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- Publications
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Geobacter sulfurreducens biofilms developed under different growth conditions on glassy carbon electrodes: insights using cyclic voltammetry.
- K. Katuri, Paul Kavanagh, S. Rengaraj, D. Leech
- Chemistry, Medicine
- Chemical communications
- 22 June 2010
Growth of biofilms of G. sulfurreducens on glassy carbon that yield a bioelectrocatalytic response to acetate oxidation is achieved using a fixed applied potential, with current density for acetate… Expand
Charge transport through Geobacter sulfurreducens biofilms grown on graphite rods.
- K. Katuri, S. Rengaraj, Paul Kavanagh, V. O'flaherty, D. Leech
- Chemistry, Medicine
- Langmuir : the ACS journal of surfaces and…
- 22 May 2012
Biofilms of the electroactive bacterium Geobacter sulfurreducens were induced to grow on graphite-rod electrodes under a potential of 0 V (vs Ag/AgCl) in the presence of acetate as an electron donor.… Expand
Enrichment of extremophilic exoelectrogens in microbial electrolysis cells using Red Sea brine pools as inocula.
- Noura A. Shehab, J. Ortiz-Medina, +4 authors Pascal E. Saikaly
- Biology, Medicine
- Bioresource technology
- 1 September 2017
Applying microbial electrochemical technologies for the treatment of highly saline or thermophilic solutions is challenging due to the lack of proper inocula to enrich for efficient exoelectrogens.… Expand
Multiple paths of electron flow to current in microbial electrolysis cells fed with low and high concentrations of propionate
- Ananda Rao Hari, K. Katuri, Eduardo Gorrón, Bruce E. Logan, Pascal E. Saikaly
- Chemistry, Medicine
- Applied Microbiology and Biotechnology
- 3 March 2016
Microbial electrolysis cells (MECs) provide a viable approach for bioenergy generation from fermentable substrates such as propionate. However, the paths of electron flow during propionate oxidation… Expand
Ice911 Research: A Reversible Localized Geo-Engineering Technique to Mitigate Climate Change Effects: Field Testing, Instrumentation and Climate Modeling Results
- L. A. Field, A. Sholtz, +10 authors D. Perovich
- Environmental Science
- 1 December 2017