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Potentials and obstacles for community anaerobic digesters in the United States: Evidence from a case study in Vermont

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Listed:
  • Wang, Qingbin
  • Thompson, Ethan
  • Tweedy, Angela
  • O'Leary, Mary L.
  • Crossman, Williams W.

Abstract

The two purposes of this study are to identify factors for the failure of 31% of community anaerobic digesters (CADs) in the United States through a case study of the development, operation, and shutdown of a $4.5 million CAD in Vermont, and to derive policy recommendations for sustainable development of CADs. While many studies have used aggregated data to assess the potentials, obstacles, and policy implications of on-farm biogas production, this paper contributes to the literature with a case study of a large CAD's investment and funding sources, feedstock utilization, energy output, and operating costs and revenues over multiple years. Empirical findings suggest that it is technically feasible to use cow manure and organic wastes from multiple sources to generate electricity, but the economic feasibility and returns depend highly on grants and subsidies for initial investments and on such factors as electricity price, feedstock availability and quality, and market price of renewable energy credits (RECs). Major reasons for the shutdown of this CAD, and likely a large proportion of other CADs in the country, include underestimation of technical problems and operating costs, overestimation of financial returns, and low REC price in the past several years. Future CADs should be invested in and operated by commercial enterprises and government subsidies, and public supports should be based on CADs' outputs such as electricity and utilization of their byproducts like waste heat and recycled nutrients. Also, the educational and research needs of nonprofit organizations could be met via collaboration with privately operated CADs.

Suggested Citation

  • Wang, Qingbin & Thompson, Ethan & Tweedy, Angela & O'Leary, Mary L. & Crossman, Williams W., 2021. "Potentials and obstacles for community anaerobic digesters in the United States: Evidence from a case study in Vermont," Renewable and Sustainable Energy Reviews, Elsevier, vol. 137(C).
  • Handle: RePEc:eee:rensus:v:137:y:2021:i:c:s1364032120307218
    DOI: 10.1016/j.rser.2020.110434
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    References listed on IDEAS

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    1. Shen, Yanwen & Linville, Jessica L. & Urgun-Demirtas, Meltem & Mintz, Marianne M. & Snyder, Seth W., 2015. "An overview of biogas production and utilization at full-scale wastewater treatment plants (WWTPs) in the United States: Challenges and opportunities towards energy-neutral WWTPs," Renewable and Sustainable Energy Reviews, Elsevier, vol. 50(C), pages 346-362.
    2. Qingbin Wang & Laurel Valchuis & Ethan Thompson & David Conner & Robert Parsons, 2019. "Consumer Support and Willingness to Pay for Electricity from Solar, Wind, and Cow Manure in the United States: Evidence from a Survey in Vermont," Energies, MDPI, vol. 12(23), pages 1-13, November.
    3. Scarlat, Nicolae & Dallemand, Jean-François & Fahl, Fernando, 2018. "Biogas: Developments and perspectives in Europe," Renewable Energy, Elsevier, vol. 129(PA), pages 457-472.
    4. Megan Swindal & Gilbert Gillespie & Rick Welsh, 2010. "Community digester operations and dairy farmer perspectives," Agriculture and Human Values, Springer;The Agriculture, Food, & Human Values Society (AFHVS), vol. 27(4), pages 461-474, December.
    5. Velásquez Piñas, Jean Agustin & Venturini, Osvaldo José & Silva Lora, Electo Eduardo & del Olmo, Oscar Almazan & Calle Roalcaba, Orly Denisse, 2019. "An economic holistic feasibility assessment of centralized and decentralized biogas plants with mono-digestion and co-digestion systems," Renewable Energy, Elsevier, vol. 139(C), pages 40-51.
    6. Wang, Qingbin & Thompson, Ethan & Parsons, Robert L. & Rogers, Glenn, 2011. "Economic feasibility of converting cow manure to electricity: A case study of the CVPS Cow Power program in Vermont," 2011 Annual Meeting, July 24-26, 2011, Pittsburgh, Pennsylvania 104564, Agricultural and Applied Economics Association.
    7. Edwards, Joel & Othman, Maazuza & Burn, Stewart, 2015. "A review of policy drivers and barriers for the use of anaerobic digestion in Europe, the United States and Australia," Renewable and Sustainable Energy Reviews, Elsevier, vol. 52(C), pages 815-828.
    8. Jonathan Walsh & Robert Parsons & Qingbin Wang & David Conner, 2020. "What Makes an Organic Dairy Farm Profitable in the United States? Evidence from 10 Years of Farm Level Data in Vermont," Agriculture, MDPI, vol. 10(1), pages 1-13, January.
    9. Thompson, Ethan & Wang, Qingbin & Li, Minghao, 2013. "Anaerobic digester systems (ADS) for multiple dairy farms: A GIS analysis for optimal site selection," Energy Policy, Elsevier, vol. 61(C), pages 114-124.
    10. Pöschl, Martina & Ward, Shane & Owende, Philip, 2010. "Evaluation of energy efficiency of various biogas production and utilization pathways," Applied Energy, Elsevier, vol. 87(11), pages 3305-3321, November.
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