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Plasma reforming of methane in a tunable ferroelectric packed-bed dielectric barrier discharge reactor

Authors

Montoro-Damas, A. M. , BREY SÁNCHEZ, JOSÉ JAVIER, Rodriguez, Miguel A. , Gonzalez-Elipe, Agustin R. , Cotrino, Jose

External publication

Si

Means

J Power Sources

Scope

Article

Nature

Científica

JCR Quartile

SJR Quartile

JCR Impact

6.333

SJR Impact

1.9

Publication date

20/11/2015

ISI

000360776500033

Abstract

In a tunable circular parallel plate dielectric barrier discharge reactor with pellets of a ferroelectric material separating the electrodes we investigate the plasma reforming of methane trying to maximize both the reaction yield and the energetic efficiency of the process. The geometrical configuration of the reactor (gap between electrodes, active electrode area) and the ferroelectric pellet size have been systematically varied to determine their influence on the process efficiency. The comparison between wet (with H2O as reactant), oxidative (with O-2), and dry (with CO2) reforming reactions reveals a higher efficiency for the former with CO + H-2 as main reaction products. The maximum energetic efficiency EE, defined as the produced number of litres of H-2 per kWh, found for optimized working conditions at low-level applied power is higher than the up to date best-known results. A comprehensive discussion of the influence of the different parameters affecting the reaction yield is carried out. (C) 2015 Elsevier B.V. All rights reserved.

Keywords

Fuel reforming; Non-thermal plasma; Hydrogen; Efficiency

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