[HTML][HTML] Cultivating electroactive microbes—from field to bench

MO Yee, J Deutzmann, A Spormann… - Nanotechnology, 2020 - iopscience.iop.org
Electromicrobiology is an emerging field investigating and exploiting the interaction of
microorganisms with insoluble electron donors or acceptors. Some of the most recently …

[图书][B] Microbial electrochemical and fuel cells: fundamentals and applications

K Scott, EH Yu - 2015 - books.google.com
Microbial Electrochemical and Fuel Cells: Fundamentals and Applications contains the most
updated information on bio-electrical systems and their ability to drive an electrical current …

Microbial fuel-cells: electricity production from carbohydrates

RM Allen, HP Bennetto - Applied biochemistry and biotechnology, 1993 - Springer
Microbial fuel cells containing Proteus vulgaris and oxidation-reduction (“redox”) mediators
were investigated. The bacteria were chemically immobilized onto the surface of graphite felt …

Electrochemical communication between living cells and conductive surfaces

G Pankratova, L Gorton - Current Opinion in Electrochemistry, 2017 - Elsevier
Highlights•Electrode–microorganism electron transfer (ET) interactions are
discussed.•Mediators for improving electrode–microorganism communication are …

Operational and technical considerations for microbial electrosynthesis

J Desloover, JBA Arends, T Hennebel, K Rabaey - 2012 - portlandpress.com
Extracellular electron transfer has, in one decade, emerged from an environmental
phenomenon to an industrial process driver. On the one hand, electron transfer towards …

Direct and indirect electrical stimulation of microbial metabolism

JC Thrash, JD Coates - Environmental science & technology, 2008 - ACS Publications
All organisms require an electron donor and acceptor, frequently in chemical form, but an
elegant alternative is to supply these via direct electrochemical means. Electricity has been …

[PDF][PDF] Microbial fuel cells: electrode materials

S Kalathil, SA Patil, D Pant - Encyclopedia of Interfacial Chemistry, 2018 - academia.edu
The use of microbial extracellular electron exchange processes for catalyzing oxidation and
reduction reactions at electrodes, also referred to as microbial electrocatalysis, has led to the …

Carbon dioxide and organic waste valorization by microbial electrosynthesis and electro-fermentation

Y Jiang, HD May, L Lu, P Liang, X Huang, ZJ Ren - Water research, 2019 - Elsevier
Carbon-rich waste materials (solid, liquid, or gaseous) are largely considered to be a burden
on society due to the large capital and energy costs for their treatment and disposal …

Stainless steel foam increases the current produced by microbial bioanodes in bioelectrochemical systems

SF Ketep, A Bergel, A Calmet, B Erable - Energy & Environmental …, 2014 - pubs.rsc.org
Stainless steel is gaining increasing interest as an anodic material in bioelectrochemical
systems and beginning to challenge the more conventional carbon-based materials. Here …

[HTML][HTML] Extracellular electron transfer from cathode to microbes: application for biofuel production

O Choi, BI Sang - Biotechnology for biofuels, 2016 - Springer
Extracellular electron transfer in microorganisms has been applied for bioelectrochemical
synthesis utilizing microbes to catalyze anodic and/or cathodic biochemical reactions …