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Evaluation of a long-term potential for the development of agricultural biogas plants: A case study for the Lubelskie Province, Poland

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  • Oniszk-Popławska, Anna
  • Matyka, Mariusz
  • Ryńska, Elżbieta Dagny
Abstract
This article presents a review of methodologies allowing for the calculation of agricultural biogas potentials on a regional level. A definition of theoretical, technical and economic potentials as well as methods for their calculation are provided. The review of the state-of-art studies in this area has indicated that despite differences in calculation methods, procedures for approximation of theoretical and technical potentials are well established. However, there have been various approaches to elaborate a methodology to calculate the economic (market) potential. In this article a scenario building approach is applied for a case study region of the Lubelskie Province, east of Poland. The results have shown that the elaborated methodology can be applied by policy makers to integrate also other renewables in planning procedures.

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  • Oniszk-Popławska, Anna & Matyka, Mariusz & Ryńska, Elżbieta Dagny, 2014. "Evaluation of a long-term potential for the development of agricultural biogas plants: A case study for the Lubelskie Province, Poland," Renewable and Sustainable Energy Reviews, Elsevier, vol. 36(C), pages 329-349.
  • Handle: RePEc:eee:rensus:v:36:y:2014:i:c:p:329-349
    DOI: 10.1016/j.rser.2014.04.010
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    1. Chodkowska-Miszczuk, Justyna & Szymańska, Daniela, 2013. "Agricultural biogas plants—A chance for diversification of agriculture in Poland," Renewable and Sustainable Energy Reviews, Elsevier, vol. 20(C), pages 514-518.
    2. Poeschl, Martina & Ward, Shane & Owende, Philip, 2010. "Prospects for expanded utilization of biogas in Germany," Renewable and Sustainable Energy Reviews, Elsevier, vol. 14(7), pages 1782-1797, September.
    3. Batzias, F.A. & Sidiras, D.K. & Spyrou, E.K., 2005. "Evaluating livestock manures for biogas production: a GIS based method," Renewable Energy, Elsevier, vol. 30(8), pages 1161-1176.
    4. Batidzirai, B. & Smeets, E.M.W. & Faaij, A.P.C., 2012. "Harmonising bioenergy resource potentials—Methodological lessons from review of state of the art bioenergy potential assessments," Renewable and Sustainable Energy Reviews, Elsevier, vol. 16(9), pages 6598-6630.
    5. Tricase, C. & Lombardi, M., 2009. "State of the art and prospects of Italian biogas production from animal sewage: Technical-economic considerations," Renewable Energy, Elsevier, vol. 34(3), pages 477-485.
    6. Sorda, G. & Sunak, Y. & Madlener, R., 2013. "An agent-based spatial simulation to evaluate the promotion of electricity from agricultural biogas plants in Germany," Ecological Economics, Elsevier, vol. 89(C), pages 43-60.
    7. Angelis-Dimakis, Athanasios & Biberacher, Markus & Dominguez, Javier & Fiorese, Giulia & Gadocha, Sabine & Gnansounou, Edgard & Guariso, Giorgio & Kartalidis, Avraam & Panichelli, Luis & Pinedo, Irene, 2011. "Methods and tools to evaluate the availability of renewable energy sources," Renewable and Sustainable Energy Reviews, Elsevier, vol. 15(2), pages 1182-1200, February.
    8. Weyant, John P., 2011. "Accelerating the development and diffusion of new energy technologies: Beyond the "valley of death"," Energy Economics, Elsevier, vol. 33(4), pages 674-682, July.
    9. Delzeit, Ruth & Britz, Wolfgang & Kreins, Peter, 2012. "An economic assessment of biogas production and land use under the German renewable energy source act," Kiel Working Papers 1767 [rev.], Kiel Institute for the World Economy (IfW Kiel).
    10. Bruni, Emiliano & Jensen, Anders Peter & Pedersen, Erik Silkjær & Angelidaki, Irini, 2010. "Anaerobic digestion of maize focusing on variety, harvest time and pretreatment," Applied Energy, Elsevier, vol. 87(7), pages 2212-2217, July.
    11. Ostermeyer, Arlette & Schonau, Franziska, 2012. "Effects of biogas production on inter- and in-farm competition," 131st Seminar, September 18-19, 2012, Prague, Czech Republic 135772, European Association of Agricultural Economists.
    12. Junginger, Martin & de Visser, Erika & Hjort-Gregersen, Kurt & Koornneef, Joris & Raven, Rob & Faaij, Andre & Turkenburg, Wim, 2006. "Technological learning in bioenergy systems," Energy Policy, Elsevier, vol. 34(18), pages 4024-4041, December.
    13. Smyth, Beatrice M. & Smyth, Henry & Murphy, Jerry D., 2011. "Determining the regional potential for a grass biomethane industry," Applied Energy, Elsevier, vol. 88(6), pages 2037-2049, June.
    14. Hoffmann, Dunja, 2009. "Creation of regional added value by regional bioenergy resources," Renewable and Sustainable Energy Reviews, Elsevier, vol. 13(9), pages 2419-2429, December.
    15. Markard, Jochen & Stadelmann, Martin & Truffer, Bernhard, 2009. "Prospective analysis of technological innovation systems: Identifying technological and organizational development options for biogas in Switzerland," Research Policy, Elsevier, vol. 38(4), pages 655-667, May.
    16. Lönnqvist, Tomas & Silveira, Semida & Sanches-Pereira, Alessandro, 2013. "Swedish resource potential from residues and energy crops to enhance biogas generation," Renewable and Sustainable Energy Reviews, Elsevier, vol. 21(C), pages 298-314.
    17. 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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    2. Tjutju, N.A.S. & Ammenberg, J. & Lindfors, A., 2024. "Biogas potential studies: A review of their scope, approach, and relevance," Renewable and Sustainable Energy Reviews, Elsevier, vol. 201(C).
    3. Rasheed, Rizwan & Khan, Naghman & Yasar, Abdullah & Su, Yuehong & Tabinda, Amtul Bari, 2016. "Design and cost-benefit analysis of a novel anaerobic industrial bioenergy plant in Pakistan," Renewable Energy, Elsevier, vol. 90(C), pages 242-247.
    4. Igliński, Bartłomiej & Buczkowski, Roman & Cichosz, Marcin, 2015. "Biogas production in Poland—Current state, potential and perspectives," Renewable and Sustainable Energy Reviews, Elsevier, vol. 50(C), pages 686-695.

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