Showing results (101-110 of 288) with videos related to
Sort By:
Pageof 29
Environmental Science & Technology|January 12, 2008
Electricity generation from synthetic acid-mine drainage (AMD) water using fuel cell technologiesShaoan Cheng, Brian A Dempsey, Bruce E LoganBioelectrochemistry (Amsterdam, Netherlands)|May 14, 2018
Electrotrophic activity and electrosynthetic acetate production by Desulfobacterium autotrophicum HRM2Zehra Zaybak, Bruce E Logan, John M PisciottaBiotechnology and Bioengineering|August 7, 2008
Enzymatic hydrolysis of cellulose coupled with electricity generation in a microbial fuel cellFarzaneh Rezaei, Tom L Richard, Bruce E LoganBioresource Technology|September 7, 2015
Development of carbon free diffusion layer for activated carbon air cathode of microbial fuel cellsWulin Yang, Kyoung-Yeol Kim, Bruce E LoganBioelectrochemistry (Amsterdam, Netherlands)|August 24, 2017
Addition of acetate improves stability of power generation using microbial fuel cells treating domestic wastewaterJennifer L Stager, Xiaoyuan Zhang, Bruce E LoganBioelectrochemistry (Amsterdam, Netherlands)|August 12, 2017
AQDS immobilized solid-phase redox mediators and their role during bioelectricity generation and RR2 decolorization in air-cathode single-chamber microbial fuel cellsClaudia M Martinez, Xiuping Zhu, Bruce E LoganEnvironmental Science & Technology|July 15, 2016
Substantial Humic Acid Adsorption to Activated Carbon Air Cathodes Produces a Small Reduction in Catalytic ActivityWulin Yang, Valerie J Watson, Bruce E LoganColloids and Surfaces. B, Biointerfaces|November 27, 2007
Spectral force analysis using atomic force microscopy reveals the importance of surface heterogeneity in bacterial and colloid adhesion to engineered surfacesHuilian Ma, Charles J Winslow, Bruce E LoganEnvironmental Science & Technology|May 31, 2018
Regenerable Nickel-Functionalized Activated Carbon Cathodes Enhanced by Metal Adsorption to Improve Hydrogen Production in Microbial Electrolysis CellsKyoung-Yeol Kim, Wulin Yang, Bruce E LoganEnvironmental Microbiology|October 9, 2002
Perchlorate reduction by a novel chemolithoautotrophic, hydrogen-oxidizing bacteriumHusen Zhang, Mary Ann Bruns, Bruce E LoganPageof 29