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Nanotechnology makes biomass electrolysis more energy efficient than water electrolysis

Academic Article
Publication Date:
2014
abstract:
The energetic convenience of electrolytic water splitting is limited by thermodynamics. Consequently, significant levels of hydrogen production can only be obtained with an electrical energy consumption exceeding 45 kWh kg-1H2. Electrochemical reforming allows the overcoming of such thermodynamic limitations by replacing oxygen evolution with the oxidation of biomass-derived alcohols. Here we show that the use of an original anode material consisting of palladium nanoparticles deposited on to a three-dimensional architecture of titania nanotubes allows electrical energy savings up to 26.5 kWh kg-1H2 as compared with proton electrolyte membrane water electrolysis. A net energy analysis shows that for bio-ethanol with energy return of the invested energy larger than 5.1 (for example, cellulose), the electrochemical reforming energy balance is advantageous over proton electrolyte membrane water electrolysis.
Iris type:
01.01 Articolo in rivista
Keywords:
Chemical sciences; Nanotechnology; Catalysis; Materials science
List of contributors:
Innocenti, Massimo; Marchionni, Andrea; Miller, HAMISH ANDREW; Bevilacqua, Manuela; Vizza, Francesco; Lavacchi, Alessandro; Filippi, Jonathan; Oberhauser, Werner
Authors of the University:
BEVILACQUA MANUELA
FILIPPI JONATHAN
LAVACCHI ALESSANDRO
MARCHIONNI ANDREA
MILLER HAMISH ANDREW
OBERHAUSER WERNER
VIZZA FRANCESCO
Handle:
https://iris.cnr.it/handle/20.500.14243/228474
Published in:
NATURE COMMUNICATIONS
Journal
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http://www.scopus.com/record/display.url?eid=2-s2.0-84901914942&origin=inward
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