The oxygen reduction reaction (ORR) to produce hydrogen peroxide (H2O2) is of great industrial interest. Herein, a hydrodynamic electrochemical method is explored for use as a continuous method to produce H2O2 at the point-of-use. The ORR was studied in a tubular glassy carbon flow cell under a laminar flow regime. A generalised theoretical model was developed to explore the conditions, such as volume flow rates and tubular lengths etc., for which a near-full electrolysis may be achieved. The parameters probed, transfer coefficient, half-wave potentials, volume flow rates, etc., provide physical insights into the irreversible oxygen reduction process. Thereafter, the surface modification of the tubular electrode with an electrocatalyst, 2-a...
Copyright © 2020 American Chemical Society. Electrochemical production of H2O2 from O2 is a promisin...
A pilot plant for electro-generation of hydrogen peroxide using an oxygen-reducing gas-diffusion ele...
Conventional H₂O₂ production entails an energy and capital intensive Riedl-Pfleiderer process, which...
The oxygen reduction reaction (ORR) to produce hydrogen peroxide (H2O2) is of great industrial inter...
In this work, a reticulated vitreous carbon electrode (RVCE, 96.5 % porosity, 24 cm-1) was modified ...
The generation of hydrogen peroxide in dilute sodium hydroxide solutions was investigated by the ele...
3D Porous electrodes show excellent performance in industrial electrochemical engineering. Such elec...
The electrosynthesis of H2O2 via O2 reduction was feasible employing cheap, unmodified graphite felt...
In the last years, the electrochemical conversion of oxygen to hydrogen peroxide at carbon felt has ...
This investigation reports the electrosynthesis of H2O2 from the two-electron reduction of dissolved...
The electrochemical generation of H2O2can be performed in aqueous solutions by cathodic reduction at...
Two novel methods for the electroreductioh of O₂ to H₂O₂ have been developed and investigated in a v...
The biocatalytic electroreduction of oxygen has been studied on large surface area graphite and Vulc...
The electrochemical process known with the name of electro-Fenton, which is based on the fast and no...
H2O2 is important in large-scale industrial processes and smaller on-site activities. The present in...
Copyright © 2020 American Chemical Society. Electrochemical production of H2O2 from O2 is a promisin...
A pilot plant for electro-generation of hydrogen peroxide using an oxygen-reducing gas-diffusion ele...
Conventional H₂O₂ production entails an energy and capital intensive Riedl-Pfleiderer process, which...
The oxygen reduction reaction (ORR) to produce hydrogen peroxide (H2O2) is of great industrial inter...
In this work, a reticulated vitreous carbon electrode (RVCE, 96.5 % porosity, 24 cm-1) was modified ...
The generation of hydrogen peroxide in dilute sodium hydroxide solutions was investigated by the ele...
3D Porous electrodes show excellent performance in industrial electrochemical engineering. Such elec...
The electrosynthesis of H2O2 via O2 reduction was feasible employing cheap, unmodified graphite felt...
In the last years, the electrochemical conversion of oxygen to hydrogen peroxide at carbon felt has ...
This investigation reports the electrosynthesis of H2O2 from the two-electron reduction of dissolved...
The electrochemical generation of H2O2can be performed in aqueous solutions by cathodic reduction at...
Two novel methods for the electroreductioh of O₂ to H₂O₂ have been developed and investigated in a v...
The biocatalytic electroreduction of oxygen has been studied on large surface area graphite and Vulc...
The electrochemical process known with the name of electro-Fenton, which is based on the fast and no...
H2O2 is important in large-scale industrial processes and smaller on-site activities. The present in...
Copyright © 2020 American Chemical Society. Electrochemical production of H2O2 from O2 is a promisin...
A pilot plant for electro-generation of hydrogen peroxide using an oxygen-reducing gas-diffusion ele...
Conventional H₂O₂ production entails an energy and capital intensive Riedl-Pfleiderer process, which...