AbstractHydrogen gas has tremendous potential as an environmentally acceptable energy carrier for vehicles. A cutting edge technology called a microbial electrolysis cell (MEC) can achieve sustainable and clean hydrogen production from a wide range of renewable biomass and wastewaters. Enhancing the hydrogen production rate and lowering the energy input are the main challenges of MEC technology. MEC reactor design is one of the crucial factors which directly influence on hydrogen and current production rate in MECs. The rector design is also a key factor to up-scaling. Traditional MEC designs incorporated membranes, but it was recently shown that membrane-free designs can lead to both high hydrogen recoveries and production rates. Since the...
The increasingly adverse effects of climate change caused by a variety of fossil-based fuel demands ...
This article presents a critical mini-review of research conducted on bioelectrochemical reactors wi...
The organic matter consumption and hydrogen production rate were evaluated in a two-chamber microbia...
Hydrogen gas has tremendous potential as an environmentally acceptable energy carrier for vehicles. ...
AbstractHydrogen gas has tremendous potential as an environmentally acceptable energy carrier for ve...
The use of electrochemically active bacteria to break down organic matter, combined with the additio...
Microbial electrolysis cells (MEC) invented on the basis of microbial fuel cells (MFC) provide a nov...
Majority of energy is derived from fossil fuels, which are non-sustainable resources that may exhaus...
International audienceMicrobial electrolysis cells (MECs) produce hydrogen at the cathode associated...
Microbial electrolysis cell (MEC) system is an environmentally friendly method for clean biohydrogen...
This study demonstrates microbial electrolysis cell (MEC) scale-up from a 50. mL to a 10. L cell. In...
Graduation date: 2010Microbial electrolysis provides a new approach for hydrogen generation from ren...
Large amounts of hydrogen are produced worldwide, which are nearly all from fossil origin. Use of bi...
The need for renewable and sustainable fuel and energy storage sources is pressing. Biohydrogen has ...
Microbial electrolysis cells (MECs) are perceived as a potential and promising innovative biotechnol...
The increasingly adverse effects of climate change caused by a variety of fossil-based fuel demands ...
This article presents a critical mini-review of research conducted on bioelectrochemical reactors wi...
The organic matter consumption and hydrogen production rate were evaluated in a two-chamber microbia...
Hydrogen gas has tremendous potential as an environmentally acceptable energy carrier for vehicles. ...
AbstractHydrogen gas has tremendous potential as an environmentally acceptable energy carrier for ve...
The use of electrochemically active bacteria to break down organic matter, combined with the additio...
Microbial electrolysis cells (MEC) invented on the basis of microbial fuel cells (MFC) provide a nov...
Majority of energy is derived from fossil fuels, which are non-sustainable resources that may exhaus...
International audienceMicrobial electrolysis cells (MECs) produce hydrogen at the cathode associated...
Microbial electrolysis cell (MEC) system is an environmentally friendly method for clean biohydrogen...
This study demonstrates microbial electrolysis cell (MEC) scale-up from a 50. mL to a 10. L cell. In...
Graduation date: 2010Microbial electrolysis provides a new approach for hydrogen generation from ren...
Large amounts of hydrogen are produced worldwide, which are nearly all from fossil origin. Use of bi...
The need for renewable and sustainable fuel and energy storage sources is pressing. Biohydrogen has ...
Microbial electrolysis cells (MECs) are perceived as a potential and promising innovative biotechnol...
The increasingly adverse effects of climate change caused by a variety of fossil-based fuel demands ...
This article presents a critical mini-review of research conducted on bioelectrochemical reactors wi...
The organic matter consumption and hydrogen production rate were evaluated in a two-chamber microbia...