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Biyokütleden Sürdürülebilir Biyoyakıt Üretimi: Biyorafineri Yaklaşımı

Year 2013, Volume: 9 Issue: 4, 313 - 320, 01.08.2013

Abstract

Bu makalede, biyokütleden biyoyakıt, elektrik, ısı
enerjisi ve yan ürünlerin elde edilmesi için biyorafineri kavramı
irdelenmiçtir. Biyorafinerileri sınıflandırma biyokütle ve platformlara dayalı
olarak yapılmıç; farklı biyorafineri modelleri tanımlanmıçtır. Biyokütlenin
içlenmesinde kullanılan farklı dönüçüm prosesleri açıklanmıçtır. Biyokütleden
sürdürülebilir biyoenerji üretilmesini etkiyen ekonomik, sosyal ve çevresel
faktörler ele alınmıçtır. Örnek olarak, yerel ölçekte tarım içletmelerine
lojistik aglarla baglantılı biyorafineri modeli oluçturulmuçtur.

References

  • Beall, E., P. Cadoni, A. Rossi, 2012. A Compilation of Tools and Methodologies to Assess the Sustainability of Modern Bioenergy, FAO, Environment and Natural Resources Management, Working Paper 51, Rome.
  • BP 2011. BP Statistical Review of World Energy, BP’s printed publications, p:46, London. Cherubini F, G. Jungmeier, M. Wellisch, T. I. Skiadas Willke,
  • R. Van Ree, E. de Jong, 2009. Toward a common classification approach for biorefinery systems, Biofuels Bioprod. Bioref. 5:534–546. John Wiley & Sons.
  • Demirbaç, A., 2008. Importance of biomass energy sources for Turkey, Energy Policy,36 (2):834-842.
  • Demirbaç, A., 2011. Competitive liquid biofuels from biomass, Applied Energy 88(1):17-28.
  • EPDK 2011. EPDK Petrol piyasası sektör raporları http://www.epdk.org.tr/documents(2011), Eriçim Mart 2012
  • Hamelinck, C. N. ve A.P.C.Faaij, 2006. Outlook for advanced biofuels, Energy Policy,34: 3268-3283.
  • Hess J. R., T. C. Wright and K. L. Kenney, 2007. Cellulosic biomass feedstocks and logistics for ethanol production, Biofuels, Bioprod. Bioref. 1:181–190. Liu, S. , L. Abrahamson, G. M. Scott, 2012. Biorefinery: Ensuring biomass as a sustainable renewable source of chemicals, materials, and energy Biomass and Bioenergy, 39: 1-4.
  • Markevicius, A., V. Katinas, E. Perednis, M. Tamasauskiene, 2010. Trends and sustainability criteria of the production and use of liquid biofuels, Renewable and Sustainable Energy Reviews, 14, (9): 3226–3231.
  • Matsumoto, N, D. Sano, M. Elder, 2009. Biofuel initiatives in Japan: strategies, policies, and future potential. Applied Energy, 86(1):69-76.
  • Nigam, P. S. ve A. Singh, 2011. Production of liquid biofuels from renewable resources Progress in Energy and Combustion Science, 37(1):52-68.
  • OECD/IEA, 2011. Roadmap Biofuels for Transport, International Energy Agency, Paris.
  • Rosillo-Calle, F., P. de Groot, S. L. Hemstock, J. Woods.2007, The Biomass Assessment Handbook Earthscan, s: 267, London.
  • Schnepf, R., 2010. Cellulosic Ethanol: Feedstocks, Conversion Technologies, Economics, and Policy Options, Congressional Research Service s:73.
  • Taylor, G., 2008. Biofuels and the biorefinery concept, Energy Policy, 36: 4406-4409.
  • Timilsina, G. R. ve A. Shrestha, 2010. Biofuels: markets, targets and impacts, Policy Research Working Paper Series 5364, The World Bank.
  • USAID, 2009. Biofuels in Asia: An Analysis of Sustainability Options - United States Agency of International Development, Bangkok.
  • Zhang, L., C. Xu, P. Champagne. 2010. Overview of recent advances in thermo-chemical conversion of biomass, Energy Conversion and Management, 51: 969–982.
  • Zinoviev, S., S. Arumugam, S. Miertus, 2007. Biofuel Production Technologies, Working document. S:106.
Year 2013, Volume: 9 Issue: 4, 313 - 320, 01.08.2013

Abstract

References

  • Beall, E., P. Cadoni, A. Rossi, 2012. A Compilation of Tools and Methodologies to Assess the Sustainability of Modern Bioenergy, FAO, Environment and Natural Resources Management, Working Paper 51, Rome.
  • BP 2011. BP Statistical Review of World Energy, BP’s printed publications, p:46, London. Cherubini F, G. Jungmeier, M. Wellisch, T. I. Skiadas Willke,
  • R. Van Ree, E. de Jong, 2009. Toward a common classification approach for biorefinery systems, Biofuels Bioprod. Bioref. 5:534–546. John Wiley & Sons.
  • Demirbaç, A., 2008. Importance of biomass energy sources for Turkey, Energy Policy,36 (2):834-842.
  • Demirbaç, A., 2011. Competitive liquid biofuels from biomass, Applied Energy 88(1):17-28.
  • EPDK 2011. EPDK Petrol piyasası sektör raporları http://www.epdk.org.tr/documents(2011), Eriçim Mart 2012
  • Hamelinck, C. N. ve A.P.C.Faaij, 2006. Outlook for advanced biofuels, Energy Policy,34: 3268-3283.
  • Hess J. R., T. C. Wright and K. L. Kenney, 2007. Cellulosic biomass feedstocks and logistics for ethanol production, Biofuels, Bioprod. Bioref. 1:181–190. Liu, S. , L. Abrahamson, G. M. Scott, 2012. Biorefinery: Ensuring biomass as a sustainable renewable source of chemicals, materials, and energy Biomass and Bioenergy, 39: 1-4.
  • Markevicius, A., V. Katinas, E. Perednis, M. Tamasauskiene, 2010. Trends and sustainability criteria of the production and use of liquid biofuels, Renewable and Sustainable Energy Reviews, 14, (9): 3226–3231.
  • Matsumoto, N, D. Sano, M. Elder, 2009. Biofuel initiatives in Japan: strategies, policies, and future potential. Applied Energy, 86(1):69-76.
  • Nigam, P. S. ve A. Singh, 2011. Production of liquid biofuels from renewable resources Progress in Energy and Combustion Science, 37(1):52-68.
  • OECD/IEA, 2011. Roadmap Biofuels for Transport, International Energy Agency, Paris.
  • Rosillo-Calle, F., P. de Groot, S. L. Hemstock, J. Woods.2007, The Biomass Assessment Handbook Earthscan, s: 267, London.
  • Schnepf, R., 2010. Cellulosic Ethanol: Feedstocks, Conversion Technologies, Economics, and Policy Options, Congressional Research Service s:73.
  • Taylor, G., 2008. Biofuels and the biorefinery concept, Energy Policy, 36: 4406-4409.
  • Timilsina, G. R. ve A. Shrestha, 2010. Biofuels: markets, targets and impacts, Policy Research Working Paper Series 5364, The World Bank.
  • USAID, 2009. Biofuels in Asia: An Analysis of Sustainability Options - United States Agency of International Development, Bangkok.
  • Zhang, L., C. Xu, P. Champagne. 2010. Overview of recent advances in thermo-chemical conversion of biomass, Energy Conversion and Management, 51: 969–982.
  • Zinoviev, S., S. Arumugam, S. Miertus, 2007. Biofuel Production Technologies, Working document. S:106.
There are 19 citations in total.

Details

Primary Language Turkish
Journal Section Articles
Authors

Mehmet Ali Dayıoğulu

Publication Date August 1, 2013
Published in Issue Year 2013 Volume: 9 Issue: 4

Cite

APA Dayıoğulu, M. A. (2013). Biyokütleden Sürdürülebilir Biyoyakıt Üretimi: Biyorafineri Yaklaşımı. Tarım Makinaları Bilimi Dergisi, 9(4), 313-320.

Tarım Makinaları Bilimi Dergisi, Tarım Makinaları Derneği tarafından yılda 3 sayı olarak yayınlanan hakemli bilimsel bir dergidir.