1,417
Views
28
CrossRef citations to date
0
Altmetric
Technical Paper

Anaerobic Bioconversion of Carbon Dioxide to Biogas in an Upflow Anaerobic Sludge Blanket Reactor

&
Pages 95-103 | Published online: 24 Jan 2012

References

  • Samenow, J. U.S. Environmental Protection Agency Global Warming Site; available at http://yosemite.epa.gov/oar/globalwarming.nsf/content/Climate.html (accessed 2007).
  • Keeling, C.D.; Whorf T.P. Carbon Dioxide Research Group, Scripps Institution of Oceanography, University of California, La Jolla, CA; available at http://cdiac.esd.ornl.gov/trends/co2/sio-mlo.htm (accessed 2007).
  • Hitchon, B. Aquifer Disposal of Carbon Dioxide: Pilot Experiment for Geological Sequestration of Carbon Dioxide in Saline Aquifer Brine Formations Hydrodynamic and Mineral Trapping–Proof of Concept; Geoscience Publishing: Sherwood Park, Alberta, Canada, 1998.
  • Reeve, D.A. The Capture and Storage of Carbon Dioxide Emissions; Office of Energy Research and Development Natural Resources: Ottawa, Ontario, Canada, 2000.
  • Herzog, H.; Caldeira, K.; Reilly, J. An Issue of Permanence: Assessing the Effectiveness of Temporary Carbon Storage; Climatic Change 2003, 59, 293–310.
  • VanderWiel, D.P.; Zilka-Marco, J.L.; Wang, Y.; Tonkovich, A.Y.; Wegeng, R.S. Carbon Dioxide Conversions in Microreactors; Pacific Northwest National Laboratory: Richland, WA, 1999.
  • Roh, Y.; McMillan A.D.; Lauf, R.J.; Phelps T.J. Utilization of Biomineralization Processes for Carbon Sequestration; Abstract for Annual Meeting American Geophysical Union, December 15–19, San Francisco, CA, 2000.
  • Maeda, K.; Owada, M.; Kimura, N.; Omata, K.; Karube, I. CO2 Fixation from the Flue Gas on Coal-Fired Thermal Power Plant by Microalgae; Energy Convers. Mgmt. 1995, 36, 717–720.
  • Otaguchi, K.; Kajiwara, S.; Mustaqim, D.; Takahashi, N. Cyanobacterial Bioconversion of Carbon Dioxide for Fuel Productions; Energy Convers. Mgmt. 1997, 38, S523–S528.
  • Kuroda, M.; Watanabe, T. CO2 Reduction to Methane and Acetate Using a Bio-Electro Reactor with Immobilized Methanogens and Homoacetogens on Electrodes; Energy Convers. Mgmt. 1995, 36, 787–790.
  • Lombardi, L. Life Cycle Assessment Comparison of Technical Solutions for CO2 Emissions Reduction in Power Generation; Energy Convers. Mgmt. 2003, 44, 93–108.
  • Gielden, D. CO2 Removal in Iron and Steel Industry; Energy Convers. Mgmt. 2003, 44, 1027–1037.
  • Harley, J.P.D.; Klein, A.; Prescott, L.M. Microbiology; William C. Brown: Dubuque, IA, 1990.
  • Wolin, M.J. In Microbial Production and Utilization of Gases (H 2, CH 4, CO), Sclegel H.G., Gottsschalk G., Pfennig N., Eds.; E. Goltze Verlag: Gottingen, Germany, 1976, pp 141–150.
  • Lettinga, G. In Proceedings of the 4th European Sewage and Refuge Symposium, Munich, Germany, 1978.
  • Sreekrishnan, T.R.; Ali, M. New Developments in Bioreactor Design for Biomethanation Process, United Nations Development Program; Bioenergy News 1999, 3, 20–23.
  • Praveen, V.V.; Ramachandran, K.B. In Proceedings of the Ninth National Convention of Institution of Engineers; Ayyanna, C., Ed.; Vishakhapatnam, India, 1993.
  • Mulligan, C.N.; Safi, B.; Mercier, P.; Chebib, J. In Environmental Bio-technology: Principles and Applications; Moo-Young, M., Anderson W.A.,Chakrabarty, A.M., Eds.; Kluwer: Dordrecht, the Netherlands, 1996; pp 544–566.
  • Atlas, M. Handbook of Microbiological Media; CRC: Boca Raton, FL, 1997; pp 898-901, 911.
  • Kleerebezem R.; Macarie H. Anaerobic Digestion Comes of Age; Chem. Eng. 2003, 110, 56–64.
  • Tchobanoglous G.; Burton, F.L.; Stensel, D.H.; Metcalf and Eddy Inc. Wastewater Engineering; Treatment and Reuse, 4th ed.; McGraw-Hill: New York, 2003.
  • Clescerl, L.S.; Greenberg, A.E.; Eaton, A.D. Standard Methods for the Examination of Water and Wastewater, 20th ed.; American Public Health Association, American Water Works Association, and the Water Environment Federation: Washington, DC, 1998.
  • Dolfing, J.; Bloemen, W. Activity Measurement as a Tool to Characterize the Microbial Composition of Methanogenic Environments; J. Microbial. Methods 1985, 4, 1–12.
  • James, A.; Chernicaro, C.A.L., Campos, C.M.M. The Development of a New Methodology for the Assessment of Specific Methanogenic Activity; Water Res. 1990, 24, 813–825.
  • Soto, M.; Mendez, R.; Lema, J.M. Methanogenic and Non-Methanogenic Activity Tests. Theoretical Basis and Experimental Setup; Water Res. 1993, 27, 1361–1376.
  • Ince, O.; Kasapgil, B.; Yenigün, O. Determination of Potential Methane Production Capacity of a Granular Sludge from a Pilot-Scale Upflow Anaerobic Sludge Blanket Reactor Using a Specific Methanogenic Activity; J. Chem. Technol. Biotechnol. 2001, 76, 573–578.
  • Gonzalez-Gil, G.H.; Lenz, P.N.L.; Van Aelst, A.; Van As, H.; Versprille, A.I.; Lettinga, G. Cluster Structure of Anaerobic Aggregates of an Expanded Granular Sludge Bed Reactor; Appl. Environ. Microbiol. 2001, 67, 3683–3692.
  • Ferry, J.G. Methanogenesis: Ecology, Physiology, Biochemistry & Genetics; Chapman and Hall: New York, 1993.
  • Fang, H.H.P.; Chui, H.K.; Li, Y.Y. Effect of Degradation Kinetics on the Microstructure of Anaerobic Biogranules; Water Sci. Technol. 1995, 32, 165–172.

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.