Analysis of the CO2 Emissions Due to Charging of Battery Electric Vehicles Considering the Hourly Power Mix
Author:
Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-54674-7_6
Reference30 articles.
1. Jenn, A.: Emissions of electric vehicles in California’s transition to carbon neutrality. Appl. Energy 339, 120974 (2023)
2. Hubka, L.: Electric cars in the Czech Republic – the analysis of CO2 emissions reduction. In: 2019 20th International Carpathian Control Conference (ICCC), pp. 1–6 (2019)
3. García-Afonso, O., González-Díaz, B.: Effectiveness of zero tailpipe vehicles to reduce CO2 emissions in isolated power systems, a realistic perspective: Tenerife Island test case. Energy 273, 127211 (2023)
4. Dobric, G.: Power system decarbonization and electrical vehicles. In: 2023 22nd International Symposium INFOTEH-JAHORINA (INFOTEH), pp. 1–5 (2023)
5. Rinawati, D.I., Keeley, A.R., Takeda, S., Itsubo, N., Managi, S.: Potential for reducing CO2 emissions from passenger cars in Japan by 2030 to achieve carbon neutrality. IATSS Res. 47(2), 185–195 (2023). https://doi.org/10.1016/j.iatssr.2023.02.004
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