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A Bioeconomic Model of Cattle Stocking on Rangeland Threatened by Invasive Plants and Nitrogen Deposition

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  • David Finnoff
  • Aaron Strong
  • John Tschirhart

Abstract

Across western North America, invasive plant species and elevated levels of nitrogen are threatening the productivity of rangelands. A bioeconomic model of stocking cattle on these rangelands is used to show that optimal stocking depends on the competition between native grasses and the invaders. However, nitrogen deposition is important in determining the ultimate rangeland species composition. Endogenous changes in plant successional thresholds are due to the interplay of nitrogen deposition and stocking practices. Nonoptimal overstocking can create ecosystem niches for invaders where they would not have occurred at lower stocking rates, although what constitutes overstocking depends on the nitrogen levels. Copyright 2008, Oxford University Press.

Suggested Citation

  • David Finnoff & Aaron Strong & John Tschirhart, 2008. "A Bioeconomic Model of Cattle Stocking on Rangeland Threatened by Invasive Plants and Nitrogen Deposition," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 90(4), pages 1074-1090.
  • Handle: RePEc:oup:ajagec:v:90:y:2008:i:4:p:1074-1090
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    File URL: http://hdl.handle.net/10.1111/j.1467-8276.2008.01166.x
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    Cited by:

    1. Wilhelms, Steven C. & Coatney, Kalyn T. & Chaudhry, Anita M. & Rodgers, Aaron D., 2016. "Brinkmanship on the Commons: A Laboratory Experiment Related to African Pulaar Herders," 2016 Annual Meeting, February 6-9, 2016, San Antonio, Texas 230085, Southern Agricultural Economics Association.
    2. Mimako Kobayashi & Kimberly Rollins & Michael H. Taylor, 2014. "Optimal Livestock Management on Sagebrush Rangeland with Ecological Thresholds, Wildfire, and Invasive Plants," Land Economics, University of Wisconsin Press, vol. 90(4), pages 623-648.
    3. Tran, Ngoc Bich & Ley, Eduardo, 2012. "Green prices," Policy Research Working Paper Series 6131, The World Bank.
    4. Hussain, A.M. Tanvir & Tschirhart, John, 2013. "Economic/ecological tradeoffs among ecosystem services and biodiversity conservation," Ecological Economics, Elsevier, vol. 93(C), pages 116-127.
    5. Kobayashi, Mimako & Harris, Thomas R. & Rollins, Kimberly S., 2009. "Invasive Weeds, Wildfire, and Rancher Decision Making in the Great Basin," 2009 Annual Meeting, July 26-28, 2009, Milwaukee, Wisconsin 49365, Agricultural and Applied Economics Association.
    6. Albers, Heidi J. & Hall, Kim Meyer & Lee, Katherine D. & Taleghan, Majid Alkaee & Dietterich, Thomas G., 2018. "The Role of Restoration and Key Ecological Invasion Mechanisms in Optimal Spatial-Dynamic Management of Invasive Species," Ecological Economics, Elsevier, vol. 151(C), pages 44-54.
    7. repec:ags:aaea22:335917 is not listed on IDEAS
    8. Finnoff, David & Horan, Richard D. & Shogren, Jason F. & Reeling, Carson & Berry, Kevin, 2016. "Natural vs anthropogenic risk reduction: Facing invasion risks involving multi-stable outcomes," Journal of Economic Behavior & Organization, Elsevier, vol. 132(PB), pages 113-123.
    9. Caroline King-Okumu, 2018. "Valuing Environmental Benefit Streams in the Dryland Ecosystems of Sub-Saharan Africa," Land, MDPI, vol. 7(4), pages 1-23, November.
    10. Finnoff, David & Gong, Min & Tschirhart, John, 2012. "Perspectives on Ecosystem Based Management for Delivering Ecosystem Services with an Example from an Eighteen-Species Marine Model," International Review of Environmental and Resource Economics, now publishers, vol. 6(1), pages 79-118, January.
    11. Cisneros-Pineda, Alfredo & Aadland, David & Tschirhart, John, 2020. "Impacts of cattle, hunting, and natural gas development in a rangeland ecosystem," Ecological Modelling, Elsevier, vol. 431(C).

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