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  • 1.
    Ketzer, Daniel
    et al.
    Stockholms universitet, Naturvetenskapliga fakulteten, Institutionen för naturgeografi. Karlsruhe Institute of Technology (KIT), Germany.
    Schlyter, Peter
    Weinberger, Nora
    Rösch, Christine
    Driving and restraining forces for the implementation of the Agrophotovoltaics system technology – A system dynamics analysisManuskript (preprint) (Övrigt vetenskapligt)
    Abstract [en]

    The political goal to combat climate change by a high share of renewable energy may trigger conflicts between biomass and power production, as Photovoltaic (PV) systems can be installed on arable land used for food production. The innovative Agrophotovoltaics (APV) system technology combines agricultural biomass and solar power production on the same site and aims at reducing the conflict between food and power production. A comprehensive analysis of the driving and restraining forces 15 for the implementation of APV-technology and expected or potential impacts on the environment is required. The presented study offers a so-called Systems Dynamics (SD) approach based on the results of citizen workshops, literature research, and expert discussions on the technology. This analysis produces Causal Loop Diagrams (CLDs), which describe optimization problems between power production and agriculture. Finally, these findings are criteria that may influence the local acceptance 20 in society, farmers’ motivation for APV and economic factors for the market launch of APV. Thus, this SD approach identifies bottlenecks and conflicting objectives in the technology implementation that need to be further addressed.

  • 2.
    Ketzer, Daniel
    et al.
    Stockholms universitet, Naturvetenskapliga fakulteten, Institutionen för naturgeografi. Karlsruhe Institute of Technology (KIT), Germany; Steinbeis-Europa-Zentrum, Germany.
    Weinberger, Nora
    Rösch, Christine
    Seitz, Stefanie B.
    Land use conflicts between biomass and power production – citizens’ participation in the technology development of Agrophotovoltaics2019Ingår i: Journal of Responsible Innovation, ISSN 2329-9460, E-ISSN 2329-9037Artikel i tidskrift (Refereegranskat)
    Abstract [en]

    Despite the technical feasibility of renewable energy technologies and their contribution to climate-friendly power production public opposition can be a hurdle for new installations of renewable energy plants. This study assesses citizens’ perceptions of the Agrophotovoltaics (APV) technology by applying the Responsible Research and Innovation (RRI) concept. APV combines biomass cultivation and solar power production at the same site in order to reduce land use conflict of food vs. energy production. In a workshop, citizens’ perception on APV before building the first pilot plant was investigated to analyze relevant aspects for the innovation process and its framework at an early stage of the technology development process. This paper describes the findings from this workshop focusing on the impact of APV on landscape, biodiversity, economy, and on the requirements for regulatory framework.

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