj8010131
  2. DAHLGREN, S. 2022. Biogas-based fuels as renewable energy in the transport sector: an overview of the potential of using CBG, LBG and other vehicle fuels produced from biogas. In Biofuels, vol. 13, no. 5, pp. 587–599. DOI: https://doi.org/10.1080/17597269.2020.1821571
  3. DE JONG, P. – TORRES, E. A. – DE MELO, S. A. B. V. – MENDES-SANTANA, D. – PONTES, K. V. 2023. Socio-economic and environmental aspects of bio-LPG and bio-dimethyl ether (Bio-DME) production and usage in developing countries: The case of Brazil. In Cleaner and Circular Bioeconomy, vol. 6, article no. 100055. DOI: https://doi.org/10.1016/j.clcb.2023.100055
  4. DE -LORENZO, G. – RUFFO, R. M. – FRAGIACOMO, P. 2023. Preliminary design of the fuel cells based energy systems for a cruise ship. In World Electric Vehicle Journal, vol. 14, no. 9, article no. 263. DOI: https://doi.org/10.3390/wevj14090263
  5. DEBNATH, D. – KHANNA, M. – RAJAGOPAL, D. – ZILBERMAN, D. 2019. The future of biofuels in an electrifying global transportation sector: Imperative, prospects and challenges. In Applied Economic Perspectives and Policy, vol. 41, no. 4, pp. 563–582. DOI: https://doi.org/10.1093/aepp/ppz023
  6. DESHMUKH, M. K. G. – SAMEERODDIN, M. – ABDUL, D. –SATTAR, M. A. 2023. Renewable energy in the 21st century: A review. In Materials Today: Proceedings, vol. 80, no. 3, pp. 1756–1759. DOI: https://doi.org/10.1016/j.matpr.2021.05.501
  7. FERNÁNDEZ, R. Á. 2018. A more realistic approach to electric vehicle contribution to greenhouse gas emissions in the city. In Journal of Cleaner Production, vol. 172, pp. 949–959. DOI: https://doi.org/10.1016/j.jclepro.2017.10.158
  8. GAUTAM, P. – NEHA – UPADHYAY, S. N. – DUBEY, S. K. 2020. Biomethanol as a renewable fuel from waste biomass: Current trends and future perspective. In Fuel, vol. 273, article no. 117783. DOI: https://doi.org/10.1016/j.fuel.2020.117783
  9. GHASEMI, R. – SEDIGHI, M. – GHASEMI, M. – GHAZANFARPOOR, S. B. 2023. Design of a fuzzy adaptive voltage controller for a nonlinear polymer electrolyte membrane fuel cell with an unknown dynamical system. In Sustainability, vol. 15, no. 18, article no. 13609. DOI: https://doi.org/10.3390/su151813609
  10. GUO, W. – KONG, L. – CHOW, T. – LI, C. – ZHU, Q. – QIU, Z. – LI, L. – WANG, Y. – RIFFAT, S. B. 2020. Energy performance of photovoltaic (PV) windows under typical climates of China in terms of transmittance and orientation. In Energy, vol. 213, article no. 118794.
  11. GUSTAFSSON, M. – CRUZ, I. – SVENSSON, N. – KARLSSON, M. 2020. Scenarios for upgrading and distribution of compressed and liquefied biogas – energy, environmental, and economic analysis. In Journal of Cleaner Production, vol. 256, article no. 120473. DOI: https://doi.org/10.1016/j.jclepro.2020.120473
  12. HANSEN, J. 2021. Expansion in matrix-weighted graphs. In Linear Algebra and its Applications, vol. 630, pp. 252–273. DOI: https://doi.org/10.1016/j.laa.2021.08.009
  13. HEMANSI – HIMANSHU – PATEL, A. K. – SAINI, J. K. – SINGHANIA, R. R. 2022. Development of multiple inhibitor tolerant yeast via adaptive laboratory evolution for sustainable bioethanol production. In Bioresource Technology, vol. 344, part B, article no. 126247. DOI: https://doi.org/10.1016/j.biortech.2021.126247
  14. JABRAEILI, M. – POURDARBANI, R. – NAJAFI, B. – NEMATOLLAHZADEH, A. 2021. Modelling the effects of Al2O3-SiO2 nanocomposite additive in biodiesel–diesel fuel on diesel engine performance using hybrid ANN-ABC. In Acta Technologica Agriculturae, vol. 24, no. 1, pp. 20–26. DOI: https://doi.org/10.2478/ata-2021-0004
  15. KHODKAM, H. – POURDARBANI, R. – GHAEBI, H. – HERNANDEZ-HERNANDEZ, M. 2024. Investigating the environmental impacts of different approaches of agricultural waste management using ahp technique. In Acta Technologica Agriculturae, vol. 27, no. 4, pp. 242–250. DOI: https://doi.10.2478/ata-2024-0032
  16. KUMAR, M. – PANDA, K. P. – NAAYAGI, R. T. – THAKUR, R. – PANDA, G. 2023. Comprehensive review of electric vehicle technology and its impacts: Detailed investigation of charging infrastructure, power management, and control techniques. In Applied Sciences, vol. 13, no. 15, article no. 8919. DOI: https://doi.org/10.3390/app13158919
  17. LI, N. – LIU, B. – JIA, L. – YAN, D. – LI, J. 2023. Liquid biofuels for solid oxide fuel cells: A review. In Journal of Power Sources, vol. 556, article no. 232437. DOI: https://doi.org/10.1016/j.jpowsour.2022.232437
  18. LIU, Y. – YUAN, Y. – RAMYA, G. – SINGH, S. M. – CHI, N. T. L. – PUGAZHENDHI, A. – XIA, C. – MATHIMANI, T. 2022. A review on the promising fuel of the future – biobutanol; the hindrances and future perspectives. In Fuel, vol. 327, article no. 125166. DOI: https://doi.org/10.1016/j.fuel.2022.125166
  19. LUO, Y. – WU, Y. – LI, B. – MO, T. – LI, Y. – FENG, S.-P. – QU, J. – CHU, P. K. 2021. Development and application of fuel cells in the automobile industry. In Journal of Energy Storage, vol. 42, article no. 103124. DOI: https://doi.org/10.1016/j.est.2021.103124
  20. MORAVVEJ, Z. – MAKAREM, M. A. – RAHIMPOUR, M. R. 2019. The fourth generation of biofuel. In BASILE, A. – DALENA, F. (ed.) Second and Third Generation of Feedstocks. The Evolution of Biofuels. Amsterdam : Elsevier, pp. 557–597. ISBN 978-0-12-815162-4. DOI: https://doi.org/10.1016/C2017-0-02722-2
  21. MUNAGALA, M. – SHASTRI, Y. – NAGARAJAN, S. – RANADE, V. 2022. Production of Bio-CNG from sugarcane bagasse: Commercialization potential assessment in Indian context. In Industrial Crops and Products, vol. 188, part. A, article no. 115590. DOI: https://doi.org/10.1016/j.indcrop.2022.115590
  22. NG, C. W. X. – ZHANG, J. – TAY, S. E. R. 2020. A tropical case study quantifying solar irradiance collected on a car roof for vehicle integrated photovoltaics towards low-carbon cities. In 2020 47th IEEE Photovoltaic Specialists Conference (PVSC). Calgary, Canada, pp. 2461–2464. DOI: https://doi.org/10.1109/PVSC45281.2020.9300351
  23. NUKUNUDOMPANICH, M. – SRIPRAPAI, D. – SONTIKAEW, S. 2022. Aspects of optical and thermal performances in flexible perovskite solar cells made of nanomaterials with potential for development of vehicle-integrated photovoltaics. In Materials Today: Proceedings, vol. 66, part 6, pp. 3163–3167. DOI: https://doi.org/10.1016/j.matpr.2022.06.397
  24. PADINJARETHIL, A. K. – BIANCHI, F. R. – BOSIO, B. – HAGEN, A. 2022. Degradation of Ni-YSZ and Ni-GDC fuel cells after 1000 h operation: Analysis of different overpotential contributions according to electrochemical and microstructural characterization. In E3S Web of Conferences, vol. 334, article no. 04011. DOI: https://doi.org/10.1051/e3sconf/202233404011
  25. REDDY, V. J. – HARIRAM, N. P. – MAITY, R. – GHAZALI, M. F. – KUMARASAMY, S. 2024. Sustainable vehicles for decarbonizing the transport sector: A comparison of biofuel, electric, fuel cell and solar-powered vehicles. In World Electric Vehicle Journal, vol. 15, no. 3, article no. 93. DOI: https://doi.org/10.3390/wevj15030093
  26. REKSOWARDOJO, I. K. – SETIAPRAJA, H. – MOKHTAR – YUBAIDAH, S. – MANSUR, D. – PUTRI, A. K. 2023. A study on utilization of high-ratio biodiesel and pure biodiesel in advanced vehicle technologies. In Energies, vol. 16, no. 2, article no. 718. DOI: https://doi.org/10.3390/en16020718
  27. REQUIA, W. J. – MOHAMED, M. – HIGGINS, C. D. – ARAIN, A. – FERGUSON, M. 2018. How clean are electric vehicles? Evidence-based review of the effects of electric mobility on air pollutants, greenhouse gas emissions and human health. In Atmospheric Environment, vol. 185, pp. 64–77. DOI: https://doi.org/10.1016/j.atmosenv.2018.04.040
  28. SCARLAT, N. – DALLEMAND, J.-F. 2019. Future role of bioenergy. In The Role of Bioenergy in the Bioeconomy. Resources, Technologies, Sustainability and Policy, pp. 435–547. DOI: https://doi.org/10.1016/B978-0-12-813056-8.00010-8
  29. SUSSKIND, L. – CHUN, J. – GOLDBERG, S. – GORDON, J. A. – SMITH, G. – ZAERPOOR, Y. 2020. Breaking out of carbon lock-in: Malaysia’s path to decarbonization. In Frontiers in Built Environment, vol. 6, no. 21. DOI: https://doi.org/10.3389/fbuil.2020.00021
  30. TERNEL, C. – BOUTER, A. – MELGAR, J. 2021. Life cycle assessment of mid-range passenger cars powered by liquid and gaseous biofuels: Comparison with greenhouse gas emissions of electric vehicles and forecast to 2030. In Transportation Research Part D: Transport and Environment, vol. 97, article no. 102897. DOI: https://doi.org/10.1016/j.trd.2021.102897
  31. THIEL, C. – AMILLO, A. G. – TANSINI, A. – TSAKALIDIS, A. – FONTARAS, G. – DUNLOP, E. – TAYLOR, N. – JÄGER-WALDAU, A. – ARAKI, K. – NISHIOKA, K. – OTA, Y. – YAMAGUCHI, M. 2022. Impact of climatic conditions on prospects for integrated photovoltaics in electric vehicles. In Renewable and Sustainable Energy Reviews, vol. 158, article no. 112109. DOI: https://doi.org/10.1016/j.rser.2022.112109
  32. VELVIZHI, G. – JACQUELINE, P. J. – SHETTI, N. P. – LATHA, K. – MOHANAKRISHNA, G. – AMINABHAVI, T. M. 2023. Emerging trends and advances in valorization of lignocellulosic biomass to biofuels. In Journal of Environmental Management, vol. 345, article no. 118527.
  33. ZENTANI, A. – ALMAKTOOF, A. – KAHN, M. T. 2024. A comprehensive review of developments in electric vehicles fast charging technology. In Applied Sciences, vol. 14, no. 11, article no. 4728. DOI: https://doi.org/10.3390/app14114728
Language: English
Page range: 63 - 70
Published on: May 15, 2025
Published by: Slovak University of Agriculture in Nitra
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2025 Himan Khodkam, Razieh Pourdarbani, José Luis Hernandez-Hernandez, published by Slovak University of Agriculture in Nitra
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.