International Journal of Hydrogen Energy, Vol.35, No.23, 12976-12980, 2010
Hydrogen permeation on Al2O3-based nickel/cobalt composite membranes
Al2O3 was synthesized using the sol gel process with aluminum isopropoxide as the precursor and primary distilled water as the solvent Nickel and cobalt metal powders were used to increase the strength of the membranes The Al2O3 based membranes were prepared using HPS following a mechanical alloying process The phase transformation thermal evolution, surface and cross section morphology of Al2O3 and Al2O3 based membranes were characterized by XRD TG DTA and FE SEM The hydrogen permeation of Al2O3 based membranes was examined at 300-473 K under increasing pressure Hydrogen permeation flux through an Al2O3 20wt%Co membrane was obtained to 2 36 mol m(-2) s(-1) Reaction enthalpy was calculated to 4 5 kJ/mol using a Van t Hoff's plot (C) 2010 Professor T Nejat Veziroglu Published by Elsevier Ltd All rights reserved