4.7 Article

Performance of Proton-conducting Ceramic-electrolyte Fuel Cell with BZCY40 electrolyte and BSCF5582 cathode

期刊

CERAMICS INTERNATIONAL
卷 42, 期 3, 页码 3776-3785

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.ceramint.2015.11.038

关键词

Proton conducting Ceramic electrolyte Fuel Cell; Electrochemical impedance spectroscopy; Distribution of relaxation time; BSCF5582; BZCY40

资金

  1. Korea CCS R&D Center (KCRC) - Korea Government (Ministry of Science, ICT & Future Planning) [2014M1A8A1049351]
  2. Priority Research Centers Program through the National Research Foundation of Korea - Ministry of Education, Science and Technology [2010-0029626]
  3. National Research Foundation of Korea [2009-0094055, 2014M1A8A1049299] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

In the present research, Proton conducting Ceramic electrolyte Fuel Cell (PCFC) has been fabricated with BaZr0.4Ce0.45Y0.15O3-delta electrolyte, NiO-BaZr0.4Ce0.45Y0.15O3-delta as anode and Ba0.5Sr0.5Co0.8Fe0.2O3-delta as a cathode material. The effects of anodic and cathodic gas flow rates and partial pressures on PCFC performance are studied by varying the gas flow rates between 50 and 200 sccm while partial pressures between 0.25 and 1 atm at one electrode by keeping constant gas flow rate and partial pressure at another electrode. The different electrode processes occurring at the electrodes and electrode/electrolyte interfaces are analyzed by electrochemical impedance spectroscopy. It is observed that gas flow rate doesn't affect more on the fuel cell performance while increase in gas partial pressure changes the performance of PCFC. The variation in cathodic pO(2) shows that the oxygen dissociation and charge transfer at cathode electrode are the major contributors toward overall electrode polarization resistance. A peak power density of similar to 0.80 W/cm(-2) is achieved at 700 degrees C with 200 sccm of wet H-2 and air. The stability of the PCFC is also studied under CO2 condition and it has shown stable performance without any degradation. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.

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