| Literature DB >> 24790942 |
Mihalis N Tsampas1, Anastasios Kambolis1, Emil Obeid1, Leonardo Lizarraga1, Foteini M Sapountzi1, Philippe Vernoux1.
Abstract
A new kind of electrochemical catalyst based on a Pt porous catalyst film deposited on a β″-Al2O3 ceramic Ag(+) conductor was developed and evaluated during propane oxidation. It was observed that, upon anodic polarization, the rate of propane combustion was significantly electropromoted up to 400%. Moreover, for the first time, exponential increase of the catalytic rate was evidenced during galvanostatic transient experiment in excellent agreement with EPOC equation.Entities:
Keywords: Ag+ cations; EPOC; NEMCA effect; propane combustion; β″-Al2O3 (Ag+) electrochemical catalysts
Year: 2013 PMID: 24790942 PMCID: PMC3982515 DOI: 10.3389/fchem.2013.00013
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Figure 1Schematic drawing of the electrochemical catalyst Pt/β″-Al.
Figure 2Isothermal surface titration of oxygen by C. Effect of oxygen desorption time, tHe, on the mass of reactive oxygen adsorbed on the Pt/β″-Al2O3 (Ag+) electrochemical catalyst. CO2 peaks for each tHe are also depicted in the index.
Figure 3Catalytic rate and potential responses to step changes of a small (+175 nA) current application and a negative (−2V) potential imposition during C. Reactive mixture: C3H8/O2: 2400 ppm/1.2%. Overall flow: 12 L/h.
Figure 4(A) Catalytic rate response to a step change of 2.5V during C3H8 oxidation on Pt/β″-Al2O3 (Ag+) at 325, 350, 375, and 400°C. (B) Arrhenius plots at the initial state and upon anodic polarization (U = 2.5 V) conditions. Reactive mixture: C3H8/O2: 2400 ppm/1.2%. Overall flow: 12 L/h.