Hydrogen peroxide (H2O2) is an important industrial chemical, but its current production methods are highly energy-intensive. This study presents a novel process for the production of H2O2 based on the bioelectrochemical oxidation of wastewater organics at an anode coupled to the cathodic reduction of oxygen to H2O2. At an applied voltage of 0.5 V, this system was capable of producing 1.9 ± 0.2 kg H2O2/m3/ day from acetate at an overall efficiency of 83.1 ± 4.8%. As most of the required energy was derived from the acetate, the system had a low energy requirement of 0.93 kWh/kg H2O2. 2009 Elsevier B.V. All rights reserved
Water and wastewater treatment utilities require large amounts of energy inputs, and new technologie...
Hydrogen peroxide (H2O2) is frequently used in combination with ultraviolet (UV) light to treat trac...
Hydrogen peroxide produced in the cathode of a bioelectrochemical system (BES) enables on-site disin...
Bioelectrochemical systems can be used to energy-efficiently produce hydrogen peroxide (H2O2) from w...
In a bioelectrochemical system, the energy content in dissolved organic matter can be used to power ...
Biocatalyzed electrolysis is a novel biological hydrogen production process with the potential to ef...
Microbial electrosynthesis system (MES) has recently been shown to be a promising alternative way fo...
Electrochemical production of hydrogen peroxide (H2O2) has recently gained traction as a green alter...
A pilot-scale dual-chamber microbial electrolysis cell (MEC) equipped with a carbon gas-diffusion ca...
The dependence of electrooxidation on experimental conditions of organic molecules was investigated ...
The effects of greenhouse gases, primarily from carbon dioxide emissions, have had a significant imp...
This study reports the performance of a flow-through reactor to promote the sustainable production o...
cum laude graduation (with distinction) To replace fossil fuels, society is currently considering al...
reservedH2O2 is a green chemical and environmentally friendly oxidant, it can selectively oxidize ma...
© 2020 Elsevier Ltd Hydrogen peroxide (H2O2) is an industrial chemical that has been widely adopted ...
Water and wastewater treatment utilities require large amounts of energy inputs, and new technologie...
Hydrogen peroxide (H2O2) is frequently used in combination with ultraviolet (UV) light to treat trac...
Hydrogen peroxide produced in the cathode of a bioelectrochemical system (BES) enables on-site disin...
Bioelectrochemical systems can be used to energy-efficiently produce hydrogen peroxide (H2O2) from w...
In a bioelectrochemical system, the energy content in dissolved organic matter can be used to power ...
Biocatalyzed electrolysis is a novel biological hydrogen production process with the potential to ef...
Microbial electrosynthesis system (MES) has recently been shown to be a promising alternative way fo...
Electrochemical production of hydrogen peroxide (H2O2) has recently gained traction as a green alter...
A pilot-scale dual-chamber microbial electrolysis cell (MEC) equipped with a carbon gas-diffusion ca...
The dependence of electrooxidation on experimental conditions of organic molecules was investigated ...
The effects of greenhouse gases, primarily from carbon dioxide emissions, have had a significant imp...
This study reports the performance of a flow-through reactor to promote the sustainable production o...
cum laude graduation (with distinction) To replace fossil fuels, society is currently considering al...
reservedH2O2 is a green chemical and environmentally friendly oxidant, it can selectively oxidize ma...
© 2020 Elsevier Ltd Hydrogen peroxide (H2O2) is an industrial chemical that has been widely adopted ...
Water and wastewater treatment utilities require large amounts of energy inputs, and new technologie...
Hydrogen peroxide (H2O2) is frequently used in combination with ultraviolet (UV) light to treat trac...
Hydrogen peroxide produced in the cathode of a bioelectrochemical system (BES) enables on-site disin...