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Design, Fabrication and Performance Test of a Pilot Scale Bioethanol Plant with Fractional Distillation Unit

Received: 6 December 2021    Accepted: 22 December 2021    Published: 31 December 2021
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Abstract

This study presents the design and development of a pilot scale bioethanol plant. The pilot plant was designed to produce an average of 20 liters/day of ethanol from a 60 litre volume of brut/beer from agricultural waste materials. The design of the bioethanol plant covers the stages of concept formation to the production of specification sheets for components parts and equipment, the design consideration for the plant was also included. The pilot plant consists of the fermentation pot, radiator, water pot, ethanol collection pot, fractional distillation unit, boiler, reboiler, condenser, pumps, electrical components, frame and base of the plant and tyres for mobility. The materials used for the development of the plant are mainly stainless steel, mild steel and copper. A performance test was carried out on the bioethanol plant with fractional distillation unit. Agricultural waste material was used for the testing of the plant. The feedstock was processed and allowed to undergo fermentation during which physicochemical parameters like pH, sugar content, alcoholic content, conductivity and specific gravity was carried out for a period of four days. The fermented beer/brut was then distilled to produce an average of 79% alcohol. The equipment was locally fabricated in the National Centre for Energy and Environment, University of Benin, Benin City, Edo State Nigeria using about 85% local content. The pilot plant has proven the availability of local technology for bioethanol production in Nigeria.

Published in American Journal of Environmental Science and Engineering (Volume 5, Issue 4)
DOI 10.11648/j.ajese.20210504.16
Page(s) 124-129
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2021. Published by Science Publishing Group

Keywords

Bioethanol Plant, Raw Material, Distillation Unit, Feedstock, Agricultural Waste

References
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[3] Ademiluyi, F. T and Mepha H. D. (2013). Yield and Properties of Ethanol Biofuel Produced from different whole Cassava flours. Hindawi Limited in ISRN Biotechnology. Pages 1-6.
[4] Ueda Seinosuke, Celia T. Zenin, Domingos A. Monteiro, Yong K. Park. (1981). Production of Ethanol from Raw Cassava Starch by a Non- convectional Fermentation Method. Biotechnology and Bioengineering. Volume 23 (2). Pages 291-299.
[5] Sanchez, O. J. and Cardona, C. A. (2008). Trends in Biotechnological Production of Fuel Ethanol from different Feedstocks. Bio-resources Technology, Volume 99 (13): Pages 5270-5295.
[6] Murtala, A. M., Aliyu, B. A. and Babagana, G. (2012). Biomass Resource as a Source of Sustainable Energy Production in Developing Countries. Journal of Applied Phytotechnology in Environmental Sanitation, Volume 1 (2): Pages 103-112.
[7] Jan Ulrich. (2002). Operation and Control of Azeotropic Distillation Column Sequences: PhD Dissertation, Swiss Federal Institute of Technology (ETH), Zurich. http://doi.org/10.3929/ethz-a-004495616.
[8] Mohammed J., Atuman, S. J., Ugwu, E. and Audu, A. A. (2012). Production and Characterization of Biodiesel from Jatropha oil and Neem oil. International Journal of Emerging Trends in Engineering and Development. Volume 2 (2): Pages 313-320.
[9] Douglas, G. T. and Vemon, R. E. (2003). Factors Associated with Sources of Fuel Ethanol Producers in Engineering and Development of Applied Economics, University of Minnesota, U.S.A.
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[13] Nester, E. W., Anderson, D. G., Roberts, C. E., Pearsall, N. N and Nester, M. T. (2001). Dynamics of prokaryotic growth in Microbiology. A human perspective. 3rd Edition. Mc Graw-Hill, New York. Pages 87-108.
[14] Braide, W. and Nwaoguikpe, R. N. (2011). Ethanol Production from cocoyam. International Journal of plant Physiology and Biochemistry. Volume 3 (3): Pages 64-66.
[15] Schugerl, K. (1994). Agricultural waste: A source of bulk products. Journal of chemical Engineering and Technology. Volume 17: Page 291.
[16] Amerine, M. N. (1988). Encyclopidia Americana. International edition. Macmillan publishing Co. Inc., New York, USA. Pages 36-44.
[17] Okeke, B. C. and Obi, S. K. C. (1994). Saccharification of Agrowaste materials by fungal cellulases and Hemicellulases. Bio resource Technology, Volume 51 (1): Pages 23–27.
[18] Wang, G. S., Lee, J. W., Zhu, J. Y. and Jeffries, T. W. (2011). Dilute acid pretreatment of corncob for efficient sugar production. Applied Biochemistry and Biotechnology. Volume 163: Pages 658–668.
[19] Foyle, T., Jennings, L. and Mulcahy, P. (2007). Compositional analysis of lignocellulosic materials: Evaluation of methods used for sugar analysis of waste paper and straw, Bioresource Technology. Volume 98 (16): Pages 3026–3036.
[20] Braide W., Kanu, I. A. Oranusi, U. S and Adeleye, S. A (2016). Production of Bioethanol from Agricultural Waste. Journal of Fundamental and Applied Sciences. Volume 8 (2). Pages 372-386.
Cite This Article
  • APA Style

    Biose Osadebe, Jonah Daudeya Angalapu, Maureen Imhontu, Oghosa Akenzua, Bildad Atsegha, et al. (2021). Design, Fabrication and Performance Test of a Pilot Scale Bioethanol Plant with Fractional Distillation Unit. American Journal of Environmental Science and Engineering, 5(4), 124-129. https://doi.org/10.11648/j.ajese.20210504.16

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    ACS Style

    Biose Osadebe; Jonah Daudeya Angalapu; Maureen Imhontu; Oghosa Akenzua; Bildad Atsegha, et al. Design, Fabrication and Performance Test of a Pilot Scale Bioethanol Plant with Fractional Distillation Unit. Am. J. Environ. Sci. Eng. 2021, 5(4), 124-129. doi: 10.11648/j.ajese.20210504.16

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    AMA Style

    Biose Osadebe, Jonah Daudeya Angalapu, Maureen Imhontu, Oghosa Akenzua, Bildad Atsegha, et al. Design, Fabrication and Performance Test of a Pilot Scale Bioethanol Plant with Fractional Distillation Unit. Am J Environ Sci Eng. 2021;5(4):124-129. doi: 10.11648/j.ajese.20210504.16

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  • @article{10.11648/j.ajese.20210504.16,
      author = {Biose Osadebe and Jonah Daudeya Angalapu and Maureen Imhontu and Oghosa Akenzua and Bildad Atsegha and Christopher Okorie and James Onabe and Igbinomwahia Dennis Iyeke},
      title = {Design, Fabrication and Performance Test of a Pilot Scale Bioethanol Plant with Fractional Distillation Unit},
      journal = {American Journal of Environmental Science and Engineering},
      volume = {5},
      number = {4},
      pages = {124-129},
      doi = {10.11648/j.ajese.20210504.16},
      url = {https://doi.org/10.11648/j.ajese.20210504.16},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ajese.20210504.16},
      abstract = {This study presents the design and development of a pilot scale bioethanol plant. The pilot plant was designed to produce an average of 20 liters/day of ethanol from a 60 litre volume of brut/beer from agricultural waste materials. The design of the bioethanol plant covers the stages of concept formation to the production of specification sheets for components parts and equipment, the design consideration for the plant was also included. The pilot plant consists of the fermentation pot, radiator, water pot, ethanol collection pot, fractional distillation unit, boiler, reboiler, condenser, pumps, electrical components, frame and base of the plant and tyres for mobility. The materials used for the development of the plant are mainly stainless steel, mild steel and copper. A performance test was carried out on the bioethanol plant with fractional distillation unit. Agricultural waste material was used for the testing of the plant. The feedstock was processed and allowed to undergo fermentation during which physicochemical parameters like pH, sugar content, alcoholic content, conductivity and specific gravity was carried out for a period of four days. The fermented beer/brut was then distilled to produce an average of 79% alcohol. The equipment was locally fabricated in the National Centre for Energy and Environment, University of Benin, Benin City, Edo State Nigeria using about 85% local content. The pilot plant has proven the availability of local technology for bioethanol production in Nigeria.},
     year = {2021}
    }
    

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  • TY  - JOUR
    T1  - Design, Fabrication and Performance Test of a Pilot Scale Bioethanol Plant with Fractional Distillation Unit
    AU  - Biose Osadebe
    AU  - Jonah Daudeya Angalapu
    AU  - Maureen Imhontu
    AU  - Oghosa Akenzua
    AU  - Bildad Atsegha
    AU  - Christopher Okorie
    AU  - James Onabe
    AU  - Igbinomwahia Dennis Iyeke
    Y1  - 2021/12/31
    PY  - 2021
    N1  - https://doi.org/10.11648/j.ajese.20210504.16
    DO  - 10.11648/j.ajese.20210504.16
    T2  - American Journal of Environmental Science and Engineering
    JF  - American Journal of Environmental Science and Engineering
    JO  - American Journal of Environmental Science and Engineering
    SP  - 124
    EP  - 129
    PB  - Science Publishing Group
    SN  - 2578-7993
    UR  - https://doi.org/10.11648/j.ajese.20210504.16
    AB  - This study presents the design and development of a pilot scale bioethanol plant. The pilot plant was designed to produce an average of 20 liters/day of ethanol from a 60 litre volume of brut/beer from agricultural waste materials. The design of the bioethanol plant covers the stages of concept formation to the production of specification sheets for components parts and equipment, the design consideration for the plant was also included. The pilot plant consists of the fermentation pot, radiator, water pot, ethanol collection pot, fractional distillation unit, boiler, reboiler, condenser, pumps, electrical components, frame and base of the plant and tyres for mobility. The materials used for the development of the plant are mainly stainless steel, mild steel and copper. A performance test was carried out on the bioethanol plant with fractional distillation unit. Agricultural waste material was used for the testing of the plant. The feedstock was processed and allowed to undergo fermentation during which physicochemical parameters like pH, sugar content, alcoholic content, conductivity and specific gravity was carried out for a period of four days. The fermented beer/brut was then distilled to produce an average of 79% alcohol. The equipment was locally fabricated in the National Centre for Energy and Environment, University of Benin, Benin City, Edo State Nigeria using about 85% local content. The pilot plant has proven the availability of local technology for bioethanol production in Nigeria.
    VL  - 5
    IS  - 4
    ER  - 

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Author Information
  • National Centre for Energy and Environment, Energy Commission of Nigeria University of Benin, Benin City, Nigeria

  • National Centre for Energy and Environment, Energy Commission of Nigeria University of Benin, Benin City, Nigeria

  • National Centre for Energy and Environment, Energy Commission of Nigeria University of Benin, Benin City, Nigeria

  • National Centre for Energy and Environment, Energy Commission of Nigeria University of Benin, Benin City, Nigeria

  • National Centre for Energy and Environment, Energy Commission of Nigeria University of Benin, Benin City, Nigeria

  • National Centre for Energy and Environment, Energy Commission of Nigeria University of Benin, Benin City, Nigeria

  • National Centre for Energy and Environment, Energy Commission of Nigeria University of Benin, Benin City, Nigeria

  • Department of Mechanical Engineering, University of Benin, Benin City, Nigeria

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