Thư viện tri thức trực tuyến
Kho tài liệu với 50,000+ tài liệu học thuật
© 2023 Siêu thị PDF - Kho tài liệu học thuật hàng đầu Việt Nam

Biofuels, Solar and Wind as Renewable Energy Systems_Benefits and Risks Episode 1 Part 10 pot
Nội dung xem thử
Mô tả chi tiết
8 Complex Systems Thinking and Renewable Energy Systems 211
Giampietro, M., Mayumi, K., and Munda, G. 2006a. Integrated assessment and energy analysis:
Quality assurance in multi-criteria analysis of sustainability. Energy 31(1), 59–86.
Giampietro, M., Mayumi, K., and Ramos-Martin, J. 2006c. Can biofuels replace fossil energy fuels? A multi-scale integrated analysis based on the concept of societal and ecosystem metabolism: Part 1. International Journal of Transdisciplinary Research 1(1), 51–87
[accessibile sul sito http://www.ijtr.org/]
Giampietro, M., Mayumi, K., and Ramos-Martin, J. 2007. How serious is the addiction to oil of developed society? A multi-scale integrated analysis based on the concept of societal and ecosystem metabolism International Journal of Transdisciplinary Research 2(1), 42–92 – available
on line at: www.ijtr.org
Giampietro, M., Pastore, G., and Ulgiati, S. 1998. Italian agriculture and concepts of sustainability. In: E. Ortega and P. Safonov (Eds.), Introduction to Ecological Planning Using Emergy
Analysis with Brazilian Case Studies. LEIA-FEA Unicamp, Campinas, Brazil.
Giampietro, M. and Pimentel, D. 1990. Assessment of the energetics of human labor. Agriculture,
Ecosystems and Environment 32, 257–272.
Giampietro, M. and Ramos-Martin, J. 2005. Multi-scale integrated analysis of sustainability: a
methodological tool to improve the quality of the narratives. International Journal of Global
Environmental Issues 5(3/4), 119–141.
Giampietro, M. and Ulgiati, S. 2005. An integrated assessment of large-scale biofuel production.
Critical Review in Plant Sciences 24, 1–20.
Giampietro, M., Ulgiati, S., and Pimentel, D. 1997b. Feasibility of large-scale biofuel production:
Does an enlargement of scale change the picture? BioScience 47(9), 587–600.
Gilliland, M.W., Ed., 1978. Energy Analysis: A New Policy Tool. Westview Press, Boulder, CO.
Hagens, N., Costanza, R., Mulder, K. 2006. Letters – Energy Returns on Ethanol Production. Science 312, 1746.
Hall, C.A.S.; Cleveland, C.J.; and Kaufman, R. 1986. Energy and Resource Quality. New York:
John Wiley & Sons.
Herendeen, R.A. 1981. Energy intensities in economic and ecological systems. Journal of Theoretical Biology 91, 607–620.
Herendeen, R.A. 1998. Ecological numeracy: quantitative analysis of environmental issues John
Wiley & Sons, New York.
Hudson, J.C., 1975. Sugarcane: its energy relationship with fossil fuel. Span 18, 12–14.
IFIAS (International Federation of Institutes for Advanced Study), 1974. Energy Analysis. International Federation of Institutes for Advanced Study, Workshop on Methodology and Conventions – Report No. 6. IFIAS, Stockholm, p. 89.
Jevons, W.S., [1865] 1965. The Coal Question: an inquiry concerning the progress of the nation,
and the probable exhaustion of our coal-mines. A. W. Flux (Ed.), 3rd ed. rev. Augustus M.
Kelley, New York.
Jorgenson, D.W. 1988. Productivity and economic growth in Japan and the United States. The
American Economic Review 78(2), 217–222.
Kaufmann, R.K. 1992. A biophysical analysis of the energy/real GDP ratio: implications for substitution and technical change. Ecological Economics 6, 35–56.
Kaufmann, R.K. 2006. Letters – energy returns on ethanol production. Science 312, 1747.
Kay, J. 2000. ‘Ecosystems as self-organizing holarchic open systems: narratives and the second
law of thermodynamics’, In: S.E. Jorgensen and F. Muller (Eds.), Handbook of Ecosystems
Theories and Management, London: Lewis Publishers, pp. 135–160
Leach, G. 1976. Energy and Food Production. I.P.C. Science and Technology Press limited,
Surrey, U.K.
Lotka, A.J. 1922. Contribution to the energetics of evolution. Proceedings Natural Academy Science 8, 147–154.
Lotka, A.J. 1956. Elements of Mathematical Biology. Dover Publications, New York.
Martinez-Alier, J. 1987. Ecological Economics. Energy, Environment and Society. Blackwell,
Oxford, U.K.
212 M. Giampietro, K. Mayumi
Matthews, E., Amann, C., Fischer-Kowalski, M., Bringezu, S., Huttler, W., Kleijn, R., ¨
Moriguchi, Y., Ottke, C., Rodenburg, E., Rogich, D., Schandl, H., Schutz, H., van der Voet, E., ¨
and Weisz, H. 2000. The Weight of Nations: Material Outflows from Industrial Economies.
World Resources Institute, Washington, DC.
Mayumi, K. 1991. Temporary emancipation from land: from the industrial revolution to the present
time. Ecological Economics 4, 35–56.
Mayumi, K. 2001. The Origin of Ecological Economics: The Bioeconomics of Georgescu-Roegen.
Routledge, London, UK.
Mayumi, K. and Giampietro, M. 2004. Entropy in ecological economics. In: J. Proops and
P. Safonov (Eds.), Modeling in Ecological Economics. Edward Elgar, Cheltenham (UK),
pp. 80–101.
Mayumi, K. and Giampietro M. 2006. The epistemological challenge of self-modifying systems: Governance and sustainability in the post-normal science era Ecological Economics 57,
382–399.
Morowitz, H.J. 1979. Energy Flow in Biology. Ox Bow Press, Woodbridge, CT.
Norman, M.J.T. 1978. Energy inputs and outputs of subsistence cropping systems in the tropics.
Agro-Ecosystems 4, 355–366.
Odum, H.T. 1971. Environment, Power, and Society. Wiley-Interscience, New York.
Odum, H.T. 1983. Systems Ecology. John Wiley, New York.
Odum, H.T. 1996. Environmental Accounting: Emergy and Environmental Decision Making. John
Wiley, New York.
Odum, H.T. and Pinkerton, R.C. 1955. Time’s speed regulator: the optimum efficiency for maximum power output in physical and biological systems. American Scientist 43, 331–343.
Ostwald, W. 1907. The modern theory of energetics. The Monist 17, 481–515.
Patzek, T. 2004. Thermodynamics of the corn-ethanol biofuel cycle. Critical Review Plant Sciences
23(6), 519–567.
Patzek, T.W. 2006. Letters – Energy Returns on Ethanol Production. Science 312, 1747.
Patzek, T.W. and Pimentel, D. 2005. Thermodynamics of Energy Production from Biomass. Critical Reviews in Plant Sciences 24(5–6), 327–364.
Pimentel, D., Patzek T., and Cecil G. 2007. Ethanol production: Energy, Economic, and Environmental losses. Reviews of Environmental Contamination & Toxicology 189, 25–41.
Pimentel, D. and Pimentel, M. 1979. Food Energy and Society. Edward Arnold Ltd., London.
Pimentel, D. and Pimentel, M. 1996. Food, Energy and Society (revised edition) University Press
of Colorado, Niwot Co.
Podolinsky, S. 1883. Menschliche arbeit und einheit der kraft. Die Neue Zeit (Stuttgart, IHW
Dietz), p. 413. (In German).
Prigogine, I. 1978. From Being to Becoming. W.H. Freeman and Company, San Francisco, CA.
Prigogine, I. and Stengers, I. 1981. Order out of Chaos. Bantam Books, New York.
Ramos-Martin, J., Giampietro, M., and Mayumi, K. 2007. On China’s exosomatic energy
metabolism: an application of multi-scale integrated analysis of societal metabolism (MSIASM). Ecological Economics 63(1), 174–191.
Revelle, R., 1976. Energy use in rural India. Science 192, 969–975.
Rosen, R. 1958. The representation of biological systems from the standpoint of the theory of
categories. Bullettin of Mathematical Biophysics 20, 317–341.
Schneider, E.D. and Kay, J.J. 1994. “Life as a manifestation of the second law of thermodynamics”.
Mathematical and Computer Modelling 19, 25–48
Schneider, E.D. and Kay, J.J. 1995. “Order from Disorder: The Thermodynamics of Complexity in
Biology”, In: Michael P. Murphy, Luke A.J. O’Neill (Eds.), What is Life:The Next Fifty Years.
Reflections on the Future of Biology, Cambridge University Press, Cambridge, pp. 161–172.
Schrodinger, E. 1967. ¨ What is Life & Mind and Matter. Cambridge University Press, London.
Slesser, M. 1978. Energy in the Economy. MacMillan, London.
Slesser, M. and King, J. 2003. Not by Money Alone: Economics as Nature Intended Jon Carpenter
Publishing, Charlbury, Oxon.