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Group-based crop change planning: Application of SmartScape™ spatial decision support system for resolving conflicts

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  • Tayyebi, Amin
  • Arsanjani, Jamal J.
  • Tayyebi, Amir H.
  • Omrani, Hichem
  • Moghadam, Hossein S.

Abstract

Agricultural changes are complex and managing an appropriate type of crop change to satisfy stakeholders with various interests is challenging. Decisions regarding a crop change need to be debated among multiple stakeholders with various conflicting viewpoints. Two kinds of conflicts might occur as a result of crop change in an agricultural landscape: (1) conflicts among multiple ecosystem services i.e., internal conflicts and (2) conflicts among multiple stakeholders i.e., external conflicts. While a spatial decision support system (SDSS) can provide answers concerning multifaceted problems, there are currently a few SDSSs that indicate the trade-offs among multiple ecosystem services as a result of crop change and also enable stakeholders with diverse preferences to arrive at group-based decisions. In this study, we held a series of meetings with stakeholders, who were experts in economics, energy, soil erosion, greenhouse gas emission, surface water, and biodiversity, to develop two crop change scenarios by replacing perennial energy crops with annual energy crops and vice versa. We then used an online SDSS, SmartScape™, and applied it to Dane county, Wisconsin, U.S. to (1) run the two aforementioned crop change scenarios separately in order to assess how effectively SmartScape™ enables decision makers to resolve internal conflicts while considering the relative values of multiple ecosystem services, and (2) run the two crop change scenarios jointly to show how well SmartScape™ enables decision makers to resolve external conflicts in a group while taking into account the diverse goals of stakeholders. The outcomes of this study can inform policy-makers about both internal conflicts within a crop change scenario and external conflicts among stakeholders and provide a unique framework to resolve both types of conflict in an effective way. Obtaining acceptable crop change solutions among stakeholders with conflicting interests can lead us in moving from individual decision-making to group-based decision-making so that we can enhance sustainability in agricultural landscapes.

Suggested Citation

  • Tayyebi, Amin & Arsanjani, Jamal J. & Tayyebi, Amir H. & Omrani, Hichem & Moghadam, Hossein S., 2016. "Group-based crop change planning: Application of SmartScape™ spatial decision support system for resolving conflicts," Ecological Modelling, Elsevier, vol. 333(C), pages 92-100.
  • Handle: RePEc:eee:ecomod:v:333:y:2016:i:c:p:92-100
    DOI: 10.1016/j.ecolmodel.2016.04.018
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    1. Song, Wei & Deng, Xiangzheng & Yuan, Yongwei & Wang, Zhan & Li, Zhaohua, 2015. "Impacts of land-use change on valued ecosystem service in rapidly urbanized North China Plain," Ecological Modelling, Elsevier, vol. 318(C), pages 245-253.
    2. Dubois, Laetitia & Mathieu, Jérôme & Loeuille, Nicolas, 2015. "The manager dilemma: Optimal management of an ecosystem service in heterogeneous exploited landscapes," Ecological Modelling, Elsevier, vol. 301(C), pages 78-89.
    3. Hein, Lars, 2006. "Cost-efficient eutrophication control in a shallow lake ecosystem subject to two steady states," Ecological Economics, Elsevier, vol. 59(4), pages 429-439, October.
    4. Fisher, Brendan & Turner, R. Kerry & Morling, Paul, 2009. "Defining and classifying ecosystem services for decision making," Ecological Economics, Elsevier, vol. 68(3), pages 643-653, January.
    5. Stephen Connelly & Tim Richardson, 2004. "Exclusion: the necessary difference between ideal and practical consensus," Journal of Environmental Planning and Management, Taylor & Francis Journals, vol. 47(1), pages 3-17.
    6. Searchinger, Timothy & Heimlich, Ralph & Houghton, R. A. & Dong, Fengxia & Elobeid, Amani & Fabiosa, Jacinto F. & Tokgoz, Simla & Hayes, Dermot J. & Yu, Hun-Hsiang, 2008. "Use of U.S. Croplands for Biofuels Increases Greenhouse Gases Through Emissions from Land-Use Change," Staff General Research Papers Archive 12881, Iowa State University, Department of Economics.
    7. LaBeau, Meredith B. & Robertson, Dale M. & Mayer, Alex S. & Pijanowski, Bryan C. & Saad, David A., 2014. "Effects of future urban and biofuel crop expansions on the riverine export of phosphorus to the Laurentian Great Lakes," Ecological Modelling, Elsevier, vol. 277(C), pages 27-37.
    8. Mari, Riccardo & Bottai, Lorenzo & Busillo, Caterina & Calastrini, Francesca & Gozzini, Bernardo & Gualtieri, Giovanni, 2011. "A GIS-based interactive web decision support system for planning wind farms in Tuscany (Italy)," Renewable Energy, Elsevier, vol. 36(2), pages 754-763.
    9. Diakoulaki, D. & Karangelis, F., 2007. "Multi-criteria decision analysis and cost-benefit analysis of alternative scenarios for the power generation sector in Greece," Renewable and Sustainable Energy Reviews, Elsevier, vol. 11(4), pages 716-727, May.
    10. Skevas, T. & Swinton, S.M. & Meehan, T.D. & Kim, T.N. & Gratton, C. & Egbendewe-Mondzozo, A., 2014. "Integrating agricultural pest biocontrol into forecasts of energy biomass production," Ecological Economics, Elsevier, vol. 106(C), pages 195-203.
    11. Bormann, Helge & Breuer, Lutz & Gräff, Thomas & Huisman, Johan A., 2007. "Analysing the effects of soil properties changes associated with land use changes on the simulated water balance: A comparison of three hydrological catchment models for scenario analysis," Ecological Modelling, Elsevier, vol. 209(1), pages 29-40.
    12. Turner, Katrine Grace & Anderson, Sharolyn & Gonzales-Chang, Mauricio & Costanza, Robert & Courville, Sasha & Dalgaard, Tommy & Dominati, Estelle & Kubiszewski, Ida & Ogilvy, Sue & Porfirio, Luciana &, 2016. "A review of methods, data, and models to assess changes in the value of ecosystem services from land degradation and restoration," Ecological Modelling, Elsevier, vol. 319(C), pages 190-207.
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    1. Picchi, Paolo & van Lierop, Martina & Geneletti, Davide & Stremke, Sven, 2019. "Advancing the relationship between renewable energy and ecosystem services for landscape planning and design: A literature review," Ecosystem Services, Elsevier, vol. 35(C), pages 241-259.

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