240
Views
9
CrossRef citations to date
0
Altmetric
Articles

Economic analysis and optimization for bio-hydrogen production from oil palm waste via steam gasification

, , , &

References

  • Acharya, B., Dutta, A., and Basu. P. 2010. An investigation into steam gasification of biomass for hydrogen enriched gas production in presence of CaO. Int. J. Hydrogen Energy 35:1582–1589.
  • Balat, M. 2008. Hydrogen-rich gas production from biomass via pyrolysis and gasification processes and effects of catalyst on hydrogen yield. Energy Sources Part A 30:552–564.
  • Biegler, L. T., Grossmann, I. E., and Westerberg, A. W. 1997. Systematic Methods of Chemical Process Design. New Jersey, USA: Prestice Hall PTR.
  • Corella, J., Toledo, J-M., and Molina, G. 2008. Biomass gasification with pure steam in fluidised bed: 12 variables that affect the effectiveness of the biomass gasifier. Int. J. Oil Gas Coal Technol. 1:194–207.
  • Douglas, J. M. 1988. Conceptual Design of Chemical Processes. McGraw-Hill, New York.
  • Dowaki, K., Ohta, T., Kasahara, Y., Kameyama, M., Sakawaki, K., and Mori, S. 2007. An economic and energy analysis on bio-hydrogen fuel using a gasification process. Renewable Energy 32:80–94.
  • Florin, N. H., and Harris, A. T. 2008. Enhanced hydrogen production from biomass with in situ carbon dioxide capture using calcium oxide sorbents. Chem. Eng. Sci. 63:287–316.
  • Georgi, D. 2002. Hydrogen extraction, more than one way to skin the cat. Batteries Digest Newsl. August 2002 8:6–7.
  • Guoxin, H., and Hao, H. 2009. Hydrogen rich fuel gas production by gasification of wet biomass using a CO2 sorbent. Biomass Bioenergy 33:899–906.
  • Han, L., Wang, Q., Yang, Y., Yu, C., Fang, M., and Luo, Z. 2011. Hydrogen production via CaO sorption enhanced anaerobic gasification of sawdust in a bubbling fluidized bed. Int. J. Hydrogen Energy 36:4820–4829.
  • Inayat, A., Ahmad, M. M., Abdul Mutalib, M. I., and Yusup, S. 2012. Process modeling for parametric study on oil palm empty fruit bunch steam gasification for hydrogen production. Fuel Process. Technol. 93:26–34.
  • Inayat, A., Ahmad, M. M., Yusup, S., and Abdul Mutalib, M. I. 2010. Biomass steam gasification with in-situ CO2 capture for enriched hydrogen gas production: A reaction kinetics modelling approach. Energies 3:1472–1484.
  • Inayat, A., Ahmad, M. M., Abdul Mutalib, M. I., and Yusup, S. 2010. Flowsheet development and modeling of hydrogen production from Empty Fruit Bunch via steam gasification. Chem. Eng. Trans. 21:427–432.
  • Iwasaki, W. 2003. A consideration of the economic efficiency of hydrogen production from biomass. Int. J Hydrogen Energy 28:939–944.
  • John, G. R., Mhilu, C. F., Mkilaha, I. S. N., Mkumbwa, M., Lugano, W., and Mwaikondela, O. 2006. Prospects of high temperature air/steam gasification of biomass technology. In Proceedings from the International Conference on Advances in Engineering and Technology, edited by J. A. Mwakali and G. Taban-Wani. Oxford: Elsevier Science Ltd.
  • Lv, P., Wu, C., Ma, L., and Yuan, Z. 2008. A study on the economic efficiency of hydrogen production from biomass residues in China. Renewable Energy 33:1874–1879.
  • Mohammed, M. A. A., Salmiaton, A., Wan Azlina, W. A. K. G., Mohammad Amran, M. S., and Fakhru’l-Razi, A. 2011. Air gasification of empty fruit bunch for hydrogen-rich gas production in a fluidized-bed reactor. Energy Convers Manage 52:1555–1561.
  • Mohammed, M. A. A., Salmiaton, A., Wan Azlina, W. A. K. G., Mohammad Amran, M. S., Fakhru’l-Razi, A., and Taufiq-Yap, Y. H. 2011. Hydrogen rich gas from oil palm biomass as a potential source of renewable energy in Malaysia. Renewable Sustainable Energy Rev. 15:1258–1270.
  • Ogi, T., Nakanishi, M., Fukuda, Y., and Matsumoto, K. 2013. Gasification of oil palm residues (empty fruit bunch) in an entrained-flow gasifier. Fuel 104:28–35.
  • Parks, G. D., Curry-Nkansah, M., Hughes, E., and Sterzinger, G. 2011. Hydrogen Production Cost Estimation Using Biomass Gasification. U.S. Department of Energy Hydrogen and Fuel Cells Program: National Renewable Energy Laboratory.
  • Peters, M., Timmerhaus, K., and West, R. 2003. Plant Design and Economics for Chemical Engineers. Columbus, OH: McGraw-Hill.
  • Pudukudy, M., Yaakob, Z., Mohammad, M., Narayanan, B., and Sopian, K. 2014. Renewable hydrogen economy in Asia – Opportunities and challenges: An overview. Renewable Sustainable Energy Rev. 30:743–757.
  • Shuit, S. H., Tan, K. T., Lee, K. T., and Kamaruddin, A. H. 2009. Oil palm biomass as a sustainable energy source: A Malaysian case study. Energy 34:1225–1235.
  • Smith, R. 2005. Chemical Process Design and Integration. NewJersey, NJ: Wiley.
  • Spath, P., Aden, A., Eggeman, T., Ringer, M., Wallace, B., and Jechura, J. 2005. Biomass to Hydrogen Production Detailed Design and Economics Utilizing the Battelle Columbus Laboratory Indirectly-Heated Gasifier. In Technical Report NREL/TP-510-37408.
  • Tinaut, F. V., Melgar, A., Pérez, J. F., and Horrillo, A. 2008. Effect of biomass particle size and air superficial velocity on the gasification process in a downdraft fixed bed gasifier. An experimental and modelling study. Fuel Process. Technol. 89:1076–1089.
  • Udomsirichakorn, J., and Abdul Salam, P. 2014. Review of hydrogen-enriched gas production from steam gasification of biomass: The prospect of CaO-based chemical looping gasification. Renewable Sustainable Energy Rev. 30:565–579.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.