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Do Municipalities Have the Right Tools to Become Zero Carbon Emissions Cities? ACCENT, a Pan-European Decision-Support Tool to Take Refurbishment Decisions at City Scale Based on Buildings Energy Performance

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Carbon Footprint and the Industrial Life Cycle

Abstract

Buildings are responsible for almost 40% of energy consumption and over a third of CO2 emissions in the European Union. Most of the buildings that will exist in 2050 are already built. Renovation of the existing building stock is therefore crucial to meet long term energy and climate goals. The public sector is an important driver in supporting market transformation towards more efficient energy systems and buildings. To succeed in the energy transition, it is important not only to mobilize local administrations but also to engage other local stakeholders: citizens and service providers. But the development, financing and implementation of ambitious sustainable energy plans and measures should be based on reliable data, and here we find the big challenge. The aim of this paper is to present the main insights of ACCENT (Accompany Cities in Energy Strategy), a new decision-support tool for local administrations developed under a pan-European project upheld by Climate KIC. ACCENT is a GIS web-based platform that supports local administrations to monitor building energy performance and plan actions on the building stocks of the city. ACCENT faces global pan-European challenges, such as the need to share data regarding buildings energy consumption or the reluctance of some energy suppliers to offer information in this regard. Additionally, in some countries like Spain, specific local barriers are addressed such as the lack of connection between public bodies, the dispersion of available data, the need to make citizens aware of energy renovation, or the inaccessibility of citizens and technicians to energy data. ACCENT four main functionalities—mapping, planning setting up scenarios and connecting—allows the Local Administrations to take refurbishment decisions at city scale based on buildings energy performance.

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References

  • ACCENT project partnership. (n.d.). Retrieved from www.accentproject.com

  • Ascione, F., De Masi, R., de’ Rossi, F., Fistola, R., & Vanoli, G. (2012). Energy assessment in town planning: Urban energy maps. In M. Pacetti & C. Brebbia (Eds.), The sustainable city VII (pp. 205–216).

    Google Scholar 

  • Bhanot, J., & Jha, V. (2012). Moving towards tangible decision making tools for policy makers: Measuring and monitoring energy access provision. Energy Policy, 47, 64–70.

    Article  Google Scholar 

  • Bloem, H., Boguslawski, R., Borzacchiello, M., Piergiorgio, C., Kona, A., Martirano, G., et al. (2015). Location data for buildings related energy efficiency policies. Luxembourg: European Commission—Joint Research Centre.

    Google Scholar 

  • Covenant of Mayors for Climate & Energy. (2016). Retrieved from http://www.covenantofmayors.eu/index_en.html

  • European. (2011). Communication from the commission to the European parliament, The council, The European economic and social committee and the committee of the regions. A roadmap for moving to a competitive low carbon economy in 2050—COM (2011) 112 final. Brussels: European Comission.

    Google Scholar 

  • Eurostat. (2016). Energy, transport and environment indicators. Publications Office of the European Union.

    Google Scholar 

  • Ferreira, J., Duarte Pinheiro, M., & de Brito, J. (2013). Refurbishment decision support tools: A review from a Portuguese user’s perspective. Construction and Building Materials, 49, 425–447.

    Article  Google Scholar 

  • Genre, J.-L., Flourentzos, F., & Stockli, T. (2000). Building refurbishment: Habitat upgrading. Energy and Buildings, 31, 155–157.

    Article  Google Scholar 

  • Hailu, Y. G. (2012). Measuring and monitoring energy access: Decision-support tools for policymakers in Africa. Energy Policy, 47, 56–63.

    Article  Google Scholar 

  • International Energy Agency. (2013). Transition to sustainable buildings—Strategies and opportunities to 2050. International Energy Agency.

    Google Scholar 

  • Ireland, D. (2008). New tricks with old bricks. London: The Empty Homes Agency Ltd.

    Google Scholar 

  • Müller, M., & Siebenhüner, B. (2005). Policy instruments for sustainability-oriented organizational learning. Business Strategy and the Environment, 16(3), 233.

    Google Scholar 

  • Stylianidis, E., Karanikolas, N., & Kaimaris, D. (2012). A Gis for urban sustainability indicators in spatial planning. International Journal of Sustainable Development and Planning, 7(1), 1–13.

    Article  Google Scholar 

  • THINK. (2012). How to refurbish all buildings by 2050. Firenze: Publications Office.

    Google Scholar 

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Acknowledgements

The research presented in this paper is partially supported by funds from Climate-KIC, the Europe’s largest public-private innovation partnership focused on climate change. The authors gratefully acknowledge the support provided by LGI consulting, together with the consortium partners: ENGIE, NUMTECH, ESRI, ARXIT, EIVP, IVE, INNDEA, ASTER and SINERGIS, especially by: Solenne Tesseron, Amira Bentahar and Romain Petinot from ENGIE. The authors also acknowledge the support of Silvia Navarro during her stage at IVE.

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Correspondence to Carolina Mateo-Cecilia .

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Mateo-Cecilia, C., Valero-Escribano, V., Navarro-Escudero, M. (2017). Do Municipalities Have the Right Tools to Become Zero Carbon Emissions Cities? ACCENT, a Pan-European Decision-Support Tool to Take Refurbishment Decisions at City Scale Based on Buildings Energy Performance. In: Álvarez Fernández, R., Zubelzu, S., Martínez, R. (eds) Carbon Footprint and the Industrial Life Cycle. Green Energy and Technology. Springer, Cham. https://doi.org/10.1007/978-3-319-54984-2_9

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  • DOI: https://doi.org/10.1007/978-3-319-54984-2_9

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