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Food Footprint as a Measure of Sustainability for Grazing Dairy Farms

Author

Listed:
  • M. Melissa Rojas-Downing

    (Michigan State University, Department of Biosystems and Agricultural Engineering)

  • A. Pouyan Nejadhashemi

    (Michigan State University, Department of Biosystems and Agricultural Engineering
    Michigan State University, Department of Plant, Soil and Microbial Sciences)

  • Behin Elahi

    (Purdue University at Fort Wayne, Department of Manufacturing and Construction Engineering Technology)

  • Kimberly A. Cassida

    (Michigan State University, Department of Plant, Soil and Microbial Sciences)

  • Fariborz Daneshvar

    (Michigan State University, Department of Biosystems and Agricultural Engineering)

  • J. Sebastian Hernandez-Suarez

    (Michigan State University, Department of Biosystems and Agricultural Engineering)

  • Mohammad Abouali

    (Michigan State University, Department of Biosystems and Agricultural Engineering)

  • Matthew R. Herman

    (Michigan State University, Department of Biosystems and Agricultural Engineering)

  • Sabah Anwer Dawood Al Masraf

    (Michigan State University, Department of Biosystems and Agricultural Engineering)

  • Timothy Harrigan

    (Michigan State University, Department of Biosystems and Agricultural Engineering)

Abstract

Livestock productions require significant resources allocation in the form of land, water, energy, air, and capital. Meanwhile, owing to increase in the global demand for livestock products, it is wise to consider sustainable livestock practices. In the past few decades, footprints have emerged as indicators for sustainability assessment. In this study, we are introducing a new footprint measure to assess sustainability of a grazing dairy farm while considering carbon, water, energy, and economic impacts of milk production. To achieve this goal, a representative farm was developed based on grazing dairy practices surveys in the State of Michigan, USA. This information was incorporated into the Integrated Farm System Model (IFSM) to estimate the farm carbon, water, energy, and economic impacts and associated footprints for ten different regions in Michigan. A multi-criterion decision-making method called VIKOR was used to determine the overall impacts of the representative farms. This new measure is called the food footprint. Using this new indicator, the most sustainable milk production level (8618 kg/cow/year) was identified that is 19.4% higher than the average milk production (7215 kg/cow/year) in the area of interest. In addition, the most sustainable pasture composition was identified as 90% tall fescue with 10% white clover. The methodology introduced here can be adopted in other regions to improve sustainability by reducing water, energy, and environmental impacts of grazing dairy farms, while maximizing the farm profit and productions.

Suggested Citation

  • M. Melissa Rojas-Downing & A. Pouyan Nejadhashemi & Behin Elahi & Kimberly A. Cassida & Fariborz Daneshvar & J. Sebastian Hernandez-Suarez & Mohammad Abouali & Matthew R. Herman & Sabah Anwer Dawood A, 2018. "Food Footprint as a Measure of Sustainability for Grazing Dairy Farms," Environmental Management, Springer, vol. 62(6), pages 1073-1088, December.
  • Handle: RePEc:spr:envman:v:62:y:2018:i:6:d:10.1007_s00267-018-1101-y
    DOI: 10.1007/s00267-018-1101-y
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