The utilization of bioelectrochemical systems for methane production has attracted increasing attention, but producing methane in these systems requires additional voltage to overcome large cathode overpotentials. To eliminate the need for electrical grid energy, we constructed a microbial reverse-electrodialysis methanogenesis cell (MRMC) by placing a reverse electrodialysis (RED) stack between an anode with exoelectrogenic microorganisms and a methanogenic biocathode. In the MRMC, renewable salinity gradient energy was converted to electrical energy, thus providing the added potential needed for methane evolution from the cathode. The feasibility of the MRMC was examined using three different cathode materials (stainless steel mesh coated...
A methane-producing microbial electrolysis cell (MEC) is a technology to convert CO2 into methane, u...
This study describes the performance of a microbial biocathode, based on a hydrogenophilic methanoge...
Methane-producing Bioelectrochemical systems (BESs) is a promising technology converting renewable e...
ABSTRACT: The utilization of bioelectrochemical systems for methane production has attracted increas...
In this research, we investigated the bioelectrochemical production of methane gas from carbon dioxi...
Abstract Background We previously reversed methanogenesis in microbial fuel cells (MFCs) to produce ...
Microbial electrolysis cells (MECs) are an innovative and emerging technique based on the use of sol...
Methane production at biocathodes is an innovative approach of storing renewable electrical energy i...
A methane-producing microbial electrolysis cell (MEC) is a promising energy-recovery technology, yet...
A methane-producing microbial electrolysis cell (MEC) is a novel and highly versatile technology whi...
Biocatalyzed electrolysis is a microbial fuel cell based technology for the generation of hydrogen g...
The conversion of electrical current into methane (electromethanogenesis) by microbes represents one...
AbstractTo establish a biotechnological system to convert CO2 into methane, we are trying to develop...
BACKGROUND In a methane-producing bioelectrochemical system (BES) microorganisms grow on an electrod...
ABSTRACT: In methanogenic microbial electrolysis cells (MMCs), CO2 is reduced to methane using a met...
A methane-producing microbial electrolysis cell (MEC) is a technology to convert CO2 into methane, u...
This study describes the performance of a microbial biocathode, based on a hydrogenophilic methanoge...
Methane-producing Bioelectrochemical systems (BESs) is a promising technology converting renewable e...
ABSTRACT: The utilization of bioelectrochemical systems for methane production has attracted increas...
In this research, we investigated the bioelectrochemical production of methane gas from carbon dioxi...
Abstract Background We previously reversed methanogenesis in microbial fuel cells (MFCs) to produce ...
Microbial electrolysis cells (MECs) are an innovative and emerging technique based on the use of sol...
Methane production at biocathodes is an innovative approach of storing renewable electrical energy i...
A methane-producing microbial electrolysis cell (MEC) is a promising energy-recovery technology, yet...
A methane-producing microbial electrolysis cell (MEC) is a novel and highly versatile technology whi...
Biocatalyzed electrolysis is a microbial fuel cell based technology for the generation of hydrogen g...
The conversion of electrical current into methane (electromethanogenesis) by microbes represents one...
AbstractTo establish a biotechnological system to convert CO2 into methane, we are trying to develop...
BACKGROUND In a methane-producing bioelectrochemical system (BES) microorganisms grow on an electrod...
ABSTRACT: In methanogenic microbial electrolysis cells (MMCs), CO2 is reduced to methane using a met...
A methane-producing microbial electrolysis cell (MEC) is a technology to convert CO2 into methane, u...
This study describes the performance of a microbial biocathode, based on a hydrogenophilic methanoge...
Methane-producing Bioelectrochemical systems (BESs) is a promising technology converting renewable e...