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Assessing the role of US agriculture in reducing greenhouse gas emissions and generating additional environmental benefits

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  • Konyar, Kazim

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  • Konyar, Kazim, 2001. "Assessing the role of US agriculture in reducing greenhouse gas emissions and generating additional environmental benefits," Ecological Economics, Elsevier, vol. 38(1), pages 85-103, July.
  • Handle: RePEc:eee:ecolec:v:38:y:2001:i:1:p:85-103
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    1. Jorgenson, Dale W. & Wilcoxen, Peter J., 1993. "Reducing US carbon emissions: an econometric general equilibrium assessment," Resource and Energy Economics, Elsevier, vol. 15(1), pages 7-25, March.
    2. Whittlesey, Norman K. & Herrell, Jon P., 1987. "Impacts Of Energy Cost Increases On Irrigated Land Values," Western Journal of Agricultural Economics, Western Agricultural Economics Association, vol. 12(1), pages 1-7, July.
    3. Richard E. Howitt, 1995. "Positive Mathematical Programming," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 77(2), pages 329-342.
    4. Steven S. Vickner & Dana L. Hoag & W. Marshall Frasier & James C. Ascough, 1998. "A Dynamic Economic Analysis of Nitrate Leaching in Corn Production under Nonuniform Irrigation Conditions," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 80(2), pages 397-408.
    5. Boyd Roy & Krutilla Kerry & Viscusi W. Kip, 1995. "Energy Taxation as a Policy Instrument to Reduce CO2 Emissions: A Net Benefit Analysis," Journal of Environmental Economics and Management, Elsevier, vol. 29(1), pages 1-24, July.
    6. Konyar, Kazim & Howitt, Richard E., 2000. "The Cost Of The Kyoto Protocol To U.S. Crop Production: Measuring Crop Price, Regional Acreage, Welfare, And Input Substitution Effects," Journal of Agricultural and Resource Economics, Western Agricultural Economics Association, vol. 25(2), pages 1-21, December.
    7. Debertin, David L. & Pagoulatos, Angelos & Aoun, Abdessalem, 1990. "Impacts of technological change on factor substitution between energy and other inputs within US agriculture, 1950-79," Energy Economics, Elsevier, vol. 12(1), pages 2-10, January.
    8. Ruth J. Maddigan & Colleen Gallagher Rizy & Wen S. Chern, 1982. "The Irrigation Demand for Electricity," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 64(4), pages 673-680.
    9. Bonnie Colby Saliba, 1985. "Irrigated Agriculture and Groundwater Quality—A Framework for Policy Development," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 67(5), pages 1231-1237.
    10. Donna J. Lee & Richard E. Howitt, 1996. "Modeling Regional Agricultural Production and Salinity Control Alternatives for Water Quality Policy Analysis," American Journal of Agricultural Economics, Agricultural and Applied Economics Association, vol. 78(1), pages 41-53.
    11. Richard E. Howitt, 1995. "A Calibration Method For Agricultural Economic Production Models," Journal of Agricultural Economics, Wiley Blackwell, vol. 46(2), pages 147-159, May.
    12. Ribaudo, Marc O., 1989. "Water Quality Benefits from the Conservation Reserve Program," Agricultural Economic Reports 308069, United States Department of Agriculture, Economic Research Service.
    13. Tewari, Devi D., 1990. "Energy-price impacts modelling in the agriculture sector," Energy Economics, Elsevier, vol. 12(2), pages 147-158, April.
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    Cited by:

    1. Martinho, Vítor João Pereira Domingues, 2021. "Direct and indirect energy consumption in farming: Impacts from fertilizer use," Energy, Elsevier, vol. 236(C).
    2. Zhen, Wei & Qin, Quande & Wei, Yi-Ming, 2017. "Spatio-temporal patterns of energy consumption-related GHG emissions in China's crop production systems," Energy Policy, Elsevier, vol. 104(C), pages 274-284.
    3. Marzieh Ronaghi & Michael Reed & Sayed Saghaian, 2020. "The impact of economic factors and governance on greenhouse gas emission," Environmental Economics and Policy Studies, Springer;Society for Environmental Economics and Policy Studies - SEEPS, vol. 22(2), pages 153-172, April.
    4. Serhiy Zabolotnyy, 2024. "Investigating the Nexus Between Energy Transition Reporting Practices and Corporate Efficiency in the European Agri-Food Sector," Energies, MDPI, vol. 17(21), pages 1-19, November.
    5. Sazvar, Z. & Mirzapour Al-e-hashem, S.M.J. & Baboli, A. & Akbari Jokar, M.R., 2014. "A bi-objective stochastic programming model for a centralized green supply chain with deteriorating products," International Journal of Production Economics, Elsevier, vol. 150(C), pages 140-154.
    6. Alluvione, Francesco & Moretti, Barbara & Sacco, Dario & Grignani, Carlo, 2011. "EUE (energy use efficiency) of cropping systems for a sustainable agriculture," Energy, Elsevier, vol. 36(7), pages 4468-4481.
    7. Okan Demir & Zinnur Gözübüyük, 2020. "A comparison of different tillage systems in irrigated conditions by risk and gross margin analysis in Erzurum region of Turkey," Environment, Development and Sustainability: A Multidisciplinary Approach to the Theory and Practice of Sustainable Development, Springer, vol. 22(3), pages 2529-2544, March.
    8. Zhen, Wei & Qin, Quande & Qian, Xiaoying & Wei, Yi-Ming, 2018. "Inequality across China's Staple Crops in Energy Consumption and Related GHG Emissions," Ecological Economics, Elsevier, vol. 153(C), pages 17-30.

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