This paper presents a proposal to use an electrochemical flow-by reactor for hydrogen peroxide electrogeneration using cathodes formed from the incorporation of organic redox catalysts (2-ethylanthraquinone, 2-tert-butylanthraquinone, alizarin, and azobenzene) in the structure of gas diffusion electrodes. These electrodes help circumvent the low solubility of oxygen in aqueous solutions. Organic redox catalysts, which typically contain quinone or azo groups in their structure, were added to the electrode mass in a 10% proportion. The electrodes were used to study the electrogeneration of hydrogen peroxide in situ, in an acid medium (0.1 mol L-1 H2SO4 and 0.1 mol L-1 K2SO4, pH 1), inside an electrochemical flow-by reactor. Comparative analys...
This paper presents some results that may be used as previous considerations to a hydrogen peroxide ...
In this work, a proof of concept of a novel reactor design for the in-situ electrochemical productio...
This thesis focuses on the electrochemical production of H₂O₂ via water oxidation and its subsequent...
This study reports the performance of a flow-through reactor to promote the sustainable production o...
The portable electrochemical generation of hydrogen peroxide from air and water would enable greater...
In the present work, the influence of the most critical inputs affecting reactor design for the simu...
In a bioelectrochemical system, the energy content in dissolved organic matter can be used to power ...
Hydrogen peroxide plays a critical role in many industrial applications, including chemical synthesi...
Hydrogen peroxide (H2O2) is a versatile oxidant, but its production heavily depends on the energy-in...
Hydrogen peroxide is a powerful oxidant that finds application in several areas, but most particular...
The in-situ electrosynthesis of hydrogen peroxide (H2O2) from reduction of oxygen is a promising met...
Hydrogen peroxide is a powerful oxidant that finds application in several areas, but most particular...
This work is focused on the characterization of the production of ozone, hydrogen peroxide and hydro...
H2O2 is important in large-scale industrial processes and smaller on-site activities. The present in...
Conventional H₂O₂ production entails an energy and capital intensive Riedl-Pfleiderer process, which...
This paper presents some results that may be used as previous considerations to a hydrogen peroxide ...
In this work, a proof of concept of a novel reactor design for the in-situ electrochemical productio...
This thesis focuses on the electrochemical production of H₂O₂ via water oxidation and its subsequent...
This study reports the performance of a flow-through reactor to promote the sustainable production o...
The portable electrochemical generation of hydrogen peroxide from air and water would enable greater...
In the present work, the influence of the most critical inputs affecting reactor design for the simu...
In a bioelectrochemical system, the energy content in dissolved organic matter can be used to power ...
Hydrogen peroxide plays a critical role in many industrial applications, including chemical synthesi...
Hydrogen peroxide (H2O2) is a versatile oxidant, but its production heavily depends on the energy-in...
Hydrogen peroxide is a powerful oxidant that finds application in several areas, but most particular...
The in-situ electrosynthesis of hydrogen peroxide (H2O2) from reduction of oxygen is a promising met...
Hydrogen peroxide is a powerful oxidant that finds application in several areas, but most particular...
This work is focused on the characterization of the production of ozone, hydrogen peroxide and hydro...
H2O2 is important in large-scale industrial processes and smaller on-site activities. The present in...
Conventional H₂O₂ production entails an energy and capital intensive Riedl-Pfleiderer process, which...
This paper presents some results that may be used as previous considerations to a hydrogen peroxide ...
In this work, a proof of concept of a novel reactor design for the in-situ electrochemical productio...
This thesis focuses on the electrochemical production of H₂O₂ via water oxidation and its subsequent...