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</script>Direct Alcohol Fuel Cells: A Comparative Review of Acidic and Alkaline Systems
handle: 20.500.14243/463469 , 10281/450421 , 11583/2981232
AbstractIn the last 20 years, direct alcohol fuel cells (DAFCs) have been the subject of tremendous research efforts for the potential application as on-demand power sources. Two leading technologies respectively based on proton exchange membranes (PEMs) and anion exchange membranes (AEMs) have emerged: the first one operating in an acidic environment and conducting protons; the second one operating in alkaline electrolytes and conducting hydroxyl ions. In this review, we present an analysis of the state-of-the-art acidic and alkaline DAFCs fed with methanol and ethanol with the purpose to support a comparative analysis of acidic and alkaline systems, which is missing in the current literature. A special focus is placed on the effect of the reaction stoichiometry in acidic and alkaline systems. Particularly, we point out that, in alkaline systems, OH− participates stoichiometrically to reactions, and that alcohol oxidation products are anions. This aspect must be considered when designing the fuel and when making an energy evaluation from a whole system perspective. Graphical Abstract
- University of Milano-Bicocca Italy
- Polytechnic University of Turin Italy
- Los Alamos National Laboratory United States
- "UNIVERSITA DEGLI STUDI DI PALERMO Italy
- Institute for Advanced Energy Technologies Italy
Ethanol, Fuel cells; Ethanol; Methanol; Anion exchange electrolyte; Proton exchange electrolyte, Methanol, Anion exchange electrolyte, Anion exchange electrolyte; Ethanol; Fuel cells; Methanol; Proton exchange electrolyte;, Fuel cells, Proton exchange electrolyte
Ethanol, Fuel cells; Ethanol; Methanol; Anion exchange electrolyte; Proton exchange electrolyte, Methanol, Anion exchange electrolyte, Anion exchange electrolyte; Ethanol; Fuel cells; Methanol; Proton exchange electrolyte;, Fuel cells, Proton exchange electrolyte
