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Exploring the Potential to Penetrate the Energy Markets for Tennessee-Produced Switchgrass

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  • Chugh, Shikha
  • Yu, T. Edward
  • Jackson, Samuel
  • Larson, James
  • English, Burton
  • Cho, Seong-Hoon

Abstract

Growing biomass crops for energy production on low productivity lands that are not used for food production has been suggested as an alternative to reduce dependence on fossil fuels and to mitigate greenhouse gas emissions from transportation fuel. Switchgrass is considered a potential feedstock in various states, including Tennessee, because of its good yields on poor soils. However, its low density relative to its energy value and resulting high logistics costs impedes the profitability of switchgrass-based bioenergy. The objective of this study is to determine the optimal logistics configuration for a collection/distribution hub to market Tennessee-produced switchgrass for bioenergy production. A mathematical programming model integrated with the geographic information system is used to maximize the net present value (NPV) of profit of the hub that serves switchgrass producers and bioenergy markets. A total of six logistics configurations delivering switchgrass to local or international bioenergy markets are evaluated. The results highlight the economic challenges of penetrating the energy market for the collection/distribution hub of switchgrass: only one logistics configuration for the local market is profitable. However, serving international markets becomes feasible when investment risk is lowered. This information implies that certainty of bioenergy policies is crucial to the development of biomass feedstock for bioenergy industry.

Suggested Citation

  • Chugh, Shikha & Yu, T. Edward & Jackson, Samuel & Larson, James & English, Burton & Cho, Seong-Hoon, 2015. "Exploring the Potential to Penetrate the Energy Markets for Tennessee-Produced Switchgrass," 2015 Annual Meeting, January 31-February 3, 2015, Atlanta, Georgia 196899, Southern Agricultural Economics Association.
  • Handle: RePEc:ags:saea15:196899
    DOI: 10.22004/ag.econ.196899
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    References listed on IDEAS

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    1. Wee, Hui-Ming & Yang, Wen-Hsiung & Chou, Chao-Wu & Padilan, Marivic V., 2012. "Renewable energy supply chains, performance, application barriers, and strategies for further development," Renewable and Sustainable Energy Reviews, Elsevier, vol. 16(8), pages 5451-5465.
    2. Rentizelas, Athanasios A. & Tolis, Athanasios J. & Tatsiopoulos, Ilias P., 2009. "Logistics issues of biomass: The storage problem and the multi-biomass supply chain," Renewable and Sustainable Energy Reviews, Elsevier, vol. 13(4), pages 887-894, May.
    3. Tembo, Gelson & Epplin, Francis M. & Huhnke, Raymond L., 2003. "Integrative Investment Appraisal of a Lignocellulosic Biomass-to-Ethanol Industry," Journal of Agricultural and Resource Economics, Western Agricultural Economics Association, vol. 28(3), pages 1-23, December.
    4. Duffy, Michael, 2007. "Estimated Costs for Production, Storage, and Transportation of Switchgrass," Staff General Research Papers Archive 12917, Iowa State University, Department of Economics.
    5. James A. Larson & Tun‐Hsiang Yu & Burton C. English & Daniel F. Mooney & Chenguang Wang, 2010. "Cost evaluation of alternative switchgrass producing, harvesting, storing, and transporting systems and their logistics in the Southeastern USA," Agricultural Finance Review, Emerald Group Publishing Limited, vol. 70(2), pages 184-200, August.
    6. English, Burton C. & Jensen, Kimberly L. & Menard, R. Jamey & Walsh, Marie E. & Brandt, Craig & Van Dyke, Jim & Hadley, Stanton, 2007. "Economic Impacts of Carbon Taxes and Biomass Feedstock Usage in Southeastern United States Coal Utilities," Journal of Agricultural and Applied Economics, Southern Agricultural Economics Association, vol. 39(1), pages 1-17, April.
    7. O’Mahoney, Amy & Thorne, Fiona & Denny, Eleanor, 2013. "A cost-benefit analysis of generating electricity from biomass," Energy Policy, Elsevier, vol. 57(C), pages 347-354.
    8. Carolan Joseph E. & Joshi Satish V. & Dale Bruce E., 2007. "Technical and Financial Feasibility Analysis of Distributed Bioprocessing Using Regional Biomass Pre-Processing Centers," Journal of Agricultural & Food Industrial Organization, De Gruyter, vol. 5(2), pages 1-29, December.
    9. van Dam, J. & Faaij, A.P.C. & Hilbert, J. & Petruzzi, H. & Turkenburg, W.C., 2009. "Large-scale bioenergy production from soybeans and switchgrass in Argentina: Part A: Potential and economic feasibility for national and international markets," Renewable and Sustainable Energy Reviews, Elsevier, vol. 13(8), pages 1710-1733, October.
    10. Frombo, Francesco & Minciardi, Riccardo & Robba, Michela & Sacile, Roberto, 2009. "A decision support system for planning biomass-based energy production," Energy, Elsevier, vol. 34(3), pages 362-369.
    11. Selkimäki, Mari & Mola-Yudego, Blas & Röser, Dominik & Prinz, Robert & Sikanen, Lauri, 2010. "Present and future trends in pellet markets, raw materials, and supply logistics in Sweden and Finland," Renewable and Sustainable Energy Reviews, Elsevier, vol. 14(9), pages 3068-3075, December.
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