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Assessing and Governing Ecosystem Services Trade-Offs in Agrarian Landscapes: The Case of Biogas

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  • Christian Albert

    (Institute of Environmental Planning, Leibniz Universität Hannover, Herrenhäuser Str. 2, 30419 Hanover, Germany
    Department of Environmental Politics, Helmholtz Centre for Environmental Research—UFZ, Permoserstraße 15, 04318 Leipzig, Germany)

  • Johannes Hermes

    (Institute of Environmental Planning, Leibniz Universität Hannover, Herrenhäuser Str. 2, 30419 Hanover, Germany)

  • Felix Neuendorf

    (Institute of Environmental Planning, Leibniz Universität Hannover, Herrenhäuser Str. 2, 30419 Hanover, Germany)

  • Christina Von Haaren

    (Institute of Environmental Planning, Leibniz Universität Hannover, Herrenhäuser Str. 2, 30419 Hanover, Germany)

  • Michael Rode

    (Institute of Environmental Planning, Leibniz Universität Hannover, Herrenhäuser Str. 2, 30419 Hanover, Germany)

Abstract

This paper develops a method to explore how alternative scenarios of the expansion of maize production for biogas generation affect biodiversity and ecosystem services (ES). Our approach consists of four steps: (i) defining scenario targets and implementation of assumptions; (ii) simulating crop distributions across the landscape; (iii) assessing the ES impacts; and (iv) quantifying the impacts for a comparative trade-off analysis. The case study is the region of Hannover, Germany. One scenario assumes an increase of maize production in a little regulated governance system; two others reflect an increase of biogas production with either strict or flexible environmental regulation. We consider biodiversity and three ES: biogas generation, food production and the visual landscape. Our results show that the expansion of maize production results in predominantly negative impacts for other ES. However, positive effects can also be identified, i.e. , when the introduction of maize leads to higher local crop diversity and, thus, a more attractive visual landscape. The scenario of little regulation portrays more negative impacts than the other scenarios. Targeted spatial planning, implementation and appropriate governance for steering maize production into less sensitive areas is crucial for minimizing trade-offs and exploiting synergies between bioenergy and other ES.

Suggested Citation

  • Christian Albert & Johannes Hermes & Felix Neuendorf & Christina Von Haaren & Michael Rode, 2016. "Assessing and Governing Ecosystem Services Trade-Offs in Agrarian Landscapes: The Case of Biogas," Land, MDPI, vol. 5(1), pages 1-17, January.
  • Handle: RePEc:gam:jlands:v:5:y:2016:i:1:p:1-:d:62734
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    References listed on IDEAS

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    1. Bredemeier, Birte & von Haaren, Christina & Rüter, Stefan & Reich, Michael & Meise, Thomas, 2015. "Evaluating the nature conservation value of field habitats: A model approach for targeting agri-environmental measures and projecting their effects," Ecological Modelling, Elsevier, vol. 295(C), pages 113-122.
    2. Eick von Ruschkowski & Julia Wiehe, 2008. "Balancing Bioenergy Production and Nature Conservation in Germany: Potential Synergies and Challenges," Journal of Socio-Economics in Agriculture (Until 2015: Yearbook of Socioeconomics in Agriculture), Swiss Society for Agricultural Economics and Rural Sociology, vol. 1(1), pages 3-20.
    3. Christian Albert & Christina Von Haaren & Juan Carlos Vargas-Moreno & Carl Steinitz, 2015. "Teaching Scenario-Based Planning for Sustainable Landscape Development: An Evaluation of Learning Effects in the Cagliari Studio Workshop," Sustainability, MDPI, vol. 7(6), pages 1-21, May.
    4. Kirchner, Mathias & Schmidt, Johannes & Kindermann, Georg & Kulmer, Veronika & Mitter, Hermine & Prettenthaler, Franz & Rüdisser, Johannes & Schauppenlehner, Thomas & Schönhart, Martin & Strauss, Fran, 2015. "Ecosystem services and economic development in Austrian agricultural landscapes — The impact of policy and climate change scenarios on trade-offs and synergies," Ecological Economics, Elsevier, vol. 109(C), pages 161-174.
    5. Guillem, E.E. & Murray-Rust, D. & Robinson, D.T. & Barnes, A. & Rounsevell, M.D.A., 2015. "Modelling farmer decision-making to anticipate tradeoffs between provisioning ecosystem services and biodiversity," Agricultural Systems, Elsevier, vol. 137(C), pages 12-23.
    6. van Ittersum, Martin K. & Ewert, Frank & Heckelei, Thomas & Wery, Jacques & Alkan Olsson, Johanna & Andersen, Erling & Bezlepkina, Irina & Brouwer, Floor & Donatelli, Marcello & Flichman, Guillermo & , 2008. "Integrated assessment of agricultural systems - A component-based framework for the European Union (SEAMLESS)," Agricultural Systems, Elsevier, vol. 96(1-3), pages 150-165, March.
    7. Roland Barthel & Tim Reichenau & Tatjana Krimly & Stephan Dabbert & Karl Schneider & Wolfram Mauser, 2012. "Integrated Modeling of Global Change Impacts on Agriculture and Groundwater Resources," Water Resources Management: An International Journal, Published for the European Water Resources Association (EWRA), Springer;European Water Resources Association (EWRA), vol. 26(7), pages 1929-1951, May.
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    Cited by:

    1. Susanne Stein & Horst-Henning Steinmann & Johannes Isselstein, 2019. "Linking Arable Crop Occurrence with Site Conditions by the Use of Highly Resolved Spatial Data," Land, MDPI, vol. 8(4), pages 1-14, April.
    2. Benjamin Burkhard & Stefan Hotes & Hubert Wiggering, 2016. "Agro(Eco)System Services—Supply and Demand from Fields to Society," Land, MDPI, vol. 5(2), pages 1-4, April.
    3. Smith, A.C. & Harrison, P.A. & Pérez Soba, M. & Archaux, F. & Blicharska, M. & Egoh, B.N. & Erős, T. & Fabrega Domenech, N. & György, Á.I. & Haines-Young, R. & Li, S. & Lommelen, E. & Meiresonne, L. &, 2017. "How natural capital delivers ecosystem services: A typology derived from a systematic review," Ecosystem Services, Elsevier, vol. 26(PA), pages 111-126.

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