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ACS Applied Materials & Interfaces|August 2, 2013
Use of pyrolyzed iron ethylenediaminetetraacetic acid modified activated carbon as air-cathode catalyst in microbial fuel cellsXue Xia, Fang Zhang, Xiaoyuan Zhang, et al.Applied Microbiology and Biotechnology|June 19, 2013
Characterization of bacterial and archaeal communities in air-cathode microbial fuel cells, open circuit and sealed-off reactorsNoura Shehab, Dong Li, Gary L Amy, et al.Water Research|October 25, 2020
Separation and recovery of ammonium from industrial wastewater containing methanol using copper hexacyanoferrate (CuHCF) electrodesRui Gao, Luiza Bonin, Jose María Carvajal Arroyo, et al.Water Research|July 12, 2019
Mutual benefits of acetate and mixed tungsten and molybdenum for their efficient removal in 40 L microbial electrolysis cellsLiping Huang, Fuping Tian, Yuzhen Pan, et al.Water Research|March 4, 2005
Electricity generation from cysteine in a microbial fuel cellBruce E Logan, Cassandro Murano, Keith Scott, et al.Nano Letters|March 19, 2011
Batteries for efficient energy extraction from a water salinity differenceFabio La Mantia, Mauro Pasta, Heather D Deshazer, et al.Nature Communications|February 22, 2025
High H<sub>2</sub>O<sub>2</sub> production in membrane-free electrolyzer via anodic bubble shielding towards robust rural disinfectionKexin Yi, Chao Li, Shaogang Hu, et al.Bioelectrochemistry (Amsterdam, Netherlands)|October 10, 2017
Electrical current generation in microbial electrolysis cells by hyperthermophilic archaea Ferroglobus placidus and Geoglobus ahangariYasemin D Yilmazel, Xiuping Zhu, Kyoung-Yeol Kim, et al.Biotechnology Advances|March 14, 2015
A logical data representation framework for electricity-driven bioproduction processesSunil A Patil, Sylvia Gildemyn, Deepak Pant, et al.Environmental Science & Technology|January 31, 2013
Oxygen-reducing biocathodes operating with passive oxygen transfer in microbial fuel cellsXue Xia, Justin C Tokash, Fang Zhang, et al.Pageof 29