Key factors affecting microbial anode potential in a microbial electrolysis cell for H2 production
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Aijie Wang | Nanqi Ren | Jizhong Zhou | Jizhong Zhou | N. Ren | Aijie Wang | Wenzong Liu | Shaoan Cheng | Shaoan Cheng | Wenzong Liu
[1] N. Samuelov,et al. Effect of growth conditions on the distribution of methanol carbon between assimilation and oxidation pathways in Pseudomonas C. , 1982, Biotechnology and bioengineering.
[2] Hong Liu,et al. Electricity generation using an air-cathode single chamber microbial fuel cell in the presence and absence of a proton exchange membrane. , 2004, Environmental science & technology.
[3] Derek R Lovley,et al. Graphite electrodes as electron donors for anaerobic respiration. , 2004, Environmental microbiology.
[4] Hong Liu,et al. Electrochemically assisted microbial production of hydrogen from acetate. , 2005, Environmental science & technology.
[5] In S. Kim,et al. Biohydrogen production via biocatalyzed electrolysis in acetate-fed bioelectrochemical cells and microbial community analysis , 2008 .
[6] J. Wimpenny,et al. Bacterial community structure, compartmentalization and activity in a microbial fuel cell , 2006, Journal of applied microbiology.
[7] D. R. Bond,et al. Electron Transfer by Desulfobulbus propionicus to Fe(III) and Graphite Electrodes , 2004, Applied and Environmental Microbiology.
[8] Bruce E Logan,et al. Sustainable and efficient biohydrogen production via electrohydrogenesis , 2007, Proceedings of the National Academy of Sciences.
[9] Y. Zuo,et al. Isolation of the Exoelectrogenic Bacterium Ochrobactrum anthropi YZ-1 by Using a U-Tube Microbial Fuel Cell , 2008, Applied and Environmental Microbiology.
[10] H. Hamelers,et al. Effects of membrane cation transport on pH and microbial fuel cell performance. , 2006, Environmental science & technology.
[11] Byung Hong Kim,et al. Continuous electricity production from artificial wastewater using a mediator-less microbial fuel cell. , 2006, Bioresource technology.
[12] T. Richard,et al. Simultaneous Cellulose Degradation and Electricity Production by Enterobacter cloacae in a Microbial Fuel Cell , 2009, Applied and Environmental Microbiology.
[13] Byung Hong Kim,et al. A mediator-less microbial fuel cell using a metal reducing bacterium, Shewanella putrefaciens , 2002 .
[14] Keith Scott,et al. Electricity generation from cysteine in a microbial fuel cell. , 2005, Water research.
[15] Derek R Lovley,et al. Growth with high planktonic biomass in Shewanella oneidensis fuel cells , 2007, FEMS microbiology letters.
[16] D. Lovley. Microbial Energizers: Fuel Cells that Keep on Going , 2006 .
[17] H. G. Kim,et al. The microbial community analysis of a 5-stage BNR process with step feed system. , 2003, Water science and technology : a journal of the International Association on Water Pollution Research.
[18] Willy Verstraete,et al. The anode potential regulates bacterial activity in microbial fuel cells , 2008, Applied Microbiology and Biotechnology.
[19] G. Gil,et al. Operational parameters affecting the performannce of a mediator-less microbial fuel cell. , 2003, Biosensors & bioelectronics.
[20] I. Chang,et al. Mass Transport through a Proton Exchange Membrane (Nafion) in Microbial Fuel Cells , 2008 .
[21] Bruce E Rittmann,et al. Conduction‐based modeling of the biofilm anode of a microbial fuel cell , 2007, Biotechnology and bioengineering.
[22] B J Bassam,et al. Fast and sensitive silver staining of DNA in polyacrylamide gels. , 1991, Analytical biochemistry.
[23] C. Melhuish,et al. Comparative study of three types of microbial fuel cell , 2005 .
[24] H. Hamelers,et al. Principle and perspectives of hydrogen production through biocatalyzed electrolysis , 2006 .
[25] Duu-Jong Lee,et al. Electrochemically Assisted Biohydrogen Production from Acetate , 2008 .
[26] Brenda Little,et al. A biofilm enhanced miniature microbial fuel cell using Shewanella oneidensis DSP10 and oxygen reduction cathodes. , 2007, Biosensors & bioelectronics.
[27] W. Verstraete,et al. Bioanode performance in bioelectrochemical systems: recent improvements and prospects. , 2009, Trends in biotechnology.
[28] Leonard M Tender,et al. Effect of electrode potential on electrode-reducing microbiota. , 2006, Environmental science & technology.
[29] W. Verstraete,et al. Microbial fuel cells: novel biotechnology for energy generation. , 2005, Trends in biotechnology.
[30] Bruce E Logan,et al. Hydrogen and electricity production from a food processing wastewater using fermentation and microbial fuel cell technologies. , 2005, Water research.
[31] B. Logan,et al. Electricity-producing bacterial communities in microbial fuel cells. , 2006, Trends in microbiology.
[32] Tingyue Gu,et al. A state of the art review on microbial fuel cells: A promising technology for wastewater treatment and bioenergy. , 2007, Biotechnology advances.
[33] Soo-Jung Choi,et al. Application of biocathode in microbial fuel cells: cell performance and microbial community , 2008, Applied Microbiology and Biotechnology.
[34] B. Logan,et al. Graphite fiber brush anodes for increased power production in air-cathode microbial fuel cells. , 2007, Environmental science & technology.
[35] Stefano Freguia,et al. Microbial fuel cells: methodology and technology. , 2006, Environmental science & technology.
[36] B. Min,et al. Electricity generation using membrane and salt bridge microbial fuel cells. , 2005, Water research.
[37] W. Verstraete,et al. A microbial fuel cell capable of converting glucose to electricity at high rate and efficiency , 2004, Biotechnology Letters.
[38] Amy Pruden,et al. Microbial fuel cell in enhancing anaerobic biodegradation of diesel , 2009 .
[39] W. Verstraete,et al. Microbial phenazine production enhances electron transfer in biofuel cells. , 2005, Environmental science & technology.
[40] Alice Dohnalkova,et al. Electrically conductive bacterial nanowires produced by Shewanella oneidensis strain MR-1 and other microorganisms. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[41] Bruce E Logan,et al. Hydrogen production in a single chamber microbial electrolysis cell lacking a membrane. , 2008, Environmental science & technology.
[42] Alice Dohnalkova,et al. Electrically conductive bacterial nanowires produced by Shewanella oneidensis strain MR-1 and other microorganisms (Proceedings of the National Academy of Sciences of the United States of America (2006) 103, 30, (11358-11363) DOI 10.1073/pnas.0604517103) , 2009 .
[43] Kenneth H. Nealson,et al. The polarization behavior of the anode in a microbial fuel cell , 2008 .
[44] Hong Liu,et al. Power generation in fed-batch microbial fuel cells as a function of ionic strength, temperature, and reactor configuration. , 2005, Environmental science & technology.