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Impacts of the CAP 2014–2020 on the Agroenergy Sector in Tuscany, Italy

Author

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  • Fabio Bartolini

    (Department of Agriculture Food and Environment, University of Pisa, via del Borghetto 80, Pisa 56124, Italy)

  • Luciana G. Angelini

    (Department of Agriculture Food and Environment, University of Pisa, via del Borghetto 80, Pisa 56124, Italy)

  • Gianluca Brunori

    (Department of Agriculture Food and Environment, University of Pisa, via del Borghetto 80, Pisa 56124, Italy)

  • Oriana Gava

    (Department of Agriculture Food and Environment, University of Pisa, via del Borghetto 80, Pisa 56124, Italy)

Abstract

The agricultural sectors’ contribution to the provision of energy is a central issue in Horizon 2020 strategies and has shaped the public and research debates on the future of the bioeconomy. The common agricultural policy (CAP) has been one of the main drivers of farmers’ behavioural changes and represents the main agricultural policy instrument to address viability of rural areas and maintaining the profitability of the agricultural sector. To contribute to the ongoing policy debate towards CAP reform, this paper will provide an empirical model to simulate the impact of an alternative CAP mechanism on the provision of renewable energy. By applying a dynamic mathematical programming model, the paper tests the impact new policy measures will have on the provision of a second-generation of bio fuel crops that represent a relevant option for Tuscan farmers. Results show that CAP reform positively impacts the supply of energy crops mainly due to the introduction of greening payments, which allows an enlarging of crop diversification. Model results stress also the income stabilisation effects of energy production introduction at farm level, due to reduction of farm exposure to market prices fluctuations.

Suggested Citation

  • Fabio Bartolini & Luciana G. Angelini & Gianluca Brunori & Oriana Gava, 2015. "Impacts of the CAP 2014–2020 on the Agroenergy Sector in Tuscany, Italy," Energies, MDPI, vol. 8(2), pages 1-22, February.
  • Handle: RePEc:gam:jeners:v:8:y:2015:i:2:p:1058-1079:d:45363
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    References listed on IDEAS

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    Cited by:

    1. Bartoli, A. & Cavicchioli, D. & Kremmydas, D. & Rozakis, S. & Olper, A., 2016. "The impact of different energy policy options on feedstock price and land demand for maize silage: The case of biogas in Lombardy," Energy Policy, Elsevier, vol. 96(C), pages 351-363.
    2. Ben Fradj, Nosra & Jayet, Pierre Alain & Rozakis, Stelios & Georganta, Eleni & Jędrejek, Anna, 2020. "Contribution of agricultural systems to the bioeconomy in Poland: Integration of willow in the context of a stylised CAP diversification," Land Use Policy, Elsevier, vol. 99(C).
    3. Bartoli, Andrea & Hamelin, Lorie & Rozakis, Stelios & Borzęcka, Magdalena & Brandão, Miguel, 2019. "Coupling economic and GHG emission accounting models to evaluate the sustainability of biogas policies," Renewable and Sustainable Energy Reviews, Elsevier, vol. 106(C), pages 133-148.
    4. María Pilar González-Vázquez & Roberto García & Covadonga Pevida & Fernando Rubiera, 2017. "Optimization of a Bubbling Fluidized Bed Plant for Low-Temperature Gasification of Biomass," Energies, MDPI, vol. 10(3), pages 1-16, March.
    5. O'Keeffe, S. & Majer, S. & Drache, C. & Franko, U. & Thrän, D., 2017. "Modelling biodiesel production within a regional context – A comparison with RED Benchmark," Renewable Energy, Elsevier, vol. 108(C), pages 355-370.
    6. Bartolini, Fabio & Gava, Oriana & Brunori, Gianluca, 2017. "Biogas and EU's 2020 targets: Evidence from a regional case study in Italy," Energy Policy, Elsevier, vol. 109(C), pages 510-519.

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