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Electric energy micro-production in a rural property using biogas as primary source

Author

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  • Souza, Samuel Nelson M. de
  • Werncke, Ivan
  • Marques, Cleber Aimoni
  • Bariccatti, Reinaldo A.
  • Santos, Reginaldo F.
  • Nogueira, Carlos Eduardo C.
  • Bassegio, Doglas

Abstract

The generation of electric energy distributed throughout Brazil′s rural area contributes in the supply and logistics of energy production all over the country. This work aimed to analyze biogas production from swine waste and the generation of electric energy using biogas as primary source. Biogas was produced in São Miguel do Iguaçu - Paraná, Brazil, in a rural property which uses two biodigesters to produce biogas, whose electric conversion is performed in an engine-generator set of 100kVA. With an average of 4672 housed animals, 554 Nm3day−1 of biogas were used in the generation of 847kWhday−1 of electricity and the rest was incinerated in a flare. The average specific consumption of biogas in the engine-generator set was 0.68m3kWh−1 and its efficiency was 22.21%. The cost of electric energy production using biogas was 0.12R$kWh−1 and the cost of the supplier′s electricity was 0.14R$.kWh−1. One can observe the economical feasibility of electricity production from biogas, even without receiving carbon credits.

Suggested Citation

  • Souza, Samuel Nelson M. de & Werncke, Ivan & Marques, Cleber Aimoni & Bariccatti, Reinaldo A. & Santos, Reginaldo F. & Nogueira, Carlos Eduardo C. & Bassegio, Doglas, 2013. "Electric energy micro-production in a rural property using biogas as primary source," Renewable and Sustainable Energy Reviews, Elsevier, vol. 28(C), pages 385-391.
  • Handle: RePEc:eee:rensus:v:28:y:2013:i:c:p:385-391
    DOI: 10.1016/j.rser.2013.07.035
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    1. Pao, Hsiao-Tien & Fu, Hsin-Chia, 2013. "Renewable energy, non-renewable energy and economic growth in Brazil," Renewable and Sustainable Energy Reviews, Elsevier, vol. 25(C), pages 381-392.
    2. Tippayawong, N. & Thanompongchart, P., 2010. "Biogas quality upgrade by simultaneous removal of CO2 and H2S in a packed column reactor," Energy, Elsevier, vol. 35(12), pages 4531-4535.
    3. Gwavuya, S.G. & Abele, S. & Barfuss, I. & Zeller, M. & Müller, J., 2012. "Household energy economics in rural Ethiopia: A cost-benefit analysis of biogas energy," Renewable Energy, Elsevier, vol. 48(C), pages 202-209.
    4. Brown, Bettina B. & Yiridoe, Emmanuel K. & Gordon, Robert, 2007. "Impact of single versus multiple policy options on the economic feasibility of biogas energy production: Swine and dairy operations in Nova Scotia," Energy Policy, Elsevier, vol. 35(9), pages 4597-4610, September.
    5. Yiridoe, Emmanuel K. & Gordon, Robert & Brown, Bettina B., 2009. "Nonmarket cobenefits and economic feasibility of on-farm biogas energy production," Energy Policy, Elsevier, vol. 37(3), pages 1170-1179, March.
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