Viability and Metal Reduction of Shewanella oneidensis MR-1 under CO2 Stress: Implications for Ecological Effects of CO2 Leakage from Geologic CO2 Sequestration

Author:

Wu Bing1,Shao Hongbo1,Wang Zhipeng1,Hu Yandi1,Tang Yinjie J.1,Jun Young-Shin1

Affiliation:

1. Department of Energy, Environmental and Chemical Engineering, Washington University, St. Louis, Missouri 63130, United States

Publisher

American Chemical Society (ACS)

Subject

Environmental Chemistry,General Chemistry

Reference29 articles.

1. Peer Reviewed: Safe Storage of CO2 in Deep Saline Aquifiers

2. Burruss, R. C.; Brennan, S. T.; Freeman, P. A.; Merrill, M. D.; Ruppert, L. F.; Becker, M. F.; Herkelrath, W. N.; Kharaka, Y. K.; Neuzil, C. E.; Swanson, S. M.; Cook, T. A.; Klett, T. R.; Nelson, P. H.; Schenk, C. J.Development of a Probabilistic Assessment Methodology for Evaluation of Carbon Dioxide Storage: U.S. Geological Survey Open-file 2009-1035, In 2009; 81p. Available only online athttp://pubs.usgs.gov/of/2009/1035/(accessed June 30, 2010).

3. Semianalytical Solution for CO2 Leakage through an Abandoned Well

4. Nelson, C. R.; Evans, J. M.; Sorensen, J. A.; Steadman, E. N.Factors affecting the potential for CO2leakage from geologic sinks, Plain CO2reduction (PCOR) Partnership, 2005. Available only online athttp://www.undeerc.org/PCOR/newsandpubs/pdf/FactorsAffectingPotential.pdf(accessed June 30, 2010).

5. DOE Carbon Sequestration Technology Roadmap and Program Plan. U.S. DOE and NETL: Washington DC, 2007.

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