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A “measurable” definition of sustainable development based on closed cycles of resources and its application to energy systems

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Abstract

Human society consumes resources that it is not able to reproduce. Human activities are still based on “open cycles,” starting from a condition of natural environmental balance and reaching an environmental imbalance. The challenging scope of scientific and technological research towards sustainability appears clear if it is based on this analysis: to find development systems based on “closed cycles” of resources. The challenging objective of realizing closed cycles leads to a definition of sustainability that indicates the path to sustainable development, as well as stating the general principle. It also provides a key to the qualitative measurement of sustainability. This means that the sustainability level of a system can be measured by measuring its capacity to avoid the consumption of resources. Zero consumption is a necessary condition for sustainability, and brings about as a side effect the highly desired “zero-waste” result. Materials entering the proposed endless scheme pass through the process of usefulness without losing their capacity to feed the system again after being used. Thus, the concept of “consumption” itself is replaced by one of “use” when resources are inserted into closed loops capable of feeding human development. The application of the closed cycle sustainability criterion particularly displays its feasibility, and a theoretical guiding role, in the energy sector. Energy vectors such as hydrogen and electricity enable the closure of the energy resources loop by effectively approaching the objective of “zero consumption” (and the side result of “zero waste”) through already demonstrated technological solutions.

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References

  • Braungart M, McDonough W, Bollinger A (2007) Cradle-to-cradle design: creating healthy emissions—a strategy for eco-effective product and system design. J Cleaner Prod 15:1337–1348

    Article  Google Scholar 

  • Cacciola G, Orecchini F, Vellone R (2003) Idrogeno—il sistema energetico, le celle a combustibile, gli usi finali. Ecoenergie, ISES Italia, Rome, Italy

  • European Commission (1997) White book—energy for the future, renewable energy sources. European Commission Publications, Brussels, Belgium

  • GEA-CIRPS Energy and Environment Research Group (2002) Hydrogen production classification. Research report. Inter-University Research Centre for Sustainable Development (CIRPS), Sapienza University of Rome, Rome, Italy

  • GEA-CIRPS Energy and Environment Research Group (2007) Design of the hydrogen pole of Civitavecchia. Research report. Inter-University Research Centre for Sustainable Development (CIRPS), Sapienza University of Rome, Rome, Italy

  • Intergovernmental Panel on Climate Change (2007) Fourth assessment report. IPCC, Geneva, Switzerland

  • International Energy Agency (2001) Toward a sustainable energy future. IEA Publications, Paris, France

  • International Energy Agency (2003) Electricity information 2003. IEA Publications, Paris, France

  • International Energy Agency (2006) Key world energy statistics—2006 edition. IEA Publications, Paris, France

  • Jones MD (2000) BP—hydrogen and lower carbon energy future. BP Hydrogen Technology Publications, London, UK

    Google Scholar 

  • Lonborg B (2001) The skeptical environmentalist: measuring the real state of the world. Cambridge University Press, Cambridge, UK

    Google Scholar 

  • Michaels PJ, Balling RC (2000) The satanic gases. Cato Institute, Washington, DC

    Google Scholar 

  • Orecchini F (2006) The era of energy vectors. Int J Hydrogen Energy 31:1951–1954

    Article  CAS  Google Scholar 

  • Orecchini F, Naso V (2003) La società no oil (No oil society). Orme Editori, Milan, Italy

    Google Scholar 

  • Orecchini F, Santiangeli A, Naso V (2003) Renewable hydrogen. In: Proceedings of HYPOTHESIS V, the 5th Hydrogen Power Theoretical and Engineering Solutions International Symposium, Porto Conte, Italy, September 2003

  • Orecchini F, Santiangeli A, Dell’Era A (2006) A technological solution for everywhere energy supply. J Fuel Cells Sci Technol 3:77–82

    Google Scholar 

  • Popper KR (1959) The logic of scientific discovery. Hutchinson, London, UK

    Google Scholar 

  • Tansley AG (1935) The use and abuse of vegetational concepts and terms. Ecology 16:284–307

    Article  Google Scholar 

  • United Nations World Commission on Environment and Development (1987) Brundtland report. United Nations Publications, New York

  • United Nations (1992) Report of the Rio de Janeiro United Nations Conference on Environment and Development. United Nations Publications, New York

  • United Nations (2002) Report of the World Summit on Sustainable Development. United Nations Publications, Johannesburg, South Africa

  • United States Department of Energy (2002) Proceedings of the 2002 Annual Hydrogen Program Review Meeting, Golden, Colorado, May 2002

  • World Energy Council, United Nations Development Programme, United Nations Department of Economic and Social Affairs (2000) World energy assessment—energy and the challenge of sustainability. New York

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Correspondence to Fabio Orecchini.

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Orecchini, F. A “measurable” definition of sustainable development based on closed cycles of resources and its application to energy systems. Sustain Sci 2, 245–252 (2007). https://doi.org/10.1007/s11625-007-0035-8

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  • DOI: https://doi.org/10.1007/s11625-007-0035-8

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