4.7 Article

Hydrogen production in single-chamber microbial electrolysis cell under high applied voltages

Related references

Note: Only part of the references are listed.
Article Environmental Sciences

Application of activated carbon to enhance biogas production rate of Flammulina velutipes residues with composting pretreatment

Xia Li et al.

Summary: The addition of powdered activated carbon (PAC) significantly enhanced methane production rate by promoting the biodegradation of alcohols and VFAs, alleviating the inhibitory effects of isopropanol and propionic acid. Furthermore, PAC facilitated the decomposition of recalcitrant substances, enriched electrochemically active bacterial groups, and promoted a synergistic effect between bacteria and methanogens through DIET.

WASTE AND BIOMASS VALORIZATION (2021)

Article Engineering, Environmental

The effect of high applied voltages on bioanodes of microbial electrolysis cells in the presence of chlorides

Gahyun Baek et al.

Summary: The study found that high applied voltages could lead to damage of biofilms by chloride ions, while non-biological tests under high Eap conditions can promote acetate removal but may lead to microbial inactivation.

CHEMICAL ENGINEERING JOURNAL (2021)

Article Chemistry, Physical

Impact of applied cell voltage on the performance of a microbial electrolysis cell fully catalysed by microorganisms

Swee Su Lim et al.

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2020)

Article Chemistry, Applied

Long-term open circuit microbial electrosynthesis system promotes methanogenesis

Raul Mateos et al.

JOURNAL OF ENERGY CHEMISTRY (2020)

Article Environmental Sciences

Linking internal resistance with design and operation decisions in microbial electrolysis cells

Andrew Miller et al.

ENVIRONMENT INTERNATIONAL (2019)

Article Environmental Sciences

Development of microbial community within the cathodic biofilm of single-chamber air-cathode microbial fuel cell

Guofang Xu et al.

SCIENCE OF THE TOTAL ENVIRONMENT (2019)

Article Environmental Sciences

Efficient reduction of nitrobenzene by sulfate-reducer enriched biocathode in microbial electrolysis cell

Haiping Luo et al.

SCIENCE OF THE TOTAL ENVIRONMENT (2019)

Article Engineering, Environmental

Impact of Ohmic Resistance on Measured Electrode Potentials and Maximum Power Production in Microbial Fuel Cells

Bruce E. Logan et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2018)

Article Engineering, Environmental

mcrA sequencing reveals the role of basophilic methanogens in a cathodic methanogenic community

Weiwei Cai et al.

WATER RESEARCH (2018)

Article Agricultural Engineering

Bioelectrochemical methane (CH4) production in anaerobic digestion at different supplemental voltages

Kwang-Soon Choi et al.

BIORESOURCE TECHNOLOGY (2017)

Article Biochemistry & Molecular Biology

Increased performance of hydrogen production in microbial electrolysis cells under alkaline conditions

Laura Rago et al.

BIOELECTROCHEMISTRY (2016)

Review Agricultural Engineering

Microbial electrolysis cells for waste biorefinery: A state of the art review

Lu Lu et al.

BIORESOURCE TECHNOLOGY (2016)

Article Engineering, Environmental

Simultaneous sulfate and zinc removal from acid wastewater using an acidophilic and autotrophic biocathode

Wenkai Teng et al.

JOURNAL OF HAZARDOUS MATERIALS (2016)

Article Engineering, Environmental

Active H2 Harvesting Prevents Methanogenesis in Microbial Electrolysis Cells

Lu Lu et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY LETTERS (2016)

Article Biochemistry & Molecular Biology

Microbial electrolysis cell with spiral wound electrode for wastewater treatment and methane production

Yanping Hou et al.

PROCESS BIOCHEMISTRY (2015)

Article Engineering, Environmental

Cobalt recovery with simultaneous methane and acetate production in biocathode microbial electrolysis cells

Liping Huang et al.

CHEMICAL ENGINEERING JOURNAL (2014)

Article Engineering, Environmental

Improved Hydrogen Production in the Microbial Electrolysis Cell by Inhibiting Methanogenesis Using Ultraviolet Irradiation

Yanping Hou et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2014)

Article Chemistry, Physical

Methanogenesis control by electrolytic oxygen production in microbial electrolysis cells

Ryan C. Tice et al.

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2014)

Article Agricultural Engineering

Influence of anode potentials on selection of Geobacter strains in microbial electrolysis cells

Audrey S. Commault et al.

BIORESOURCE TECHNOLOGY (2013)

Article Chemistry, Physical

Maximizing hydrogen production in a microbial electrolysis cell by real-time optimization of applied voltage

B. Tartakousky et al.

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2011)

Article Engineering, Environmental

Significance of Biological Hydrogen Oxidation in a Continuous Single-Chamber Microbial Electrolysis Cell

Hyung-Sool Lee et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2010)

Article Chemistry, Physical

Multi-electrode continuous flow microbial electrolysis cell for biogas production from acetate

Geoffrey K. Rader et al.

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2010)

Article Biotechnology & Applied Microbiology

Methanogenesis in membraneless microbial electrolysis cells

Peter Clauwaert et al.

APPLIED MICROBIOLOGY AND BIOTECHNOLOGY (2009)

Review Chemistry, Multidisciplinary

Exploring the use of electrochemical impedance spectroscopy (EIS) in microbial fuel cell studies

Zhen He et al.

ENERGY & ENVIRONMENTAL SCIENCE (2009)

Article Engineering, Environmental

Selecting Anode-Respiring Bacteria Based on Anode Potential: Phylogenetic, Electrochemical, and Microscopic Characterization

Cesar I. Torres et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2009)

Article Engineering, Environmental

Fate of H2 in an Upflow Single-Chamber Microbial Electrolysis Cell Using a Metal-Catalyst-Free Cathode

Hyung-Sool Lee et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2009)

Article Engineering, Environmental

Direct Biological Conversion of Electrical Current into Methane by Electromethanogenesis

Shaoan Cheng et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2009)

Article Engineering, Environmental

Hydrogen production using single-chamber membrane-free microbial electrolysis cells

Hongqiang Hu et al.

WATER RESEARCH (2008)