The decentralized production of bioelectricity as well as the bioremediation of contaminated sediments might be achieved by the incorporation of an anode into anaerobic sediments and a cathode suspended in the water column. In this context, a sediment microbial fuel cell microcosm was carried out using different configurations of electrodes and types of materials (carbon and stainless steel). The results showed a long-term continuous production of electricity (>300 days), with a maximum voltage of approximately 100 mV reached after ~30 days of operation. A twofold increase of voltage was noticed with a twofold increase of surface area (~30 mV to ~60 mV vs. 40 cm2 to 80 cm2), while a threefold increase was obtained after the substitution of ...
Graduation date: 2009A benthic microbial fuel cell (BMFC) is an electrochemical device that\ud gener...
Microbial fuel cells hold great promise as a sustainable biotechnological solution to future energy ...
Objectives To investigate the contribution of direct electron transfer mechanisms to electricity pr...
The benefits of sediment microbial fuel cells (SMFCs) go beyond energy generation for low-power appl...
Many bacteria can convert chemical energy to electrical energy: they oxidize diverse organic substra...
[Background] Microbial fuel cells (MFCs) operating with complex microbial communities have been exte...
Bio-electrical responses obtained from freshwater sediments by employing microbial fuel cell (MFC) t...
International audienceWe have built a sedimentary fuel cell or Sediment Microbial Fuel Cell (SMFC). ...
Global environmental concerns, the depletion of the earth's finite resources and economic considerat...
A procedure was proposed to mimic marine microbial fuel cell (MFC) in liquid phase. A graphite anode...
The attachment of microorganisms to electrodes is of great interest for electricity generation in mi...
A mixed microbial population naturally presents in seawater was used as active anodic biofilm of two...
The microbial fuel cell (MFC) is a novel biotechnology that combines wastewater treatment and energy...
Steel-slag was added as a catalytic material of redox reaction to sediment microbial fuel cells (SMF...
Summary Performance of sediment microbial fuel cells (SMFCs) with aerated (A-SMFC) and nonaerated (N...
Graduation date: 2009A benthic microbial fuel cell (BMFC) is an electrochemical device that\ud gener...
Microbial fuel cells hold great promise as a sustainable biotechnological solution to future energy ...
Objectives To investigate the contribution of direct electron transfer mechanisms to electricity pr...
The benefits of sediment microbial fuel cells (SMFCs) go beyond energy generation for low-power appl...
Many bacteria can convert chemical energy to electrical energy: they oxidize diverse organic substra...
[Background] Microbial fuel cells (MFCs) operating with complex microbial communities have been exte...
Bio-electrical responses obtained from freshwater sediments by employing microbial fuel cell (MFC) t...
International audienceWe have built a sedimentary fuel cell or Sediment Microbial Fuel Cell (SMFC). ...
Global environmental concerns, the depletion of the earth's finite resources and economic considerat...
A procedure was proposed to mimic marine microbial fuel cell (MFC) in liquid phase. A graphite anode...
The attachment of microorganisms to electrodes is of great interest for electricity generation in mi...
A mixed microbial population naturally presents in seawater was used as active anodic biofilm of two...
The microbial fuel cell (MFC) is a novel biotechnology that combines wastewater treatment and energy...
Steel-slag was added as a catalytic material of redox reaction to sediment microbial fuel cells (SMF...
Summary Performance of sediment microbial fuel cells (SMFCs) with aerated (A-SMFC) and nonaerated (N...
Graduation date: 2009A benthic microbial fuel cell (BMFC) is an electrochemical device that\ud gener...
Microbial fuel cells hold great promise as a sustainable biotechnological solution to future energy ...
Objectives To investigate the contribution of direct electron transfer mechanisms to electricity pr...