Utilize este identificador para referenciar este registo: http://hdl.handle.net/10362/142522
Título: Electric mobility in portugal
Autor: Ala, Guido
Colak, Ilhami
Di Filippo, Gabriella
Miceli, Rosario
Romano, Pietro
Silva, Carla
Valtchev, Stanimir
Viola, Fabio
Palavras-chave: Electric mobility
Forecasting for FCEV
Fuel cell vehicles
Hydrogen
Plug‐in hybrid
Predictive model
Socio‐technical transition
Renewable Energy, Sustainability and the Environment
Fuel Technology
Energy Engineering and Power Technology
Energy (miscellaneous)
Control and Optimization
Electrical and Electronic Engineering
SDG 7 - Affordable and Clean Energy
SDG 11 - Sustainable Cities and Communities
Data: 1-Dez-2021
Citação: Ala, G., Colak, I., Di Filippo, G., Miceli, R., Romano, P., Silva, C., Valtchev, S., & Viola, F. (2021). Electric mobility in portugal: Current situation and forecasts for fuel cell vehicles. Energies, 14(23), Article 7945. https://doi.org/10.3390/en14237945
Resumo: In recent years, the growing concern for air quality has led to the development of sustainable vehicles to replace conventional internal combustion engine (ICE) vehicles. Currently, the most widespread technology in Europe and Portugal is that of Battery Electric Vehicles (BEV) or plug‐in HEV (PHEV) electric cars, but hydrogen‐based transport has also shown significant growth in the commercialization of Fuel Cell Electric Vehicles (FCEV) and in the development of new infrastructural schemes. In the current panorama of EV, particular attention should be paid to hydrogen technology, i.e., FCEVs, which is potentially a valid alternative to BEVs and can also be hybrid (FCHEV) and plug‐in hybrid (FCPHEV). Several sources cited show a positive trend of hydrogen in the transport sector, identifying a growing trend in the expansion of hydrogen infrastructure, although at this time, it is still at an early stage of development. At the moment, the cost of building the infrastructure is still high, but on the basis of medium/long‐term scenarios it is clear that investments in hydrogen refueling stations will be profitable if the number of Fuel Cell vehicles increases. Conversely, the Fuel Cell vehicle market is hampered if there is no adequate infrastructure for hydrogen development. The opportunity to use Fuel Cells to store electrical energy is quite fascinating and bypasses some obstacles encountered with BEVs. The advantages are clear, since the charging times are reduced, compared to charging from an electric charging post, and the long‐distance voyage is made easier, as the autonomy is much larger, i.e., the psychosociological anxiety is avoided. Therefore, the first part of the paper provides an overview of the current state of electric mobility in Portugal and the strategies adopted by the country. This is necessary to have a clear vision of how a new technology is accepted by the population and develops on the territory, that is the propensity of citizens to technological change. Subsequently, using current data on EV development and comparing information from recent years, this work aims to investigate the future prospects of FCEVs in Portugal by adopting a dynamic model called SERA (Scenario Evaluation and Regionalization Analysis), with which it is possible to identify the Portuguese districts and cities where an FC charging infrastructure is expected to be most beneficial. From the results obtained, the districts of Lisbon, Porto and Aveiro seem to be the most interested in adopting FC technology. This analysis aims to ensure a measured view of the credible development of this market segment.
Descrição: UIDB/50019/2021
Peer review: yes
URI: http://hdl.handle.net/10362/142522
DOI: https://doi.org/10.3390/en14237945
ISSN: 1996-1073
Aparece nas colecções:FCT: DEE - Artigos em revista internacional com arbitragem científica

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