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Reducing damages from sulfoxaflor use through mitigation measures to increase the protection of pollinator species

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  • Centner, Terence J.
  • Brewer, Brady
  • Leal, Isaac

Abstract

The demise of pollinator species due to the increased use of insecticides and other factors is leading to declines in crop yields. In regulating insecticides, governments may preclude usage if it poses an unreasonable risk to the environment taking into account the economic, social, and environmental costs and benefits of its use. To meet this requirement, the registration of an insecticide often includes mitigation measures to reduce the adverse effects of its use. For the registration of sulfoxaflor in the United States, a systemic insecticide used on hundreds of crops, four mitigation measures were recommended to reduce the risk of harm to pollinator species. Yet, given the importance of pollination to food crops, governments may need to take additional steps and adopt a greater variety of measures. Through a comparison of three regulatory options for use of insecticides, we show that it may be advantageous to mitigate harm to pollinators.

Suggested Citation

  • Centner, Terence J. & Brewer, Brady & Leal, Isaac, 2018. "Reducing damages from sulfoxaflor use through mitigation measures to increase the protection of pollinator species," Land Use Policy, Elsevier, vol. 75(C), pages 70-76.
  • Handle: RePEc:eee:lauspo:v:75:y:2018:i:c:p:70-76
    DOI: 10.1016/j.landusepol.2018.03.016
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    1. Pretty, J. N. & Brett, C. & Gee, D. & Hine, R. E. & Mason, C. F. & Morison, J. I. L. & Raven, H. & Rayment, M. D. & van der Bijl, G., 2000. "An assessment of the total external costs of UK agriculture," Agricultural Systems, Elsevier, vol. 65(2), pages 113-136, August.
    2. Gallai, Nicola & Salles, Jean-Michel & Settele, Josef & Vaissière, Bernard E., 2009. "Economic valuation of the vulnerability of world agriculture confronted with pollinator decline," Ecological Economics, Elsevier, vol. 68(3), pages 810-821, January.
    3. Fernandez-Cornejo, Jorge & Nehring, Richard & Osteen, Craig & Wechsler, Seth James & Martin, Andrew & Vialou, Alex, 2014. "Pesticide Use in U.S. Agriculture: 21 Selected Crops, 1960-2008," Economic Information Bulletin 178462, United States Department of Agriculture, Economic Research Service.
    4. Ben A. Woodcock & Nicholas J. B. Isaac & James M. Bullock & David B. Roy & David G. Garthwaite & Andrew Crowe & Richard F. Pywell, 2016. "Impacts of neonicotinoid use on long-term population changes in wild bees in England," Nature Communications, Nature, vol. 7(1), pages 1-8, November.
    5. Palardy, Nathan & Centner, Terence J., 2017. "Improvements in pesticide drift reduction technology (DRT) call for improving liability provisions to offer incentives for adoption," Land Use Policy, Elsevier, vol. 69(C), pages 439-444.
    6. Maj Rundlöf & Georg K. S. Andersson & Riccardo Bommarco & Ingemar Fries & Veronica Hederström & Lina Herbertsson & Ove Jonsson & Björn K. Klatt & Thorsten R. Pedersen & Johanna Yourstone & Henrik G. S, 2015. "Seed coating with a neonicotinoid insecticide negatively affects wild bees," Nature, Nature, vol. 521(7550), pages 77-80, May.
    7. Gallai, Nicola & Salles, Jean-Michel & Settele, Josef & Vaissière, Bernard E., 2009. "Economic valuation of the vulnerability of world agriculture confronted with pollinator decline," Ecological Economics, Elsevier, vol. 68(3), pages 810-821, January.
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    1. Kleftodimos, Georgios & Gallai, Nicola & Rozakis, Stelios & Képhaliacos, Charilaos, 2021. "A farm-level ecological-economic approach of the inclusion of pollination services in arable crop farms," Land Use Policy, Elsevier, vol. 107(C).

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