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Applied and Environmental Microbiology|October 13, 2009
Hydrogen production by geobacter species and a mixed consortium in a microbial electrolysis cellDouglas F Call, Rachel C Wagner, Bruce E LoganEnvironmental Science & Technology|August 14, 2010
Optimal set anode potentials vary in bioelectrochemical systemsRachel C Wagner, Douglas F Call, Bruce E LoganEnvironmental Science & Technology|April 17, 2009
High surface area stainless steel brushes as cathodes in microbial electrolysis cellsDouglas F Call, Matthew D Merrill, Bruce E LoganEnvironmental Science & Technology|January 12, 2008
Electricity generation from synthetic acid-mine drainage (AMD) water using fuel cell technologiesShaoan Cheng, Brian A Dempsey, Bruce E LoganEnvironmental Science & Technology|June 2, 2007
Tubular membrane cathodes for scalable power generation in microbial fuel cellsYi Zuo, Shaoan Cheng, Doug Call, et al.Biosensors & Bioelectronics|December 22, 2009
Improved performance of single-chamber microbial fuel cells through control of membrane deformationXiaoyuan Zhang, Shaoan Cheng, Xia Huang, et al.Environmental Technology|June 11, 2009
Reducing organic loads in wastewater effluents from paper recycling plants using microbial fuel cellsLiping Huang, Shaoan Cheng, Farzaneh Rezaei, et al.Bioresource Technology|September 20, 2012
Syntrophic interactions drive the hydrogen production from glucose at low temperature in microbial electrolysis cellsLu Lu, Defeng Xing, Nanqi Ren, et al.Biosensors & Bioelectronics|April 21, 2009
Hydrogen production with effluent from an ethanol-H2-coproducing fermentation reactor using a single-chamber microbial electrolysis cellLu Lu, Nanqi Ren, Defeng Xing, et al.Biosensors & Bioelectronics|August 12, 2011
Adaptation to high current using low external resistances eliminates power overshoot in microbial fuel cellsYiying Hong, Douglas F Call, Craig M Werner, et al.Pageof 46