Anenberg, S., Miller, J., Henze, D., & Minjares, R. (2019). A global snapshot of the air pollution-related health impacts of transportation sector emissions in 2010 and 2015 [Report]. International Council on Clean Transportation. Link to source: https://theicct.org/publication/a-global-snapshot-of-the-air-pollution-related-health-impacts-of-transportation-sector-emissions-in-2010-and-2015/
Anup, S., Deo, A., & Bandivadekar, A. (2021). Impact of fuel consumption standard on electrification of two-wheelers in India [Technical paper 2021-26-0050]. SAE International. Link to source: https://doi.org/10.4271/2021-26-0050
Ayetor, G. K., Mbonigaba, I., & Mashele, J. (2023). Feasibility of electric two and three-wheelers in Africa. Green Energy and Intelligent Transportation, 2(4), Article 100106. Link to source: https://doi.org/10.1016/j.geits.2023.100106
Barreiros, T. V. (2020). Comparison of the life cycle of different scooters used in Berlin [Report 1.0]. GreenDelta GmbH. Link to source: https://www.openlca.org/wp-content/uploads/2025/01/Report_Scooters_in_Berlin.pdf
BloombergNEF. (2025, December 9). Lithium-ion battery pack prices fall to $108 per kilowatt-hour, despite rising metal prices: BloombergNEF [Press release]. Link to source: https://about.bnef.com/insights/clean-transport/lithium-ion-battery-pack-prices-fall-to-108-per-kilowatt-hour-despite-rising-metal-prices-bloombergnef
Carranza, G., Do Nascimiento, M., Fanals, J., Febrer, J., & Valderrama, C. (2022). Life cycle assessment and economic analysis of the electric motorcycle in the city of Barcelona and the impact on air pollution. Science of The Total Environment, 821, Article 153419. Link to source: https://doi.org/10.1016/j.scitotenv.2022.153419
Cox, B. L., & Mutel, C. L. (2018). The environmental and cost performance of current and future motorcycles. Applied Energy, 212, 1013–1024. Link to source: https://doi.org/10.1016/j.apenergy.2017.12.100
Fearnley, N., & Veisten, K. (2025). What proportions of different transport modes do e-scooters replace? A meta-analysis. Journal of Cycling and Micromobility Research, 5, Article 100082. Link to source: https://doi.org/10.1016/j.jcmr.2025.100082
Guarnieri, M., & Balmes, J. R. (2014). Outdoor air pollution and asthma. The Lancet, 383(9928), 1581–1592. Link to source: https://www.thelancet.com/journals/lancet/article/PIIS0140-6736(14)60617-6/abstract
Gupta, R., Hertzke, P., Lath, V., & Vig, G. (2023). The real global EV buzz comes on two wheels. McKinsey & Company. Link to source: https://www.mckinsey.com/industries/automotive-and-assembly/our-insights/the-real-global-ev-buzz-comes-on-two-wheels
Hernandez, M., Kockelman, K. M., Lentz, J. O., & Lee, J. (2019). Emissions and noise mitigation through use of electric motorcycles. Transportation Safety and Environment, 1(2), 164–175. Link to source: https://doi.org/10.1093/tse/tdz013
International Energy Agency. (2020). Sustainable recovery [Report]. Link to source: https://www.iea.org/reports/sustainable-recovery
International Energy Agency. (2024). Global EV outlook 2024. Link to source: https://www.iea.org/reports/global-ev-outlook-2024/outlook-for-electric-mobility
International Energy Agency. (2025a). Global EV outlook 2025 [Report]. Link to source: https://www.iea.org/reports/global-ev-outlook-2025
International Energy Agency. (2025b). Breakthrough agenda report 2025 [Report]. Link to source: https://iea.blob.core.windows.net/assets/6f3b4ad7-b1aa-4791-b363-e4efe58cbb83/BreakthroughAgendaReport2025.pdf
International Transport Forum. (2020). Good to go? Assessing the environmental performance of new mobility [Corporate partnership board report]. Organisation for Economic Co-operation and Development/International Transport Forum. Link to source: https://www.itf-oecd.org/good-to-go-environmental-performance-new-mobility
International Transport Forum. (2023a). ITF transport outlook 2023 [Report]. Organisation for Economic Co-operation and Development. Link to source: https://doi.org/10.1787/b6cc9ad5-en
International Transport Forum. (2023b). Life-cycle assessment of passenger transport: An Indian case study [Policy paper]. Organisation for Economic Co-operation and Development. Link to source: https://doi.org/10.1787/2d11e416-en
Jaramillo, P., Ribeiro, S. K., Newman, P., Dhar, S., Diemuodeke, O. E., Kajino, T., Lee, D. S., Nugroho, S. B., Ou, X., Strømman, A. H., & Whitehead, J. (2022). Transport. In P. R. Shukla, J. Skea, R. Slade, A. Al Khourdajie, R. van Diemen, D. McCollum, M. Pathak, S. Some, P. Vyas, R. Fradera, M. Belkacemi, A. Hasija, G. Lisboa, S. Luz, & J. Malley (Eds.), Climate change 2022: Mitigation of climate change. Contribution of working group III to the sixth assessment report of the intergovernmental panel on climate change (pp. 1049–1160). Cambridge University Press. Link to source: https://doi.org/10.1017/9781009157926.012
Kamakaté, F., & Gordon, D. (2009). Managing motorcycles: Opportunities to reduce pollution and fuel use from two- and three-wheeled vehicles [Report]. International Council on Clean Transportation. Link to source: https://theicct.org/publication/managing-motorcycles-opportunities-to-reduce-pollution-and-fuel-use-from-two-and-three-wheeled-vehicles/
Kerr, G. H., Goldberg, D. L., & Anenberg, S. C. (2021). COVID-19 pandemic reveals persistent disparities in nitrogen dioxide pollution. Proceedings of the National Academy of Sciences, 118(30), Article e2022409118. Link to source: https://doi.org/10.1073/pnas.2022409118
Kumar, P. (2020, November 3). Busting the cost barrier: Why electric three-wheelers make business sense. World Resources Institute India. Link to source: https://wri-india.org/blogs/busting-cost-barrier-why-electric-three-wheelers-make-business-sense
Kumar, P., & Chakrabarty, S. (2020). Total cost of ownership analysis of the impact of vehicle usage on the economic viability of electric vehicles in India. Transportation Research Record: Journal of the Transportation Research Board, 2674(11), 563–572. Link to source: https://doi.org/10.1177/0361198120947089
Kumar, P., & Singh, A. (2024). Emerging opportunities for battery swapping in the electric two-wheeler segment in India. Transportation Research Record: Journal of the Transportation Research Board, 2678(1), 568–582. Link to source: https://doi.org/10.1177/03611981231171916
La Fleur, L., Lindkvist, E., Trångteg, R., Winter, S., & Thollander, P. (2024). Riding the future: Environmental, primary energy and economic analysis of an electric motorcycle - A Kenyan case study. Energy for Sustainable Development, 83, Article 101573. Link to source: https://doi.org/10.1016/j.esd.2024.101573
Mera, Z., & Bieker, G. (2023). Comparison of the life-cycle greenhouse gas emissions of combustion engine and electric passenger cars and two-wheelers in Indonesia [ICCT report]. International Council on Clean Transportation. Link to source: https://theicct.org/wp-content/uploads/2023/09/ID-17-%E2%80%93-LCA-Indonesia_report_final2.pdf
Montoya-Torres, J., Akizu-Gardoki, O., & Iturrondobeitia, M. (2023). Measuring life-cycle carbon emissions of private transportation in urban and rural settings. Sustainable Cities and Society, 96, Article 104658. Link to source: https://doi.org/10.1016/j.scs.2023.104658
Pan, S., Yu, W., Fulton, L. M., Jung, J., Choi, Y., & Gao, H. O. (2023). Impacts of the large-scale use of passenger electric vehicles on public health in 30 US. metropolitan areas. Renewable and Sustainable Energy Reviews, 173, Article 113100. Link to source: https://doi.org/10.1016/j.rser.2022.11310
Patil, M., Bandhu Majumdar, B., & Kumar Sahu, P. (2022). A comparative evaluation of the total cost of ownership between electric two-wheelers and motorized two-wheelers from an Indian perspective. Transportation Research Record: Journal of the Transportation Research Board, 2676(5), 526–550. Link to source: https://doi.org/10.1177/03611981221077087
Pennington, A. F., Cornwell, C. R., Sircar, K. D., & Mirabelli, M. C. (2024). Electric vehicles and health: A scoping review. Environmental Research, 251, Article 118697. Link to source: https://doi.org/10.1016/j.envres.2024.118697
Polanco Vásquez, L. O., Chavarría-Hernández, J. C., Arias Trinidad, A., Ordóñez-López, L. C., Forti Sosa, S., Contreras Pool, P. Y., & Barrera-Cabrera, J. N. (2025). Life cycle assessment of electric and gasoline moto-taxis in Yucatán, México: Impact of battery technology and social considerations. Energy for Sustainable Development, 85, Article 101614. Link to source: https://doi.org/10.1016/j.esd.2024.101614
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. Atmospheric Environment, 185, 64–77. Link to source: https://doi.org/10.1016/j.atmosenv.2018.04.040
Schneider, F., Castillo Castro, D. S., Weng, K.-C., Shei, C.-H., & Lin, H.-T. (2023). Comparative life cycle assessment (LCA) on battery electric and combustion engine motorcycles in Taiwan. Journal of Cleaner Production, 406, Article 137060. Link to source: https://doi.org/10.1016/j.jclepro.2023.137060
Sheng, N., Zhou, X., & Zhou, Y. (2016). Environmental impact of electric motorcycles: Evidence from traffic noise assessment by a building-based data mining technique. Science of The Total Environment, 554–555, 73–82. Link to source: https://doi.org/10.1016/j.scitotenv.2016.02.148
Szyszkowicz, M., Kousha, T., Castner, J., & Dales, R. (2018). Air pollution and emergency department visits for respiratory diseases: A multi-city case crossover study. Environmental Research, 163, 263–269. Link to source: https://doi.org/10.1016/j.envres.2018.01.043
Tuayharn, K., Kaewtatip, P., Ruangjirakit, K., & Limthongkul, P. (2015). ICE motorcycle and electric motorcycle: Environmental and economic analysis [Technical paper 2015-01-0100]. SAE International. Link to source: https://doi.org/10.4271/2015-01-0100
United Nations Environment Programme. (2023). Electric two and three wheelers: Global emerging market overview [Report]. Link to source: https://www.unep.org/resources/report/global-emerging-market-overview-electric-two-and-three-wheelers
Wanyama, M. (2024). Africa’s automobile maintenance structure – How it can contribute to road crashes and increased emissions [Policy brief]. High Volume Transport Applied Research Programme. Link to source: https://transport-links.com/hvt-publications/africas-automobile-maintenance-structure-policy-brief
Weiss, M., Dekker, P., Moro, A., Scholz, H., & Patel, M. K. (2015). On the electrification of road transportation – A review of the environmental, economic, and social performance of electric two-wheelers. Transportation Research Part D: Transport and Environment, 41, 348–366. Link to source: https://doi.org/10.1016/j.trd.2015.09.007
World Health Organization. (2022). Powered two-and three-wheeler safety: A road safety manual for decision-makers and practitioners, second edition. Link to source: https://www.who.int/publications/i/item/9789240060562
Zia, S., Qureshi, S., Zulfiqar, M., & Ijaz, A. (2025). Assessing the feasibility of electric vehicle adoption in Pakistan affordability, preferences, and market readiness. Engineering Proceedings, 111(1), Article 42. Link to source: https://doi.org/10.3390/engproc2025111042