[
Agarwal, S., He, J., Ren, Y., & Shen, X. (2024). Air quality improved by new energy vehicles penetration. SSRN Electronic Journal. https://doi.org/10.2139/SSRN.4851007
]Search in Google Scholar
[
Alishaq, A., & Mehlig, D. (2024). Towards Sustainable Mobility: Assessing the Benefits and Implications of Internal Combustion Engine Vehicle Bans and Battery Electric Vehicle Uptake in Qatar. Atmosphere, 15(6), 677. https://doi.org/10.3390/ATMOS15060677/S1
]Search in Google Scholar
[
Andre, M., Sartelet, K., Moukhtar, S., Andre, J. M., & Redaelli, M. (2020). Diesel, petrol or electric vehicles: What choices to improve urban air quality in the Ile-de-France region? A simulation platform and case study. Atmospheric Environment, 241, 117752. https://doi.org/10.1016/J.ATMOSENV.2020.117752
]Search in Google Scholar
[
Beevers, S., Assareh, N., Beddows, A., Stewart, G., Holland, M., Fecht, D., Liu, Y., Goodman, A., Walton, H., Brand, C., Evangelopoulos, D., Wood, D., Vu, T., & Dajnak, D. (2025). Climate change policies reduce air pollution and increase physical activity: Benefits, costs, inequalities, and indoor exposures. Environment International, 195, 109164. https://doi.org/10.1016/J.ENVINT.2024.109164
]Search in Google Scholar
[
Choma, E. F., Evans, J. S., Hammitt, J. K., Gómez-Ibáñez, J. A., & Spengler, J. D. (2020). Assessing the health impacts of electric vehicles through air pollution in the United States. Environment International, 144, 106015. https://doi.org/10.1016/J.ENVINT.2020.106015
]Search in Google Scholar
[
Colette, A., Koelemeijer, R., Mellios, G., Schucht, S., Péré, J.-C., Kouridis, C., Bessagnet, B., Eerens, H., Van Velze, K., & Rouïl, L. (2012). Cobenefits of climate and air pollution regulations The context of the European Commission Roadmap for moving to a low carbon economy in 2050 The European Topic Centre on Air Pollution and Climate Change Mitigation (ETC/ACM) is a consortium of European institutes under contract of the European Environment Agency RIVM UBA-V ÖKO AEAT EMISIA CHMI NILU INERIS PBL CSIC 2. http://acm.eionet.europa.eu/
]Search in Google Scholar
[
DGT. (2023). DGT - DGT en cifras resultados. https://www.dgt.es/menusecundario/dgt-en-cifras/dgt-en-cifrasresultados/?q=parque&tema=vehiculos&pag=1&order=DESC%C2%A0
]Search in Google Scholar
[
EEA. (2019). EMEP/EEA air pollutant emission inventory guidebook 2019 | European Environment Agency’s home page. https://www.eea.europa.eu/en/analysis/publications/emep-eea-guidebook-2019
]Search in Google Scholar
[
EEA. (2023). Harm to human health from air pollution in Europe: burden of disease 2023 — European Environment Agency. https://doi.org/10.2800/721439
]Search in Google Scholar
[
EEA. (2024). Technical note. Estimating the external costs of industrial air pollution-Trends 2012-2021. https://www.eea.europa.eu/publications/the-cost-to-health-and-the/technical-note_estimating-the-external-costs/view
]Search in Google Scholar
[
EMEP/EEA. (2024). EMEP/EEA air pollutant emission inventory guidebook 2023 1 Category Title NFR 1.A.3.b.vi-vii.
]Search in Google Scholar
[
EV Database. (n.d.). Energy consumption of full electric vehicles cheatsheet - EV Database. Retrieved March 4, 2025, from https://ev-database.org/cheatsheet/energy-consumption-electric-car
]Search in Google Scholar
[
Gago, E. J. (2017). Electric vehicles: Case study for Spain. Electric Vehicles: Prospects and Challenges, 287–316. https://doi.org/10.1016/B978-0-12-803021-9.00008-2
]Search in Google Scholar
[
Gamarra, A. R., Lechón, Y., Vivanco, M. G., Garrido, J. L., Martín, F., Sánchez, E., Theobald, M. R., Gil, V., & Santiago, J. L. (2020). Benefit Analysis of the 1st Spanish Air Pollution Control Programme on Health Impacts and Associated Externalities. Atmosphere 2021, Vol. 12, Page 32, 12(1), 32. https://doi.org/10.3390/ATMOS12010032
]Search in Google Scholar
[
Gamarra, A. R., Lechón, Y., Vivanco, M. G., Theobald, M. R., Lago, C., Sánchez, E., Santiago, J. L., Garrido, J. L., Martín, F., Gil, V., & Rodríguez-Sánchez, A. (2021). Avoided Mortality Associated with Improved Air Quality from an Increase in Renewable Energy in the Spanish Transport Sector: Use of Biofuels and the Adoption of the Electric Car. Atmosphere 2021, Vol. 12, Page 1603, 12(12), 1603. https://doi.org/10.3390/ATMOS12121603
]Search in Google Scholar
[
IDAE. (2019). SPAHOUSEC II: Análisis estadístico del consumo de gas natural en las viviendas principales con calefacción individual.
]Search in Google Scholar
[
IDAE. (2024). Consumo por usos residencial. https://informesweb.idae.es/consumo-usos-residencial/informe.php
]Search in Google Scholar
[
Karlsson, M., Alfredsson, E., & Westling, N. (2020). Climate policy co-benefits: a review. Climate Policy, 20(3), 292–316. https://doi.org/10.1080/14693062.2020.1724070
]Search in Google Scholar
[
McDuffie, E. E., Martin, R. V., Spadaro, J. V., Burnett, R., Smith, S. J., O’Rourke, P., Hammer, M. S., van Donkelaar, A., Bindle, L., Shah, V., Jaeglé, L., Luo, G., Yu, F., Adeniran, J. A., Lin, J., & Brauer, M. (2021). Source sector and fuel contributions to ambient PM2.5 and attributable mortality across multiple spatial scales. Nature Communications 2021 12:1, 12(1), 1–12. https://doi.org/10.1038/s41467-021-23853-y
]Search in Google Scholar
[
Milner, J., Turner, G., Ibbetson, A., Eustachio Colombo, P., Green, R., Dangour, A. D., Haines, A., & Wilkinson, P. (2023). Impact on mortality of pathways to net zero greenhouse gas emissions in England and Wales: a multisectoral modelling study. The Lancet Planetary Health, 7(2), e128–e136. https://doi.org/10.1016/S2542-5196(22)00310-2
]Search in Google Scholar
[
MITECO. (2020). Plan Nacional Integrado de Energía y Clima 2021-2030. Ministerio Para La Transición Ecológica y El Reto Demográfico, Gobierno de España, 25.
]Search in Google Scholar
[
MITECO. (2024). Plan Nacional Integrado de Energía y Clima ACTUALIZACIÓN 2023-2030. In Ministerio para la Transición Ecológica y el Reto Demográfico (MITECO), Spanish Government. https://www.miteco.gob.es/es/energia/estrategia-normativa/pniec-23-30.html
]Search in Google Scholar
[
MITERD. (2021). Sistema Español de Inventario de Emisiones: Metodologías de estimación de emisiones. https://www.miteco.gob.es/es/calidady-evaluacion-ambiental/temas/sistema-espanol-de-inventario-sei-/volumen2.html
]Search in Google Scholar
[
MITMA. (2020). Long-Term Strategy for Energy Rehabilitation in the Building Sector in Spain. https://www.mitma.gob.es/recursos_mfom/paginabasica/recursos/eresee_2020.pdf
]Search in Google Scholar
[
OECD. (2009). Co-Benefits of Climate Change Mitigation Policies (OECD Economics Department Working Papers, Vol. 693). https://doi.org/10.1787/224388684356
]Search in Google Scholar
[
Piccoli, A., Agresti, V., Bedogni, M., Lonati, G., & Pirovano, G. (2025). Modelling the air quality impacts of a zero-emission zone scenario in the city of Milan. Atmospheric Environment: X, 25, 100318. https://doi.org/10.1016/J.AEAOA.2025.100318
]Search in Google Scholar
[
Singh, P., & Namrata. (2025). The synergy between electric vehicle and electricity generation mix: A path to sustainable transportation. Energy Policy, 200. https://doi.org/10.1016/j.enpol.2025.114558
]Search in Google Scholar
[
Soret, A., Guevara, M., & Baldasano, J. M. (2014). The potential impacts of electric vehicles on air quality in the urban areas of Barcelona and Madrid (Spain). Atmospheric Environment, 99, 51–63. https://doi.org/10.1016/J.ATMOSENV.2014.09.048
]Search in Google Scholar
[
Spanish Government. (2019). Programa Nacional de Control de la Contaminación Atmosférica. https://www.miteco.gob.es/es/calidad-yevaluacion-ambiental/temas/atmosfera-y-calidad-del-aire/emisiones/pncca.html
]Search in Google Scholar
[
Vandyck, T., Keramidas, K., Tchung-Ming, S., Weitzel, M., & Van Dingenen, R. (2020). Quantifying air quality co-benefits of climate policy across sectors and regions. Climatic Change, 163(3), 1501–1517. https://doi.org/10.1007/S10584-020-02685-7/FIGURES/3
]Search in Google Scholar
[
Vivanco, M. G., Garrido, J. L., Martín, F., Lechón, Y., Gamarra, A. R., Sánchez, E., Theobald, M., Gil, V., & Santiago, J. L. (2021). Assessment of the effects of the Spanish National Air Pollution Control Programme on air quality. Atmosphere, 12.
]Search in Google Scholar
[
WHO. (2021). WHO global air quality guidelines, Particulate matter (PM2.5 and PM10), ozone, nitrogen dioxide, sulfur dioxide and carbon monoxide. https://www.who.int/publications/i/item/9789240034228
]Search in Google Scholar
[
Woo, S. H., Jang, H., Lee, S. B., & Lee, S. (2022). Comparison of total PM emissions emitted from electric and internal combustion engine vehicles: An experimental analysis. Science of the Total Environment, 842. https://doi.org/10.1016/j.scitotenv.2022.156961
]Search in Google Scholar
[
Zimakowska-Laskowska, M., & Laskowski, P. (2022). Emission from Internal Combustion Engines and Battery Electric Vehicles: Case Study for Poland. Atmosphere 2022, Vol. 13, Page 401, 13(3), 401. https://doi.org/10.3390/ATMOS13030401
]Search in Google Scholar