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Bibliography Bibliography Abalofia, M., & Biggart, N. (1992). Competitive systems: A sociological view. In P. Ekins & M. Max-Neef (Eds.), Real-life economics. London: Routledge. Abel, T., & Stepp, J. R. (2003). A new ecosystems ecology for anthropology. Conservation Ecology, 7(3), 12. Abel, N., et al. (2006). Collapse and reorganization in social-ecological systems: Questions, some ideas, and policy implications. Ecology and Society, 11(1), 17. Ad-Hoc Working Group. (2010). Critical raw materials for the EU. Brussels: European Commission. Adamides, E. D., & Mouzakitis, Y. (2008). Industrial ecosystems as technological niches. Journal of Cleaner Production, 17, 172–180. Adamson, K. -A. (2009). Small stationary survey. Fuel Cell Today. Adamson, K.-A., & Callaghan, L. (2009). 2009 Niche Transport Survey.www.fuelcelltoday.com Adriaanse, A., et al. (1997). Resource flows. The material basis of industrial economies. Washington, DC: World Resource Institute. Agre, P., et al. (2011). The Stockholm memorandum. 3rd Nobel Laureate symposium on global sustainability, Stockholm. Aguilera Klink, F. (1992). Sobre la irrelevancia conceptual de la economía ambiental. Barcelona: III Jornadas de Economía Crítica. Aleklett, K. (2010). Peak coal in China. www.energybulletin.net/print/55011 Allenby, B. R. (1999). Industrial ecology: Policy framework and implementation. Upper Sadle River: Prentice Hall. Allenby, B. R. (2009). The industrial ecology of emerging technologies. Journal of Industrial Ecology, 13(2), 168–183. Allenby, B. R., & Rejeski, D. (2008). The industrial ecology of emerging technologies. Journal of Industrial Ecology, 12(3). Alterra, et al. (2007). Review of existing information on the interrelations between soil and climate change. Wageringen: Alterra, Wageringen UR. Altmann, M., et al. (2004). Potential for hydrogen as a fuel for transport in the long term (2020–2030). Brussels: European Commission. Altvater, E. (1993). The future of the market. London: Verso. Ambah, F. S. (2008). Saudies prepare for post-petroleum era. www.Philly.Com ANC (The National Academies). (2007). Coal: Research and development to support national energy policy. Washington, DC: The National Academies. Anderies, J. M., et al. (2004). A framework to analyze the robustness of social-ecological systems from institutional perspective. Ecology and Society, 9(1), 18. Anderson, R. (1998). Mid-course correction. Atlanta: The Perregrinzilla Press. R. Bermejo, Handbook for a Sustainable Economy, 369 DOI 10.1007/978-94-017-8981-3, © Springer ScienceCBusiness Media Dordrecht 2014 370 Bibliography Anderson, R. (2003). Ants, Galileo, and Gandhi. Sheffield: Greenleaf Publishing. Anderson, K., & Ohlson, T. (1999). Including environmental aspects in production development: A case study of tomato ketchup. Academy Press. Anderson, et al. (1995). Trading with the environment, ecological economics, institution and policy. London: Earthscan. Anderson, R, et al. (2010). Changing business cultures from within. State of the World 2010. www.worldwatch.org Anton, P., et al. (2001). The global technological revolution. Santa Monica: National Defence Research Institute. Appleyard, D. (2010). PV global outlook: A bright future shines on PV. Renewable Energy World. Arrow, K. et al. (1995, April 28). Economic growth, carrying capacity and the environment. Science. Ashton, W. S. (2009). The structure, function, and evolution of a regional industrial ecosystem. Journal of Cleaner Production, 13(2). Aunos. (1991). Actualidad forestal del País Vasco. Fundación BBV: Bilbao. Ayres, R. U. (1989). Industrial metabolism. In J. Ausubel & H. Sladovich (Eds.), Technology and environment. Washington, DC: National Academy Press. Ayres, R. U. (2002). On industrial ecosystems. In R. U. Ayres & L. W. Ayres (Eds.), Handbook of industrial ecology. London: Edward Elgar. Ayres, R. U. (2008). Sustainability economics: Where do we stand. Ecological Economics, 67, 281–310. Ayres, R. U., et al. (1992). Industry and waste. In J. I. C. Dooge et al. (Eds.), An agenda of science for environment and development into 21st century. Cambridge: Cambridge University Press. Baas, L. W. (2001). Developing an industrial ecosystem in Rotterdam. Journal of Clean Produc- tion, 4(2), 4–6. Baas, L. W., & Boons, F. A. (2004). An industrial ecology project in practice exploring the boundaries of decision-making levels in regional industrial ecosystems. Journal of Cleaner Production, 12, 1073–1085 Baines, T. S., et al. (2007). State-of-art in product-service systems. Proceedings of the IMechE (Vol. 221). Bakhtiari, A. M. S. (2006). After ‘Peak Oil’, ‘Peak Gas’ too. www.sfu.ca, March. Bardi, H., & Pagani, M. (2007). Peak minerals. http://europe.theoildrum.com/node/3086 Bardi, U., et al. (2011). Modelling EROEI and net energy in the explotation of non renewable resources. Ecological Modelling, 233(1), 54–58. Bartelmus, P. (2003). Accounting for sustainable development? Ecological Economics, 61, 613–616. Bartolomeo, M., et al. (2003). Eco-efficient producer services. What are they, how do they benefit customary and the environment and how likely are they to develop and be intensively utilised? Journal of Clean Production, 11, 829–837. Batson, A. (2009, March 24). China takes aim at dollar. The Wall Street Journal. Beder, S. (1996). Charging the earth. The promotion of price-based measures for pollution control. Ecological Economics, 16, 51–63. Behrendt, D., et al. (2003). Eco-service development. Sheffield: Greenleaf. Behrendt, D., et al. (2004). Environmental policy instruments for dematerialization of European Union. Vienne: SERI. Beherens, A. (2004). Environmental policy instruments for dematerialisation of the European union. Vienne: SERI. Benyus, J. (1997). Biomimicry. Innovation inspired by nature. New York: Quill/William Morrow. Benyus, J. (2006). Biomimicry. Innovation inspired by nature. Aspen Ideas Festival. Benyus, J. (2009). What do you mean by the term biomimicry?. www.biomimicryinstitute.org Benyus, J. (2010). The Biomimicry Institute. Inspiring, educating, and connecting biomimics throughout the world. Biomimicry Institute. www.biomimicryinstitute.org Bergin, P. R., & Glick, R. (2006). Global price dispersion: Are prices converging or diverging? (Working Paper 50). Federal Reserve Bank of San Francisco. Bibliography 371 Berman, A. (2010). ExxonMobil’s acquisition of XTO energy: The fallacy of the manufacturing model in shale plays. www.theoildrum.com/node/6229 Berman, A., & Pittinger, L. (2011). US shale gas: Less abundance, higher costs. www.theoildrum. com/node/8212 Bermejo, R. (2005). Análisis socioeconómico del Plan Estratégico de Infraestructuras y Trans- porte 2005–2020. Cuaderno Bakeaz 69. Bermejo, R. (2008). Un futuro son petróleo. Colapsos y transformaciones socioeconómicas. Madrid: CIP y Catarata. Bermejo, R. (2009). La política de transporte española ante el fin de la era de los combustibles fósiles. In S. Álvarez Cantalapiedra & O. Carpintero (Eds.), Economía ecológica: Reflexiones y perspectivas. Madrid: Ediciones Ciencias Sociales. Bermejo, R. (2011). Manual para una economía sostenible. Madrid: Catarata. Bermejo, R., Arto, I., & Hoyos, D. (2010). The concept of sustainable development and its manipulation. In K. Unceta & A. Arrinda (Eds.), Development cooperation. Facing the challenges of global change, current research (Vol. 3). University of Nevada, Reno. Berthoud, G. (1993). Market. In W. Sachs (Ed.), The development dictionary. London: Zed Books. BEUC (European Consumer’s Organization). (2002). Labels and green claims. Bruxelles: BEUC. BEUC (European Consumer’s Organization). (2003). BEUC memorandum for the Irish presi- dency. Bruxelles: BEUC. BEUC (European Consumer’s Organization). (2008a). A strong, transparent and proactive phar- macovigilance system. Bruxelles: BEUC. BEUC (European Consumer’s Organization). (2008b). Input to the commission consultation document on the revision of the EU energy labelling scheme. Brussels: BEUC. BEUC (European Consumer’s Organization). (2008c). Pharmaceutical sector inquiry. Brussels: BEUC. BEUC (European Consumer’s Organization). (2012, February 21). European chemicals safety net flawed Commission study reveals. Bina, C. (2009). The geopolitics of energy in the epoch of globalization. Workshop International Competition, Rivalry and Conflict. BIS (Bank for International Settlements). (2007). 77º Annual report.Basle:BIS. Blau, J. (2010). Stakeholders team up to expand Europe’s super-grid. Renewable Energy World. Bleischwitz, R., & Bringezu, S. (2007). Global resources management. Policy Paper, 27. BNEF (Bloomberg New Energy Finance). (2010). Fossil fuel subsidies outpace renewables.BNEF. Bloomberg New Energy Finance (BNEF). (2011). Onshore wind energy to reach grid parity with fossil fuels by 2016.BNEF. Boons, F., & Roome, N. (2001). Industrial ecology as a cultural phenomenon. Journal of Industrial Ecology, 4(2). Boons, F., & Spekkink, W. (2012). Levels of institutional capacity and actor expectations about industrial symbiosis. Journal of Industrial Ecology, 16(1), 61–69. Boscá, J. E., et al. (2004). Efectos macroeconómicos de las inversiones en infraestructuras públicas. Jornadas sobre el PEIT. Madrid. Boston University Student Research. (2011). Car sharing industry. CFA Institute Research Challenge. Braclay, C. (2012). Food miles, Science and Environment Section. House of Commons Librery. Bradley, R. L. (2007). Resourceship: An Austrian theory of minerals resources. Review of Austrian Economy, 20, 63–90. Brand, F. S., & Jax, K. (2007). Focusing the meaning(s) of resilience: Resilience
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