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Legume production challenged by European policy coherence: a case-study approach from French and German dairy farms

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  • Julia Jouan

    (SMART-LERECO - Structures et Marché Agricoles, Ressources et Territoires - INRA - Institut National de la Recherche Agronomique - AGROCAMPUS OUEST)

  • Julia Heinrichs

    (Rheinische Friedrich-Wilhelms-Universität Bonn)

  • Wolfgang Britz

    (Rheinische Friedrich-Wilhelms-Universität Bonn)

  • Christoph Pahmeyer

    (Rheinische Friedrich-Wilhelms-Universität Bonn)

Abstract

Legumes can contribute to a more sustainable agriculture by limiting N fertilisation, diversifying crop rotation and substituting imported protein-rich feed. However, their production remains low in the European Union, which had led to specific policies. For instance, following the reform of the Common Agricultural Policy, France established Voluntary Coupled Support (VCS) scheme for legumes. Germany did not introduce a VCS, but provides more favourable implementation of the Nitrates Directive (ND) for legumes by allowing spreading manure on these crops. Our study quantifies economic and environmental impacts of the VCS and measures of the ND affecting legume production in France and Germany. We employ the bio-economic model FarmDyn, parameterised for a typical dairy farm in France and Germany, to analyse different levels of VCS per hectare and to compare the French versus the German implementation of the ND. Results suggest that VCS leads to a significant increase in legume production. The implementation of the German ND can foster legume production due to the possibility of spreading manure on legumes. The policy induced increase in legume production is lower in the German farm due to higher opportunity costs of legumes. In both farms, the profit slightly increases but the share of VCS in the profit rises. Environmental indicators are overall improved. Thus, VCS, coupled with an adapted implementation of the Nitrate Directive, is an effective policy to foster environmental benefits from increased legume production. However, the effectiveness of these policies highly depends on the opportunity costs of legumes in each country.

Suggested Citation

  • Julia Jouan & Julia Heinrichs & Wolfgang Britz & Christoph Pahmeyer, 2019. "Legume production challenged by European policy coherence: a case-study approach from French and German dairy farms," Post-Print hal-02197018, HAL.
  • Handle: RePEc:hal:journl:hal-02197018
    Note: View the original document on HAL open archive server: https://hal.science/hal-02197018
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    References listed on IDEAS

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    1. Jacquet, Florence & Butault, Jean-Pierre & Guichard, Laurence, 2011. "An economic analysis of the possibility of reducing pesticides in French field crops," Ecological Economics, Elsevier, vol. 70(9), pages 1638-1648, July.
    2. Julia Jouan & Aude Ridier & Matthieu Carof, 2019. "Economic Drivers of Legume Production: Approached via Opportunity Costs and Transaction Costs," Sustainability, MDPI, vol. 11(3), pages 1-14, January.
    3. Janssen, Sander & van Ittersum, Martin K., 2007. "Assessing farm innovations and responses to policies: A review of bio-economic farm models," Agricultural Systems, Elsevier, vol. 94(3), pages 622-636, June.
    4. Britz, Wolfgang & van Ittersum, Martin K. & Oude Lansink, Alfons G.J.M. & Heckelei, Thomas, 2012. "Tools for Integrated Assessment in Agriculture. State of the Art and Challenges," Bio-based and Applied Economics Journal, Italian Association of Agricultural and Applied Economics (AIEAA), vol. 1(2), pages 1-26, August.
    5. Kupker, Bernd & Huttel, Silke & Kleinhanss, Werner & Offermann, Frank, 2006. "Assessing impacts of CAP reform in France and Germany," German Journal of Agricultural Economics, Humboldt-Universitaet zu Berlin, Department for Agricultural Economics, vol. 55(05-06), pages 1-11.
    6. L. E. Drinkwater & P. Wagoner & M. Sarrantonio, 1998. "Legume-based cropping systems have reduced carbon and nitrogen losses," Nature, Nature, vol. 396(6708), pages 262-265, November.
    7. Florence Jacquet & Jean-Pierre Butault & Laurence Guichard, 2011. "An economic analysis of the possibility of reducing pesticides in French field crops," Post-Print hal-01018979, HAL.
    8. Belhouchette, Hatem & Louhichi, Kamel & Therond, Olivier & Mouratiadou, Ioanna & Wery, Jacques & Ittersum, Martin van & Flichman, Guillermo, 2011. "Assessing the impact of the Nitrate Directive on farming systems using a bio-economic modelling chain," Agricultural Systems, Elsevier, vol. 104(2), pages 135-145, February.
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    Keywords

    farmdyn; bio-economic model; protein crop; policy coherence; mathematical programming; protein self-sufficiency; nitrates Directive;
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