Characterization of CuO/YSZ High Temperature Electrolysis Cathode Material Fabricated by High Energy Ball-Milling: 900 °C Reduced by Hydrogen Exposure*
-
Sungkyu Lee
, Hyun Seon Hong , Mi-Jai Lee und Sang-Kuk Woo
Abstract
As a more economical cathode material than conventional Ni/YSZ cermet for high temperature electrolysis (HTE) cell, CuO/YSZ composites (40 vol.-% and 60 vol.-% CuO powder with balance YSZ) were successfully fabricated by high energy ball-milling of CuO and YSZ powders, pressing into pellets (Φ 13 mm × 2 mm) and subjecting them to a subsequent reduction-sintering process at 900 °C under purging with a 5 % H2/Ar gas. The Cu/YSZ cermet material thus fabricated was characterized using various analytical methods such as XRD, SEM, and laser diffraction as well as scattering method. Electrical conductivity of reduction-sintered Cu/YSZ cermet pellets thus fabricated was measured both at room temperature and temperature range between 600 °C and 800 °C by using the 4-probe technique for comparison with those of previously published literature conductivity data of Ni/YSZ and Cu/YSZ cermets produced by the same high-energy ball milling of blended elemental metal with YSZ powders. The effect of composite composition on the electrical conductivity was investigated and a slight decrease in electrical conductivity for CuO content of 60 vol.-% was explained by a greater porosity accompanying reduction-sintering of 60 vol.-% CuO/YSZ composite than that with 40 vol.-%. Lastly, CuO/YSZ was used as a HTE cathode of a self-supporting planar unit cell and its electrochemical performance was investigated.
Kurzfassung
Als ein kostengünstiges Kathodenmaterial im Vergleich zu konventionellem Ni/YSZ- Cermet für die Hochtemperaturelektrolyse-Zelle (HTE) wurden CuO/YSZ-Komposite (40 vol.-% bzw. 60 vol.-% CuO-Pulver, Rest YSZ) erfolgreich mittels des Hochenergie-Kuglelmahlprozesses von CuO- und YSZ-Pulvern hergestellt. Diese werden in Pellets (Φ 13 mm × 2 mm) gepresst und nachfolgend einem Reduktionssinterprozess bei 900 °C unter 5 % H2/Ar-Gasspülung unterzogen. Das so hergestellte Cu/YSZ-Cermet-Material wurde mittels verschiedener analytischer Methoden, wie XRD, SEM sowie Laserdiffraktometrie und –streuung charakterisiert. Die elektrische Leitfähigkeit der so hergestellten reduktionsgesinterten Cu/YSZ-Cermetpellets wurde sowohl bei Raumtemperatur als auch im Temperaturbereich zwischen 600 °C und 800 °C gemessen, wobei die Vierprobentechnik angewendet wurde, um einen Vergleich zu bisher veröffentlichten Leitfähigkeitsdaten von Ni/YSZ- und Cu/YSZ-Cermets aus der Literatur zu ermöglichen, die mittels desselben Hochenergie-Kugelmahlprozesses von gemischten elementaren Metallen und YSZ-Pulvern hergestellt wurden. Die Auswirkungen der Komposit-Zusammensetzung auf die elektrische Leitfähigkeit wurde untersucht und eine leichte Abnahme in der elektrischen Leitfähigkeit für einen CuO-Gehalt von 60 vol.-% mit einer größeren Porösität erklärt, die das Reduktionssintern von 60 vol.-% CuO/YSZ stärker begleitet als beim 40 vol.-% Material. Schließlich wurde das CuO/YS-Material als eine HTE-Kathode einer selbstunterstützenden, planaren Einheitszelle verwendet und ihre elektrochemische Performanz untersucht.
References
1 J.Udagawa, P.Aguiar, N. P.Brandon: Hydrogen production through steam electrolysis: Model-based steady state performance of a cathode-supported intermediate temperature solid oxide electrolysis cell, Journal of Power Sources166 (2007), No. 1, pp. 127–13610.1016/j.jpowsour.2006.12.081Suche in Google Scholar
2 N.Meng, K. H. LeungMichael, Y. C.Dennis: Mathematical modeling of the coupled transport and electrochemical reactions in solid oxide steam electrolyzer for hydrogen production, Electrochimica Acta52 (2007), No. 24, pp. 6707–671810.1016/j.electacta.2007.04.084Suche in Google Scholar
3 S.Lee, K.-H.Kang, J.-M.Kim, H. S.Hong, Y.Yun, S.-K.Woo: Fabrication and characterization of Cu/YSZ cermet high temperature electrolysis cathode material prepared by high energy ball-milling method I: 900 °C sintered, Journal of Alloys and Compounds448 (2008), pp. 363–36710.1016/j.jallcom.2007.08.022Suche in Google Scholar
4 S.Lee, J.-M.Kim, H. S.Hong, S.-K.Woo: Fabrication and characterization of Cu/YSZ cermet high temperature electrolysis cathode material prepared by high energy ball-milling method I: 700 °C sintered, Journal of Alloys and Compounds467 (2009), pp. 614–62110.1016/j.jallcom.2008.07.111Suche in Google Scholar
5 A.Ringuedé, D. P.Fagg, J.-R.Frade: Electrochemical behaviour and degradation of (Ni, M)/YSZ cermet electrodes (M = Co, Cu, Fe) for high temperature applications of solid electrolytes, Journal of the European Ceramic Society24 (2004), No. 6, pp. 1355–135810.1016/S0955-2219(03)00564-8Suche in Google Scholar
6 A.Ringuedé, J. A.Labrincha, J. R.Frade: A combustion synthesis method to obtain alternative cermet materials for SOFC anodes, Solid State Ionics141–142 (2001), pp. 549–557Suche in Google Scholar
7 J. S.Herring, J. E.O'Brien, C. M.Stoots, G. L.Hawkes, J. J.Hartvigsen, M.Shahnam: Progress in high temperature electrolysis for hydrogen production using planar SOFC technology, International Journal of Hydrogen Energy32 (2007), No. 4, pp. 440–45010.1016/j.ijhydene.2006.06.061Suche in Google Scholar
8 Y.Shin, W.Park, J.Chang, J.Park: Evaluation of the high temperature electrolysis of steam to produce hydrogen, International Journal of Hydrogen Energy32 (2007), No. 10–11, pp. 1486–149110.1016/j.ijhydene.2006.10.028Suche in Google Scholar
9 J. C.Ruiz-Morales, J.Canales-Vázquez, D.Marrero-López, J. T. S.Irvine, P.Núñez: Improvement of the electrochemical properties of novel solid oxide fuel cell anodes La0.75Sr0.25Cr0.5Mn0.5O3−δ and La4Sr8Ti11Mn0.5Ga0.5O37.5−δ, using Cu–YSZ-based cermets, Electrochimica Acta52 (2007), No. 25, pp. 7217–722510.1016/j.electacta.2007.05.060Suche in Google Scholar
10 S.Lee, K.-H.Kang, H. S.Hong, Y.Yun, S.-K.Woo: Performance of Ni/YSZ cermet cathode prepared by mechanical alloying for high temperature electrolysis of water vapor (steam): Effect of anode and cathode thicknesses on the efficiency of hydrogen production, International Journal of Materials Research99 (2008), pp. 114–11910.3139/146.101613Suche in Google Scholar
11 S.Lee, K.-H.Kang, J.-M.Kim, H. S.Hong, Y.Yun, S.-K.Woo: Performance of Ni/Y2O3-Stabilized ZrO2 Cermet Cathode Prepared by Mechanical Alloying for High Temperature Electrolysis of Water Vapor, Japanese Journal of Applied Physics47 (2008), pp. 1838–184410.1143/JJAP.47.1838Suche in Google Scholar
12 M. R.Somalu, V.Yufit, D.Cumming, E.Lorente, N. P.Brandon: Fabrication and characterization of Ni/ScSZ cermet anodes for IT-SOFCs, International Journal of Hydrogen Energy36 (2011), pp. 5557–556610.1016/j.ijhydene.2011.01.151Suche in Google Scholar
13 C.Sun, U.Stimming: Recent anode advances in solid oxide fuel cell, Journal of Power Sources171 (2007), pp. 247–26010.1016/j.jpowsour.2007.06.086Suche in Google Scholar
14 H. S.Hong, U.-S.Chae, S. T.Choo: The effect of ball milling parameters and Ni concentration on a YSZ-coated Ni composite for a high temperature electrolysis cathode, Journal of Alloys and Compounds449 (2008), pp. 331–33410.1016/j.jallcom.2006.01.131Suche in Google Scholar
15 J. H.Yu, G. W.Park, S.Lee, S. K.Woo: Microstructural effects on the electrical and mechanical properties of Ni/YSZ cermet for SOFC anode, Journal of Power Sources163 (2007), pp. 926–93210.1016/j.jpowsour.2006.10.017Suche in Google Scholar
16 T.Talebi, M. H.Sarrafi, M.Haji, B.Raissi, A.Maghsoudipour: Investigation on microstructures of NiO/YSZ composite and Ni-YSZ cermet for SOFCs, International Journal of Hydrogen Energy35 (2010), pp. 9440–944710.1016/j.ijhydene.2010.04.156Suche in Google Scholar
17 R. J.Gorte, H.Kim, J. M.Vohs: Novel SOFC anodes for the direct electrochemical oxidation of hydrocarbon, Journal of Power Sources106 (2002), pp. 10–1510.1016/S0378-7753(01)01021-7Suche in Google Scholar
© 2014, Carl Hanser Verlag, München
Artikel in diesem Heft
- Inhalt/Contents
- Inhalt
- Fachbeiträge/Technical Contributions
- Full Scale Investigations of Fast Spreading Room Fires
- Chemisch-mechanische Charakterisierung der kriechbeständigen bariumhaltigen Mg-Al-Ca-Legierung DieMag422
- 10.3139/120.110528
- Influence of Surface Roughness of Alumina Ceramics on Indentation Size
- Characterization of CuO/YSZ High Temperature Electrolysis Cathode Material Fabricated by High Energy Ball-Milling: 900 °C Reduced by Hydrogen Exposure*
- Optimization of the Cutting Parameters for Drilling Magnesium Alloy AZ 91
- Impact Characteristics of Steel Spheres Dropped into a Single Layer Composite
- Assessment of Thermal Effects on the Free Vibration Characteristics of Composite Beams
- Acrylonitrile-Vinylidene Chloride Copolymer Film with Activated Carbon and MnO2 for Formaldehyde Degradation
- Numerical Modeling of Macroscale Brittle Rock Crushing during Impacts
- Vorschau/Preview
- Vorschau
Artikel in diesem Heft
- Inhalt/Contents
- Inhalt
- Fachbeiträge/Technical Contributions
- Full Scale Investigations of Fast Spreading Room Fires
- Chemisch-mechanische Charakterisierung der kriechbeständigen bariumhaltigen Mg-Al-Ca-Legierung DieMag422
- 10.3139/120.110528
- Influence of Surface Roughness of Alumina Ceramics on Indentation Size
- Characterization of CuO/YSZ High Temperature Electrolysis Cathode Material Fabricated by High Energy Ball-Milling: 900 °C Reduced by Hydrogen Exposure*
- Optimization of the Cutting Parameters for Drilling Magnesium Alloy AZ 91
- Impact Characteristics of Steel Spheres Dropped into a Single Layer Composite
- Assessment of Thermal Effects on the Free Vibration Characteristics of Composite Beams
- Acrylonitrile-Vinylidene Chloride Copolymer Film with Activated Carbon and MnO2 for Formaldehyde Degradation
- Numerical Modeling of Macroscale Brittle Rock Crushing during Impacts
- Vorschau/Preview
- Vorschau