357
Acknowledgements The work presented draws extensively but not exclusively on White Paper 5
of project 296010 LOCIMAP. This coordination and support action was funded by the European
Commission under the Framework 7 programme; their support is appreciated. The partners in the
project are NEPIC, BASF, Link2Energy, ECSPP, INSEAD, Sembcorp, PTS, IVL Svenska,
Kokkola Industrial Park, Kalundborg Kommune, Parsons Brinckerhoff, Cemex, Terreal and
BFI. This report acknowledges the collaborative effort of all the above organisations.
Open Access This chapter is distributed under the terms of the Creative Commons Attribution
Noncommercial License, which permits any noncommercial use, distribution, and reproduction in
any medium, provided the original author(s) and source are credited.
References
A full list of White Papers from the project is available from www.locimap.eu : White Paper 1: The
challenges facing the European Industrial Parks ; White Paper 2: Industrial Symbioses ; White
Paper 3: Smart Future Industrial Parks ; White Paper 4: New Operational & Organisational
Structures ; White Paper 5: 10 Principles for a Low Carbon Future .
Bakshi, B. R., Gutowski, T. G., & Sekulic, D. P. (Eds.). (2011). Thermodynamics and the destruction of resources . New York: Cambridge University Press.
CEPI. (2011). Unfold the future: The Forest Fibre Industry, 2050 roadmap to a low carbon bioeconomy . Brussels: Confederation of European Paper Industries. Retrieved April 20, 2015,
from
http://www.unfoldthefuture.eu/uploads/CEPI-2050-Roadmap-to-a-low-carbon-bioeconomy.pdf
Cerame-Unie. (2012). Paving the way to 2050. The ceramic industry roadmap . Brussels: European
Ceramic Industry Association. Retrieved April 20, 2015, from http://www.ceramfed.co.uk/
uploads/popular_downloads/04ed1d019530eec2cfe5fd2f4e174a19bbd363ae.pdf
Chertow, M. R. (2007). “Uncovering” industrial symbiosis. Journal of Industrial Ecology, 11 (1),
11–30.
Defra. (2011). Commercial and industrial waste survey 2009 . London: Department of the
Environment, Food & Rural Affairs.
Defra. (2014). New methodology to estimate waste generation by the commercial and industrial
sector in England . London: Department of the Environment, Food & Rural Affairs.
EAA. (2012). An Aluminium roadmap to a low carbon Europe: Lightening the load . Brussels:
European Aluminium Association. Retrieved April 20, 2015, from http://www.alueurope.eu/
wp-content/uploads/2012/03/03_An-aluminium-2050-roadmap-to-a-low-carbon-Europe.pdf
EC. (2012). Europe 2012: Europe’s growth strategy . Brussels: European Commission.
Jensen, P. D., Basson, L., Hellawell, E. E., Bailey, M. R., & Leach, M. (2011). Quantifying ‘geographic proximity’: Experiences from the United Kingdom’s National Industrial Symbiosis
Programme. Resources, Conservation and Recycling . doi: 10.1016/j.resconrec.2011.02.003 .
Jensen, P. D., Basson, L., Hellawell, E. E., & Leach, M. (2012). ‘Habitat’ suitability index mapping
for industrial symbiosis planning. Journal of Industrial Ecology, 16 (1), 38–50.
Mirata, M. (2004). Experiences from early stages of a national industrial symbiosis programme in
the UK: Determinants and coordination challenges. Journal of Cleaner Production, 12 (8–10),
967–983.
OECD, IEA, & World Business Council for Sustainable Development. (2009). Cement technology
roadmap 2009: Carbon emissions reductions up to 2050 . Retrieved April 20, 2015, from http://
www.wbcsdcement.org/pdf/technology/WBCSD-IEA_Cement%20Roadmap.pdf
Wörtler, M., Schuler, F., Voigt, N., Schmidt, T., Dahlmann, P., Lüngen, H. B., & Ghenda, J.-T.
(2013). Steel’s contribution to a low-carbon Europe 2050: Technical and economic analysis of
the sector’s CO2 abatement potential . London: BCG. Retrieved April 20, 2015, from http://
www.bcg.de/documents/fi le154633.pdf
19 Quantifying the Potential of Industrial Symbiosis: The LOCIMAP Project…
Précédent

- 369/373

Suivant