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Environmental Benefits of Precision Agriculture Adoption

Author

Listed:
  • Marco Medici
  • S?ren Marcus Pedersen
  • Giacomo Carli
  • Maria Rita Tagliaventi

Abstract

The purpose of this study is to analyse the environmental benefits of precision agriculture technology adoption obtained from the mitigation of negative environmental impacts of agricultural inputs in modern farming. Our literature review of the environmental benefits related to the adoption of precision agriculture solutions is aimed at raising farmers? and other stakeholders? awareness of the actual environmental impacts from this set of new technologies. Existing studies were categorised according to the environmental impacts of different agricultural activities: nitrogen application, lime application, pesticide application, manure application and herbicide application. Our findings highlighted the effects of the reduction of input application rates and the consequent impacts on climate, soil, water and biodiversity. Policy makers can benefit from the outcomes of this study developing an understanding of the environmental impact of precision agriculture in order to promote and support initiatives aimed at fostering sustainable agriculture.

Suggested Citation

  • Marco Medici & S?ren Marcus Pedersen & Giacomo Carli & Maria Rita Tagliaventi, 2019. "Environmental Benefits of Precision Agriculture Adoption," Economia agro-alimentare, FrancoAngeli Editore, vol. 21(3), pages 637-656.
  • Handle: RePEc:fan:ecaqec:v:html10.3280/ecag2019-003004
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    References listed on IDEAS

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    1. Jason R. Rohr & Anna M. Schotthoefer & Thomas R. Raffel & Hunter J. Carrick & Neal Halstead & Jason T. Hoverman & Catherine M. Johnson & Lucinda B. Johnson & Camilla Lieske & Marvin D. Piwoni & Patric, 2008. "Agrochemicals increase trematode infections in a declining amphibian species," Nature, Nature, vol. 455(7217), pages 1235-1239, October.
    2. Allen G Good & Perrin H Beatty, 2011. "Fertilizing Nature: A Tragedy of Excess in the Commons," PLOS Biology, Public Library of Science, vol. 9(8), pages 1-9, August.
    3. Giacomo Carli & Maurizio Canavari & Alessandro Grandi, 2014. "Introducing Activity-Based Costing in Farm Management: The Design of the FarmBO System," International Journal of Agricultural and Environmental Information Systems (IJAEIS), IGI Global, vol. 5(4), pages 69-84, October.
    4. Allen G Good & Perrin H Beatty, 2011. "Fertilizing Nature: A Tragedy of Excess in the Commons," Working Papers id:4387, eSocialSciences.
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    Cited by:

    1. Margherita Masi & Jorgelina Di Pasquale & Yari Vecchio & Fabian Capitanio, 2023. "Precision Farming: Barriers of Variable Rate Technology Adoption in Italy," Land, MDPI, vol. 12(5), pages 1-16, May.
    2. Marco Medici & Maurizio Canavari & Moreno Toselli, 2020. "Interpreting Environmental Impacts Resulting from Fruit Cultivation in a Business Innovation Perspective," Sustainability, MDPI, vol. 12(23), pages 1-14, November.
    3. Stefania Troiano & Matteo Carzedda & Francesco Marangon, 2023. "Better richer than environmentally friendly? Describing preferences toward and factors affecting precision agriculture adoption in Italy," Agricultural and Food Economics, Springer;Italian Society of Agricultural Economics (SIDEA), vol. 11(1), pages 1-15, December.

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    More about this item

    JEL classification:

    • Q1 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Agriculture
    • Q5 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Environmental Economics

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