Industrial solid state oxygen sensors, using fully stabilized zirconia as electrolyte, were modified and used to split water vapor, mixed with inert gas. Such conditions were chosen for simulating the tritium removal from the ceramic breeder materials in solid blanket fusion reactors. The single cell performances were investigated at 973 K and 200 cm(3)/min flow rate using argon/water vapor mixtures ranging from 100 to 700 vpm. The splitting efficiency was evaluated at 80%; steady state conditions were reached in a few minutes

Carconi, P., Casadio, S., Moauro, A., Petrucci, L., Mari, C. (1995). Decomposition of water with industrial oxygen sensor used as electrolysis cell. FUSION TECHNOLOGY, 28(3), 556-560 [10.13182/FST95-A30461].

Decomposition of water with industrial oxygen sensor used as electrolysis cell

Mari, CM
1995

Abstract

Industrial solid state oxygen sensors, using fully stabilized zirconia as electrolyte, were modified and used to split water vapor, mixed with inert gas. Such conditions were chosen for simulating the tritium removal from the ceramic breeder materials in solid blanket fusion reactors. The single cell performances were investigated at 973 K and 200 cm(3)/min flow rate using argon/water vapor mixtures ranging from 100 to 700 vpm. The splitting efficiency was evaluated at 80%; steady state conditions were reached in a few minutes
Articolo in rivista - Articolo scientifico
Electrolysis of steam, tritium removal, ceramic breeder materials
English
1995
28
3
556
560
none
Carconi, P., Casadio, S., Moauro, A., Petrucci, L., Mari, C. (1995). Decomposition of water with industrial oxygen sensor used as electrolysis cell. FUSION TECHNOLOGY, 28(3), 556-560 [10.13182/FST95-A30461].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/45385
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