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Thermodynamics-based categorization of ecosystems in a socio-ecological context

Author

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  • Coscieme, Luca
  • Pulselli, Federico M.
  • Jørgensen, Sven E.
  • Bastianoni, Simone
  • Marchettini, Nadia

Abstract

Ecosystems can be viewed as thermodynamic systems, open to energy and matter, that self-organize towards higher complexity and organization, create order, and self-maintain far from thermodynamic equilibrium. Ecological systems are closely interrelated (in a landscape and in the biosphere) and with human systems, such as urban systems or, generically, economic systems. These relations have been summarized and measured by the concept of ecosystem services and the definition of socio-ecological systems. In order to detect ecosystem properties and dynamics in this context, it is recommended to use “super-holistic” indicators, e.g. thermodynamic indicators such as emergy and eco-exergy. Emergy accounts for energy and matter inputs converging to a system, while eco-exergy is a state-based descriptor of a system's structure based on biomass and genetic information. The characteristics of a generic ecosystem can be described by the relationship among the three orientors – emergy, eco-exergy, ecosystem services – making it clear that inputs are used up, directly or indirectly, to create and maintain a given system state and/or to produce services in output. This paper presents an input-state-output description of ecosystems in a socio-ecological context which leads to a characterization in 8 categories, in order to provide a new contribution to systems ecology.

Suggested Citation

  • Coscieme, Luca & Pulselli, Federico M. & Jørgensen, Sven E. & Bastianoni, Simone & Marchettini, Nadia, 2013. "Thermodynamics-based categorization of ecosystems in a socio-ecological context," Ecological Modelling, Elsevier, vol. 258(C), pages 1-8.
  • Handle: RePEc:eee:ecomod:v:258:y:2013:i:c:p:1-8
    DOI: 10.1016/j.ecolmodel.2013.02.031
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    References listed on IDEAS

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    Cited by:

    1. Lu, Hongfang & Campbell, Elliott T. & Campbell, Daniel E. & Wang, Changwei & Ren, Hai, 2017. "Dynamics of ecosystem services provided by subtropical forests in Southeast China during succession as measured by donor and receiver value," Ecosystem Services, Elsevier, vol. 23(C), pages 248-258.
    2. Saladini, Fabrizio & Gopalakrishnan, Varsha & Bastianoni, Simone & Bakshi, Bhavik R., 2018. "Synergies between industry and nature – An emergy evaluation of a biodiesel production system integrated with ecological systems," Ecosystem Services, Elsevier, vol. 30(PB), pages 257-266.
    3. Giordano, P. & Caputo, P. & Vancheri, A., 2014. "Fuzzy evaluation of heterogeneous quantities: Measuring urban ecological efficiency," Ecological Modelling, Elsevier, vol. 288(C), pages 112-126.
    4. Coscieme, Luca & Pulselli, Federico M. & Marchettini, Nadia & Sutton, Paul C. & Anderson, Sharolyn & Sweeney, Sharlynn, 2014. "Emergy and ecosystem services: A national biogeographical assessment," Ecosystem Services, Elsevier, vol. 7(C), pages 152-159.
    5. Bastianoni, Simone & Coscieme, Luca & Pulselli, Federico M., 2016. "The input-state-output model and related indicators to investigate the relationships among environment, society and economy," Ecological Modelling, Elsevier, vol. 325(C), pages 84-88.
    6. Almeida, C.M.V.B. & Mariano, M.V. & Agostinho, F. & Liu, G.Y. & Yang, Z.F. & Coscieme, L. & Giannetti, B.F., 2018. "Comparing costs and supply of supporting and regulating services provided by urban parks at different spatial scales," Ecosystem Services, Elsevier, vol. 30(PB), pages 236-247.
    7. Buonocore, Elvira & Picone, Flavio & Donnarumma, Luigia & Russo, Giovanni F. & Franzese, Pier Paolo, 2019. "Modeling matter and energy flows in marine ecosystems using emergy and eco-exergy methods to account for natural capital value," Ecological Modelling, Elsevier, vol. 392(C), pages 137-146.
    8. Zhang, Can & Su, Bo & Beckmann, Michael & Volk, Martin, 2024. "Emergy-based evaluation of ecosystem services: Progress and perspectives," Renewable and Sustainable Energy Reviews, Elsevier, vol. 192(C).
    9. Ye, Sufen & Zhang, Luoping & Feng, Huan, 2020. "Ecosystem intrinsic value and its evaluation," Ecological Modelling, Elsevier, vol. 430(C).
    10. Jørgensen, Sven E. & Nielsen, Søren Nors & Fath, Brian D., 2016. "Recent progress in systems ecology," Ecological Modelling, Elsevier, vol. 319(C), pages 112-118.
    11. Buonocore, Elvira & Donnarumma, Luigia & Appolloni, Luca & Miccio, Antonino & Russo, Giovanni F. & Franzese, Pier Paolo, 2020. "Marine natural capital and ecosystem services: An environmental accounting model," Ecological Modelling, Elsevier, vol. 424(C).

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