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Enhanced performance of a PtCo recombination catalyst for reducing the H2 concentration in the O2 stream of a PEM electrolysis cell in the presence of a thin membrane and a high differential pressure

Academic Article
Publication Date:
2020
abstract:
High electrochemical efficiency at elevated current densities and low H concentration in O can be achieved in PEM electrolysis using thin membrane and integrated recombination catalyst. An enhanced PtCo alloy recombination catalyst was synthesized and used at the anode of a membrane-electrode assembly (MEA). This allowed reducing the H concentration in the oxygen stream during electrolysis operation with a thin 50 ?m perfluorosulfonic acid (PFSA) Aquivion® membrane. Both dual-layer and composite anode configurations (PtCo/IrRuOx) were investigated. The electrochemical performance of the MEAs containing the recombination catalyst was better than a bare MEA while producing a decrease of the H content at the anode. This allowed extending the partial load operation down to 5% at 55 °C under a differential pressure of 20 bar. The effects of the cathodic pressure and cell temperature (including evaluation of intermediate temperature operation at 140 °C) on both electrochemical performance and H concentration in the anode stream were investigated. An excellent performance of 4 A cm at 1.75 V, at 140 °C, 20 bar cathode pressure, 5.5 bar anode pressure, with 0.6 mg cm overall precious metal catalysts content was recorded. At 140 °C, the MEA also showed a moderate H concentration in O of about 2.3%, almost constant through most of the current density range.
Iris type:
01.01 Articolo in rivista
Keywords:
PEM electrolysis
List of contributors:
Panto', Fabiola; Arico', ANTONINO SALVATORE; Siracusano, Stefania; Briguglio, Nicola
Authors of the University:
ARICO' ANTONINO SALVATORE
BRIGUGLIO NICOLA
PANTO' FABIOLA
SIRACUSANO STEFANIA
Handle:
https://iris.cnr.it/handle/20.500.14243/385082
Published in:
ELECTROCHIMICA ACTA
Journal
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http://www.scopus.com/record/display.url?eid=2-s2.0-85082829376&origin=inward
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