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Economic and Environmental Analysis of Maize Inoculation by Plant Growth Promoting Rhizobacteria in the French Rhône-Alpes Region

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  • Bounaffaa, Myriam
  • Florio, Alessandro
  • Le Roux, Xavier
  • Jayet, Pierre-Alain

Abstract

In the context of global agricultural challenges, plant growth-promoting rhizobacteria from the genus Azospirillum used to inoculate cereal seeds have attracted a lot of attention, mostly for their expected agronomic benefits. This study assesses the economic impact on farmers' profit from maize inoculation, along with the environmental impact in term of greenhouse gas emissions, in the Rhône-Alpes region of France. Yield-to‑nitrogen relationships predicted by the STICS crop model were modified to simulate the effect of inoculation on maize yield, and four inoculation costs (0, 20, 40 and 60 euros/ha) were considered to assess the private economic effect of inoculation. The environmental impact was assessed using a Bouwman-type N2O emission function, modified to account for the inoculation effect on soil N2O production according to soil characteristics. Yield and N2O emission functions were then implemented in the AROPAj farm-type, supply side-oriented model. Several scenarios were considered and probability density functions were selected for the yield function parameters according to field trial results. Our results show that, mainly due to a decrease in fertilizer use rather than to an increase in yield, farming systems in the Rhône-Alpes region could benefit from maize inoculation if the inoculation cost is lower than €20/ha. Regardless of inoculation cost, maize inoculation might reduce the amount of synthetic fertilizer used on farmlands. However, the private economic benefits could be lower if maize is cultivated on soils with a high carbon content, where inoculation increases N2O emission. In these types of soils, greenhouse gas emissions at the regional level could increase by 2 to 5%.

Suggested Citation

  • Bounaffaa, Myriam & Florio, Alessandro & Le Roux, Xavier & Jayet, Pierre-Alain, 2018. "Economic and Environmental Analysis of Maize Inoculation by Plant Growth Promoting Rhizobacteria in the French Rhône-Alpes Region," Ecological Economics, Elsevier, vol. 146(C), pages 334-346.
  • Handle: RePEc:eee:ecolec:v:146:y:2018:i:c:p:334-346
    DOI: 10.1016/j.ecolecon.2017.11.009
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    References listed on IDEAS

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    1. Stéphane Cara & Martin Houzé & Pierre-Alain Jayet, 2005. "Methane and Nitrous Oxide Emissions from Agriculture in the EU: A Spatial Assessment of Sources and Abatement Costs," Environmental & Resource Economics, Springer;European Association of Environmental and Resource Economists, vol. 32(4), pages 551-583, December.
    2. Humblot, Pierre & Jayet, Pierre-Alain & Petsakos, Athanasios, 2017. "Farm-level bio-economic modeling of water and nitrogen use: Calibrating yield response functions with limited data," Agricultural Systems, Elsevier, vol. 151(C), pages 47-60.
    3. Parisa Aghajanzadeh-Darzi & Pierre-Alain Jayet & Athanasios Petsakos, 2017. "Improvement of a Bio-Economic Mathematical Programming Model in the Case of On-Farm Source Inputs and Outputs," Journal of Quantitative Economics, Springer;The Indian Econometric Society (TIES), vol. 15(3), pages 489-508, September.
    4. Cyril Bourgeois & Nosra Ben Fradj & Pierre-Alain Jayet, 2014. "How Cost-Effective is a Mixed Policy Targeting the Management of Three Agricultural N-pollutants?," Post-Print hal-02044480, HAL.
    5. E. Galko & P.‐A. Jayet, 2011. "Economic and environmental effects of decoupled agricultural support in the EU," Agricultural Economics, International Association of Agricultural Economists, vol. 42(5), pages 605-618, September.
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    1. Pierre-Alain Jayet & Athanasios Petsakos & Raja Chakir & Anna Lungarska & Stéphane De Cara & Elvire Petel & Pierre Humblot & Caroline Godard & David Leclère & Pierre Cantelaube & Cyril Bourgeois & Mél, 2023. "The European agro-economic model AROPAj," Working Papers hal-04109872, HAL.

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