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Articles

Energy Efficiency in Agrarian Systems From an Agroecological Perspective

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Pages 924-952 | Received 26 Dec 2014, Accepted 18 May 2015, Published online: 20 Jul 2015

REFERENCES

  • Adams, R. N. 1975. Energy and structure. A theory of social power. Austin, TX: University of Texas Press.
  • Adams, R. N. 1988. The eight day: Social evolution as the self-organization of energy. Austin, TX: University of Texas Press.
  • Altieri, M. A. 1989. Agroecology: The science of sustainable agriculture. Boulder, CO: Westview Press.
  • Ayres, R. U. 2007. On the practical limits to substitution. Ecological Economics: 61:115–28. DOI: 10.1016/j.ecolecon.2006.02.011
  • Ayres, R. U., and U. E. Simonis. 1994. Industrial metabolism: Restructuring for sustainable development. Tokyo: United Nations University Press.
  • Badgley, C., J. Moghtader, E. Quintero, E. Zakem, M. J. Chappell, K. Avilés-Vázquez, A. Samulon, and I. Perfecto. 2007. Organic agriculture and the global food supply. Renewable Agriculture and Food Systems 22(2):86–108.
  • Bulatkin, G. A. 2012. Analysis of energy flows in agro-ecosystems. Herald of the Russian Academy of Sciences 82(4):326–34. DOI: 10.1134/S1019331612040089
  • Burkhard, B., B. D. Fath, and F. Müller. 2011. Adapting the adaptive cycle: Hypotheseson the development of ecosystem properties and services. Ecological Modelling 222:2878–90.
  • Carpintero, O., and J. M. Naredo. 2006. Sobre la evolución de los balances energéticos de la agricultura española, 1950–2000. Historia Agraria 40:531–54.
  • Cleveland, C. J. 1992. Energy quality and energy surplus in the extraction of fossil fuels in the U.S. Ecological Economics 6:139–62. DOI: 10.1016/0921-8009(92)90010-P.
  • Cleveland, C. J., R. Costanza, C. A. S. Hall, and R. Kaufmann. 1984. Energy and the U.S. economy: A biophysical perspective. Science 225(4665):890–97. DOI: 10.1126/science.225.4665.890
  • Consejería de Medio Ambiente y Ordenación del Territorio de Andalucía (CMAOT) 2014. Biomasa Forestal de Andalucía. http://www.juntadeandalucia.es/medioambiente/bioforan/plantillas/biomasa/index.html?especie=halepensis (accessed October 13, 2014).
  • Cornell, S. 2010. Valuing ecosystem benefits in a dynamic world. Climate Research 45:261–72. DOI: 10.3354/cr00843
  • Costanza, R. 2012. Ecosystem health and ecological engineering. Ecological Engineering 45:24–29. DOI: 10.1016/j.ecoleng.2012.03.023.
  • de Groot, R., R. Alkemade, L. Braat, L. Hein, and L. Willemen. 2010. Challenges in inte-grating the concept of ecosystem services and values in landscape planning, management and decision making. Ecological Complexity 7:260–72. DOI: 10.1016/j.ecocom.2009.10.006
  • De Groot, R., J. Van Der Perk, A. Chiesura, and A. Van Vliet. 2003. Importance and threatas determining factors for criticality of natural capital. Ecological Economics 44:187–204. DOI: 10.1016/S0921-8009(02)00273-2
  • Ekins, P., S. Simon, L. Deutsch, C. Folke, and R. De Groot. 2003. A framework for thepractical application of the concepts of critical natural capital and strong sus-tainability. Ecological Economics 44:165–85. DOI: 10.1016/S0921-8009(02)00272-0
  • Fath, B. D., S. E. Jørgensen, B. C. Patten, and M. Straškraba. 2004. Ecosystem growth and development. Biosystems 77:213–28. DOI: 10.1016/j.biosystems.2004.06.001
  • Fischer-Kowalski, M. 1998. Society’s metabolism. The intellectual history of material flow analysis, part I, 1860 – 1970. Journal of Industrial Ecology 2(1):61–78. DOI: 10.1162/jiec.1998.2.1.61
  • Fischer-Kowalski, M. 2003. On the history of industrial metabolism. In Perspectives on Industrial Ecology, eds. D. Bourg, and S. Erkman. Sheffield, UK: Greenleaf.
  • Fischer-Kowalski, M., and W. Hüttler. 1998. Society’s metabolism: The intellectual history of materials flow nnalysis, Part II, 1970–1998. Journal of Industrial Ecology 2:107–36. DOI: 10.1162/jiec.1998.2.4.107
  • Fluck, R. C., and C. D. Baird. 1980. Agricultural Energetics. Westport, CT: AVI.
  • Folke, C., Å. Jansson, J. Rockström, P. Olsson, S. R. Carpenter, F. S. Chapin, A.-S. Crépin, G. Daily, K. Danell, J. Ebbesson, T. Elmqvist, V. Galaz, F. Moberg, M. Nilsson, H. Österblom, E. Ostrom, Å. Persson, G. Peterson, S. Polasky, W. Steffen, B. Walker, and F. Westley. 2011. Reconnecting to the biosphere. Ambio 40:719–38. DOI: 10.1007/s13280-011-0184-y
  • Georgescu-Roegen, N. 1971. The entropy law and the economic process. Cambridge, MA: Harvard University Press.
  • Giampietro, M., T. F. H. Allen, and K. Mayumi. 2006. The epistemological predicament associated with purposive quantitative analysis. Ecological Complexity 3:307–27. DOI: 10.1016/j.ecocom.2007.02.005
  • Giampietro, M., K. Mayumi, and J. Ramos-Martin. 2008. Multi-Scale Integrated Analysis of Societal and Ecosystem Metabolism (MUSIASEM): An outline of rationale and theory. Document de Treball. Departament d’Economia Aplicada, Universidad Autónoma de Barcelona (Spain). http://www.recercat.cat/handle/2072/5232?show=full (accessed February 12, 2013).
  • Giampietro, M., K. Mayumi, and A. H. Sorman. 2010. Assessing the quality of alternative energy sources: Energy return on the investment (EROI), the metabolic pattern of societies and energy statistics. Working Papers on Environmental Sciences. Barcelona: ICTA.
  • Giampietro, M., K. Mayumi, and A. H. Sorman. 2012. The metabolic pattern of societies: Where economists fall short. Abingdon, UK: Routledge.
  • Gliessman, S. R. 1998. Agroecology: Ecological processes in sustainable agriculture. Chelsea, MI: Ann Arbor Press.
  • González de Molina, M., and G. I. Guzmán. 2006. Tras los pasos de la insustentabilidad. Agricultura y Medio ambiente en perspectiva histórica (siglos XVIII–XX). Barcelona: Icaria.
  • González de Molina, M., and V. Toledo. 2011. Metabolismos, naturaleza e historia. Una teoría de las transformaciones socio-ecológicas. Barcelona: Icaria.
  • González de Molina, M., and V. T. Toledo. 2014. Social metabolisms: A theory on socio-ecological transformations. New York: Springer.
  • Gupta, A. K., and C. A. S. Hall. 2011. A review of the past and current state of EROI data. Sustainability 3:1796–809. DOI: 10.3390/su3101796
  • Guzmán, G. I., E. Aguilera, D. Soto, A. Cid, J. Infante, R. García Ruiz, A. Herrera, I. Villa, and M. González de Molina. 2014. Methodology and conversion factors to estimate the net primary productivity of historical and contemporary agroecosystems (I). Sociedad Española de Historia Agraria-Documentos de Trabajo 1406. www.seha.info (accessed April 5, 2014).
  • Guzmán, G. I., and A. M. Alonso. 2008. A comparison of energy use in conventional and organic olive oil production in Spain. Agricultural Systems 98:167–76. DOI: 10.1016/j.agsy.2008.06.004
  • Guzmán, G. I., and M. González de Molina. 2009. Preindustrial agriculture versus organic agriculture. The land cost of sustainability. Land Use Policy 26:502–10. DOI: 10.1016/j.landusepol.2008.07.004
  • Guzmán, G. I., M. González de Molina, and A. M. Alonso. 2011. The land cost of agrarian sustainability. An assessment. Land Use Policy 28:825–35. DOI: 10.1016/j.landusepol.2011.01.010
  • Guzmán, G. I., M. González de Molina, and E. Sevilla, eds. Introducción a la Agroecología como desarrollo rural sostenible. Madrid, Spain: Mundi-Prensa.
  • Haberl, H., K. H. Erb, F. Krausmann, V. Gaube, A. Bondeau, C. Plutzar, S. Gingrich, W. Lucht, and M. Fischer-Kowalski. 2007. Quantifying and mapping the human appropriation of net primary production in earth’s terrestrial ecosystems. PNAS 104(31):12942–47.
  • Hall, C. A. S. 2011. Introduction to special issue on new studies in EROI (Energy Return on Investment). Sustainability 3:1773–77. DOI: 10.3390/su3101773
  • Hall, C. A. S., S. Balogh, and D. J. Murphy. 2009. What is the minimum EROI that a sustainable society must have? Energies 2:25–47. DOI: 10.3390/en20100025
  • Hall, C. A. S., C. J. Cleveland, and R. Kaufmann. 1986. Resource quality: The ecology of the economic process. New York: Wiley-Interscience.
  • Hall, C. A. S., R. Powers, and W. Schoenberg. 2008. Peak oil, EROI, investments and the economy in an uncertain future. In Biofuels, solar and wind as renewable energy systems, ed., D. Pimentel, 109–32. New York: Springer.
  • Häyhäa, T., and P. P. Franzese. 2014. Ecosystem services assessment: A review under an ecological-economic and systems perspective. Ecological Modelling 289:124–32. DOI: 10.1016/j.ecolmodel.2014.07.002
  • IPCC. 2006. Guidelines for National Greenhouse Gas Inventories. Volume 4: Agriculture, Forestry and Other Land Use. http://www.ipcc-nggip.iges.or.jp/public/2006gl/vol4.html (accessed March 3, 2014).
  • Jørgensen, S. E., and B. D. Fath. 2004. Application of thermodynamic principles in ecology. Ecological Complexity 1:267–80. DOI: 10.1016/j.ecocom.2004.07.001
  • Jørgensen, S. E., B. D. Fath, S. Bastianoni, J. C. Marques, F. Müller, S. N. Nielsen, E. Tiezzi, and R. E. Ulanowicz. 2007. A new ecology: Systems perspective. The Netherlands: Elsevier.
  • Lacasta, R., and R. Meco. 2011. La rotación en cultivos herbáceos de secano. In Agricultura ecológica en secano, eds. R. Meco Murillo, C. Lacasta Dutoit, and M.M. Moreno Valencia. Madrid: Ministerio de Medio Ambiente, Rural y Marino and Mundi-Prensa.
  • Lassaletta, L., G. Billen, B. Grizzetti, J. Garnier, A. M. Leach, and J. N. Galloway. 2014. Food and feed trade as a driver in the global nitrogen cycle: 50-year trends. Biogeochemistry 118:225–41. DOI: 10.1007/s10533-013-9923-4
  • Martínez Alier, J. 2011. The EROI of agriculture and its use by the via campesina. The Journal of Peasant Studies 38 (1):145–60. DOI: 10.1080/03066150.2010.538582
  • Maturana, H. R., and F. J. Varela. 1980. Autopoiesis and cognition. The realization of the living. Dordrecht, The Netherlands: D. Reidel.
  • Millennium Ecosystem Assessment. 2005. Ecosystems and Human Well-being: Synthesis.Washington, DC: Island Press, World Resources Institute.
  • Mulder, K., and N. J. Hagens. 2008. Energy return on investment: Toward a consistent framework. AMBIO: A Journal of the Human Environment 37 (2):74–79. DOI: 10.1579/0044-7447(2008)37[74:EROITA]2.0.CO;2
  • Murphy, D. J., C. A. Hall, M. Dale, and C. Cleveland. 2011. Order from Chaos: A preliminary protocol for determining the EROI of fuels. Sustainability 3:1888–907. DOI: 10.3390/su3101888
  • Pattee, H. H. 1995. Evolving self-reference: Matter, symbols, ands emantic closure. Commun. Cogn. Artif. Intell. 12:9–28.
  • Perfecto, I., and J. Vandermeer. 2010. The agroecological matrix as alternative to the land-sparing/agriculture intensification model. Proceedings of the National Academy of Sciences of the United States of America 107:5786–91. DOI: 10.1073/pnas.0905455107
  • Pervanchon, F., C. Bockstaller, and P. Girardin. 2002. Assessment of energy use in arable farming systems by means of an agro-ecological indicator: The energy indicator. Agricultural Systems 72:149–72. DOI: 10.1016/S0308-521X(01)00073-7
  • Phalan, B., M. Onial, A. Balmford, and R. E. Green. 2011. Reconciling food production and biodiversity conservation: Land sharing and land sparing compared. Science 333:1289–91. DOI: 10.1126/science.1208742
  • Phelps, J., L. Roman Carrasco, E. L. Webb, L. P. Koh, and U. Pascual. 2013. Agricultural intensification escalates future conservation costs. Proceedings of the National Academy of Sciences 110 (19):7601–06. DOI: 10.1073/pnas.1220070110
  • Pracha, A. S., and T. A. Volk. 2011. An Edible Energy Return on Investment (EEROI) analysis of wheat and rice in Pakistan. Sustainability 3:2358–91. DOI: 10.3390/su3122358.
  • Prigogine, I. 1955. Thermodynamics of irreversible processes. Springfield, IL: Charles C. Thomas.
  • Prigogine, I. 1978. Time structure and fluctuations. Science 201:777–85. DOI: 10.1126/science.201.4358.777
  • Robles, A. B. 2008. En el conjunto de las Sierras Béticas: pastos, producción, diversidad y cambio global. In Pastos, clave en la gestión de los territorios: Integrando disciplinas, ed. P. Fernández Rebollo, 31–51. Sevilla, Spain: Junta de Andalucía.
  • Rosen, R. 1985. Anticipatory systems: Philosophical, mathematical and methodological foundations. New York: Pergamon Press.
  • Schandl, H., C. Grünbühel, H. Haberl, and H. Weisz. 2002. Handbook of physical accounting measuring. Bio-physical dimensions of socio-economic activities (Social Ecology Working Paper 73). MFA-EFA-HANPP.
  • Scheidel, A., and A. Sorman. 2012. Energy transitions and the global land rush: Ultimate drivers and persistent consequences. Global Environmental Change 22 (3):588–95. DOI: 10.1016/j.gloenvcha.2011.12.005
  • Schrödinger, E. 1984. ¿Qué es la vida? Barcelona: Tusquets.
  • Schröter, M., D. N. Barton, R. P. Remme, and L. Hein. 2014. Accounting for capacity and flow of ecosystem services: A conceptual model and a case study for Telemark, Norway. Ecological Indicators 36:539–51. DOI: 10.1016/j.ecolind.2013.09.018
  • Sieferle, R. P. 2011. Cultural evolution and social metabolism. GeografiskaAnnaler: Series B, Human Geography 93(4):315–24.
  • Smil, V. 2013. Harvesting the biosphere. What we have taken from nature. Cambridge, MA: The MIT Press.
  • Swannack, T. M., and W. E. Grant. 2008. Systems ecology. In Encyclopedia of Ecology, eds. S.E. Jorgensen, and B. Fath, 3477–81Oxford, UK: Elsevier.
  • Tello, E., E. Galán, G. Cunfer, G. I. Guzmán, M. González de Molina, F. Krausmann, S. Gingrich, V. Sacristán, I. Marco, R. Padró, and D. Moreno-Delgado. 2015. A proposal for a workable analysis of Energy Return On Investment (EROI) in agroecosystems. Part I: Analytical approach. Social Ecology Working Paper 156. IFF-Social Ecology. https://www.uni-klu.ac.at/socec/inhalt/1818.htm (accessed January 15, 2015).
  • Tittonell, P., E. Scopel, N. Andrieu, H. Posthumus, P. Mapfumo, M. Corbeels, G. E. Van Halsema, R. Lahmar, S. Lugandu, J. Rakotoarisoa, F. Mtambanengwe, B. Pound, R. Chikowo, K. Naudin, B. Triomphe, and S. Mkomwa. 2012. Agroecology-based aggradation-conservation agriculture (ABACO): Targeting innovations to combat soil degradation and food insecurity in semi-arid Africa. Field Crops Research 132:168–74. DOI: 10.1016/j.fcr.2011.12.011
  • Toledo, V. M. 1993. La racionalidad ecológica de la producción campesina. In Ecología, campesinado e Historia, eds. E. Sevilla, and M. González De Molina, 197–218. Madrid, Spain: La Piqueta.
  • Tscharntke, T., Y. Clough, T. C. Wanger, L. Jackson, I. Motzke, I. Perfecto, J. Vandermeer, and A. Whitbread. 2012. Global food security, biodiversity conservation and the future of agricultural intensification. Biological Conservation 151:53–59. DOI: 10.1016/j.biocon.2012.01.068
  • Ulanowicz, R. E. 2004. On the nature of ecodynamics. Ecological Complexity 1:341–54. DOI: 10.1016/j.ecocom.2004.07.003

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