Please use this identifier to cite or link to this item: http://repositorio.lnec.pt:8080/jspui/handle/123456789/1006070
Title: Setting a City Strategy for Low Carbon Emissions: the role of electric vehicles, renewable energy and energy efficiency
Authors: Prata, J.
Arsénio, E.
Pontes, J.
Keywords: Electric vehicles;Renewable energy;European transport policy and planning;Carbon emissions;Climate change costs;Traffic calming measures;Electric bicycles;City of aveiro
Issue Date: 7-May-2014
Publisher: WIT Press, UK
Citation: Prata, J., Arsenio, E., Pontes, J. (2014). SETTING A CITY STRATEGY FOR LOW CARBON EMISSIONS: THE ROLE OF ELECTRIC VEHICLES, RENEWABLE ENERGY AND ENERGY EFFICIENCY. International Journal for Sustainable Development and Planning, ISSN: 1743-761X (in Press).
Abstract: One of the European policy objectives, as envisaged by the EC Transport White Paper, is to reduce Europe's dependence on imported oil and to cut greenhouse gas emission (GHG) from transport by 20% by 2030 and by 70% until 2050 (with respect to 2008 levels). For achieving this goal, the role of integrated energy and urban mobility systems are explored as part of a city’s strategy towards sustainability (2011-2020). For developing future scenarios, we used best practice foresight analysis methods, where the desirable future relates to European policy goals. In this research we adapt the extended metabolism model of a city developed by Newman (1999) and the material and energy flow accounting by Sheeri (2002) to assess the future role of electric vehicles, renewable energy use for mobility needs and energy efficiency increases for households living in the city of Aveiro, a medium-sized city of 78450 inhabitants in Portugal. The social costs of carbon related to alternative vehicle technologies (electric vehicles) are assessed, along with the integration of renewable energy. Several energy sources were considered: hydric, wind, solar (thermic and photovoltaic) and solid waste (incineration and biogas). A Life-Cycle Assessment (LCA) analysis was performed for this estimation, where a share of 56% of renewable energy was assumed to be achieved until 2020. It was found that each battery electric vehicle (BEV) and use of renewable energy has an external cost associated to climate change of 0.032 €/1000pkm in 2011 and 0.012 €/1000pkm in 2020. For the city of Aveiro, this represents an external cost of 7094 € in terms of CO2 related emissions in 2020. If all conventional fuelled vehicles were replaced by electric bicycles (EBs), an energy reduction of 98.1% and an emission reduction of 3893 kg CO2eq per year (avoided CO2eq external costs of 5.96M€) could be achieved.
URI: https://repositorio.lnec.pt/jspui/handle/123456789/1006070
Appears in Collections:DT/NPTS - Comunicações a congressos e artigos de revista

Files in This Item:
File Description SizeFormat 
RESUMO_SDP_JOURNAL.pdf15.13 kBAdobe PDFView/Open


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.