The development of a composite electrocatalyst based Ag and CuO (both are non-critical raw materials) were investigated for CO2 reduction on alkaline environment. The composite CuO-Ag was selected for the cathode reaction in order to minimise the occurrence of hydrogen evolution. A selectivity of 53% at 1.6 V and 75% at 1.8 V towards methanol with respect to the overall alcohol content, was registered. The CO2 productivity was significantly higher than that of the previous experiments with NaHCO3 at the same cell voltage of 1.8 V and much higher at 1.6 V cell voltage.

Performance and stability of a novel cell PGM-free during the CO2 and H2O co-electrolysis in alkaline media

SC Zignani;M Lo Faro;A Palella;L Spadaro;A Carbone;S Trocino;
2021

Abstract

The development of a composite electrocatalyst based Ag and CuO (both are non-critical raw materials) were investigated for CO2 reduction on alkaline environment. The composite CuO-Ag was selected for the cathode reaction in order to minimise the occurrence of hydrogen evolution. A selectivity of 53% at 1.6 V and 75% at 1.8 V towards methanol with respect to the overall alcohol content, was registered. The CO2 productivity was significantly higher than that of the previous experiments with NaHCO3 at the same cell voltage of 1.8 V and much higher at 1.6 V cell voltage.
2021
Inglese
Hydrogen Power Theoretical & Engineering Solutions International Symposium 8-10 November, 2021 - On-line Conference
136
137
2
979-12-200-9642-3
https://hypothesis.ws/
Sì, ma tipo non specificato
8-10/11/2021
on-line conference
CO2 reduction
CRM-free catalysts
7
none
S.C. Zignani; M. Lo Faro; A. Palella; L. Spadaro; A. Carbone; S. Trocino; A.S. Aricò
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
   CRM-free Low Temperature Electrochemical Reduction of CO2 to Methanol
   LOTER.CO2M
   H2020
   761093
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/441232
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