Pore structure evolution of lanthana-alumina systems prepared through coprecipitation (2000)
Nair, J., Nair, P., Mizukami, F., Ommen, J.G. Van, Doesburg, E.B.M., Ross, J.R.H., ...
Sintering of lanthanum zirconate (1999)
Kumari, J., Kumar, K.N.P., Doesburg, E.B.M., Ommen, J.G. Van, Ross, J.R.H., Burggraaf, A.J.
textural stability as a characterization tool of high temperature catalysts. (1998)
Kumari, J., Kumar, K.N.P., Doesburg, E.B.M., Ommen, J.G. Van, Burggraaf, A.J., Mizukami, F.
preparation and characterization of lanthanum zirconate (1998)
Kumari, J., Kumar, K.N.P., Doesburg, E.B.M., Ommen, J.G. Van, Ross, J.R.H., Burggraaf, A.J.
Nickel catalysts for internal reforming in molten carbonate fuel cells (1996)
Berger, R.J., Doesburg, E.B.M., Ommen, J.G. Van, Ross, J.R.H.
Natural gas may be used instead of hydrogen as fuel for the molten carbonate fuel cell (MCFC) by steam reforming the natural gas inside the MCFC, using a nickel catalyst (internal reforming). The...
Nickel catalysts for internal reforming in molten carbonate fuel cells (1996)
Berger, R.J., Doesburg, E.B.M., Ommen Van, J.G., Ross, J.R.H.
Natural gas may be used instead of hydrogen as fuel for the molten carbonate fuel cell (MCFC) by steam reforming the natural gas inside the MCFC, using a nickel catalyst (internal reforming). The...
Investigation of Alkali Carbonate Transport Toward the Catalyst in Internal Reforming MCFCs (1996)
Berger, R.J., Doesburg, E.B.M., Ommen Van, J.G., Ross, J.R.H.
A nickel catalyst to be used for internal steam reforming in a molten carbonate fuel cell (MCFC) must be resistant to the alkali components (Li and K species) of the electrolyte; these components can...
Mercera, P.D.L., Ommen, J.G. Van, Doesburg, E.B.M., Burggraaf, A.J., Ross, J.R.H.
A single-phase monoclinic zirconia (the thermodynamically stable modification up to a temperature of 1170°C), having a specific surface area of 67 m2g¿1 and a well-developed mesoporous texture, has...
Mercera, P.D.L., Ommen, J.G. Van, Doesburg, E.B.M., Burggraaf, A.J., Ross, J.R.H.
Single-phase tetragonal zirconium oxides have been made by the incorporation of 5.4 mol-% of Y3+ or La3+ in ZrO2 to form solid solutions. The samples were prepared by controlled coprecipitation from...
Mercera, P.D.L., Ommen Van, J.G., Doesburg, E.B.M., Burggraaf, A.J., Ross, J.R.H.
A single-phase monoclinic zirconia (the thermodynamically stable modification up to a temperature of 1170°C), having a specific surface area of 67 m2g¿1 and a well-developed mesoporous texture, has...
Mercera, P.D.L., Ommen Van, J.G., Doesburg, E.B.M., Burggraaf, A.J., Ross, J.R.H.
Single-phase tetragonal zirconium oxides have been made by the incorporation of 5.4 mol-% of Y3+ or La3+ in ZrO2 to form solid solutions. The samples were prepared by controlled coprecipitation from...