Journal of Engineering and Applied Sciences

Year: 2020
Volume: 15
Issue: 6
Page No. 1385 - 1392

Estimation of Electricity Production from Corn Residues: A Case Study of Nigeria

Authors : Yekini Suberu Mohammed, Aminu Asumo Maruf, Caleb Akezi Amlabu, James Gaina Bashayi, Yusuf Yunusa Sanni and Audu Nasiru

References

Acikgoz, C., O. Onay and O.M. Kockar, 2004. Fast pyrolysis of linseed: Product yields and compositions. J. Anal. Applied Pyrol., 71: 417-429.
CrossRef  |  

Ahmed, O.Y., M.J. Ries and W.F. Northrop, 2019. Emissions factors from distributed, small-scale biomass gasification power generation: Comparison to open burning and large-scale biomass power generation. Atmos. Environ., 200: 221-227.
CrossRef  |  Direct Link  |  

Alatzas, S., K. Moustakas, D. Malamis and S. Vakalis, 2019. Biomass potential from agricultural waste for energetic utilization in Greece. Energies, Vol. 12, No. 6. 10.3390/en12061095

Anukam, A.I., B.P. Goso, O.O. Okoh and S.N. Mamphweli, 2017. Studies on characterization of corn cob for application in a gasification process for energy production. J. Chem., Vol. 2017, 10.1155/2017/6478389

Anvari, S., S. Khalilarya and V. Zare, 2019. Power generation enhancement in a biomass-based combined cycle using solar energy: Thermodynamic and environmental analysis. Applied Therm. Eng., 153: 128-141.
CrossRef  |  Direct Link  |  

Carter, E., M. Shan, Y. Zhong, W. Ding, Y. Zhang, J. Baumgartner and X. Yang, 2018. Development of renewable, densified biomass for household energy in China. Energy Sustainable Dev., 46: 42-52.
CrossRef  |  Direct Link  |  

Din, Z.U. and Z.A. Zainal, 2016. Biomass integrated gasification-SOFC systems: Technology overview. Renewable Sustainable Energy Rev., 53: 1356-1376.
CrossRef  |  Direct Link  |  

Duku, M.H., S. Gu and E.B. Hagan, 2011. A comprehensive review of biomass resources and biofuels potential in Ghana. Renewable Sustainable Energy Rev., 15: 404-415.
CrossRef  |  Direct Link  |  

Faaij, A., 2006. Modern biomass conversion technologies. Mitigation Adapt. Strategies Global Change, 11: 343-375.
CrossRef  |  Direct Link  |  

Jekayinfa, S.O. and V. Scholz, 2009. Potential availability of energetically usable crop residues in Nigeria. Energy Sour. Part A: Recovery Utiliz. Environ. Effects, 31: 687-697.
CrossRef  |  Direct Link  |  

Jenkins, B.M., L.L. Baxter, T.R. Miles Jr. and T.R. Miles, 1998. Combustion properties of biomass. Fuel Process. Technol., 54: 17-46.
Direct Link  |  

Kartha, S. and E.D. Larson, 2000. Bioenergy Primer: Modernised Biomass Energy for Sustainable Development. United Nations Development Programme, New York, USA., ISBN: 9789211261271, Pages: 133.

Kosov, V.F., V.A. Lavrenov, O.M. Larina and V.M. Zaichenko, 2016. Use of two-stage pyrolysis for bio-waste recycling. Chem. Eng. Trans., 50: 151-156.
CrossRef  |  Direct Link  |  

Krutof, A. and K. Hawboldt, 2016. Blends of pyrolysis oil, petroleum, and other bio-based fuels: A review. Renewable Sustainable Energy Rev., 59: 406-419.
CrossRef  |  Direct Link  |  

Kumaravel, S.T., A. Murugesan and A. Kumaravel, 2016. Tyre pyrolysis oil as an alternative fuel for diesel engines-A review. Renewable Sustainable Energy Rev., 60: 1678-1685.
CrossRef  |  Direct Link  |  

Mayrou, E., 2006. [Biomass combustion cogeneration technologies in Europe]. Master’s Thesis, Department of Mineral Resources Engineering, University of Crete, Chania, Greece. (In Greek)

Mohammed, Y.S., M.W. Mustafa, N. Bashir and I.S. Ibrahem, 2017. Existing and recommended renewable and sustainable energy development in Nigeria based on autonomous energy and microgrid technologies. Renew. Sustain. Energy Rev., 75: 820-838.
CrossRef  |  Direct Link  |  

Naqvi, M., E. Dahlquist and J. Yan, 2017. Complementing existing CHP plants using biomass for production of hydrogen and burning the residual gas in a CHP boiler. Biofuels, 8: 675-683.
CrossRef  |  Direct Link  |  

Nunes, L.J.R., J.C.O. Matias and J.P.S. Catalao, 2016. Biomass combustion systems: A review on the physical and chemical properties of the ashes. Renewable Sustainable Energy Rev., 53: 235-242.
CrossRef  |  Direct Link  |  

OECD/IEA., 2010. Sustainable production of second-generation biofuels: Potential and perspectives in major economies and developing countries: Information Paper. OECD/IEA, Paris, France.

Purohit, P., 2009. Economic potential of biomass gasification projects under clean development mechanism in India. J. Clean. Prod., 17: 181-193.
CrossRef  |  Direct Link  |  

Ravindranath, N.H. and D.O. Hall, 1995. Biomass Energy and Environment: A Developing Country Perspective From India. Oxford University Press, Oxford.

Singh, R. and A. Shukla, 2017. A review on methods of flue gas cleaning from combustion of biomass. Renewable Sustainable Energy Rev., 29: 854-864.
CrossRef  |  Direct Link  |  

Situmorang, Y.A., Z. Zhao, A. Yoshida, Y. Kasai, A. Abudula and G. Guan, 2019. Potential power generation on a small-scale separated-type biomass gasification system. Energy, 179: 19-29.
CrossRef  |  Direct Link  |  

Sobamowo, G.M. and S.J. Ojolo, 2018. Techno-economic analysis of biomass energy utilization through gasification technology for sustainable energy production and economic development in Nigeria. J. Energy, 2018: 1-16.
CrossRef  |  Direct Link  |  

Stich, J., S. Ramachandran, T. Hamacher and U. Stimming, 2017. Techno-economic estimation of the power generation potential from biomass residues in Southeast Asia. Energy, 135: 930-942.
CrossRef  |  Direct Link  |  

Tripathi, A.K., P.V.R. Iyer and T.C. Kandpal, 1997. A financial evaluation of biomass-gasifier-based power generation in India. Bioresour. Technol., 61: 53-59.
CrossRef  |  Direct Link  |  

Tripathi, M., J.N. Sahu and P. Ganesan, 2016. Effect of process parameters on production of biochar from biomass waste through pyrolysis: A review. Renewable Sustainable Energy Rev., 55: 467-481.
CrossRef  |  Direct Link  |  

Tsai, W.T., Lee and C.Y. Chang, 2007. Fast pyrolysis of rice husk: Product yields and compositions. Bioresour. Technol., 98: 22-28.

Uzun, B.B., A.E. Putun and E. Putun, 2006. Fast pyrolysis of soybean cake: Product yields and compositions. J. Biores. Technol., 97: 569-576.
CrossRef  |  

Williams, C.L., T.L. Westover, R.M. Emerson, J.S. Tumuluru and C. Li, 2016. Sources of biomass feedstock variability and the potential impact on biofuels production. BioEnergy Res., 9: 1-14.
CrossRef  |  Direct Link  |  

Yildiz, G., F. Ronsse, R. van Duren and W. Prins, 2016. Challenges in the design and operation of processes for catalytic fast pyrolysis of woody biomass. Renewable Sustainable Energy Rev., 57: 1596-1610.
CrossRef  |  Direct Link  |  

Zhang, Q., K. He and H. Huo, 2012. Policy: Cleaning China's air. Nature, 484: 161-162.
CrossRef  |  PubMed  |  Direct Link  |  

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