Paired electrolysis for simultaneous generation of synthetic fuels and chemicals

Martinez, Natalia P.; Isaacs, Mauricio; Nanda, Kamala Kanta

Abstract

Centralized production of fuels and platform chemicals from non-fossil fuel resources using renewable energy is indispensable to curb the ever increasing global warming. To realise this vision, a distributed model based on small scale reactors needs to be constructed. In this context, electrolysers performing water splitting and carbon dioxide reduction to produce sustainable fuels carry paramount industrial importance. All these electrolysers use water oxidation as anodic half-reaction which produces oxygen having a low economic value and a higher overpotential requirement. This increases the input voltage of electrolysers. The product value and energy efficiency of these electrolysers can be further enhanced if the electrochemical hydrogen evolution and carbon dioxide reduction can be paired with alternative oxidation reactions such as biomass oxidation, electro-organic synthesis, etc., which are thermodynamically more favorable than water oxidation. This review summarizes the importance of these paired electrolysis processes for simultaneous production of fuels and value-added platform chemicals from hybrid electrolysers along with a discussion of optimization of process parameters for paired electrolysis.

Más información

Título según WOS: Paired electrolysis for simultaneous generation of synthetic fuels and chemicals
Título según SCOPUS: ID eid=2-s2.0-85083487900 Not found in local SCOPUS DB
Título de la Revista: NEW JOURNAL OF CHEMISTRY
Volumen: 44
Número: 15
Editorial: ROYAL SOC CHEMISTRY
Fecha de publicación: 2020
Página de inicio: 5617
Página final: 5637
DOI:

10.1039/C9NJ06133A

Notas: ISI, SCOPUS