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Sökning: onr:"swepub:oai:DiVA.org:kth-22548" > Innovative low temp...

Innovative low temperature SOFCs and advanced materials

Zhu, Bin (författare)
KTH,Kemiteknik
Yang, X. T. (författare)
Xu, J. (författare)
visa fler...
Zhu, Z. G. (författare)
Ji, S. J. (författare)
Sun, M. T. (författare)
Sun, J. C. (författare)
visa färre...
 (creator_code:org_t)
2003
2003
Engelska.
Ingår i: Journal of Power Sources. - 0378-7753 .- 1873-2755. ; 118:02-jan, s. 47-53
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • High ionic conductivity, varying from 0.01 to 1 S cm(-1) between 300 and 700 degreesC, has been achieved for the hybrid and nano-ceriacomposite electrolyte materials, demonstrating a successful application for advanced low temperature solid oxide fuel cells (LTSOFCs). The LTSOFCs were constructed based on these new materials. The performance of 0.15-0.25 W cm(-2) was obtained in temperature region of 320400 degreesC for the ceria-carbonate composite electrolyte, and of 0.35-0.66 W cm(-2) in temperature region of 500-600 degreesC for the ceria-lanthanum oxide composites. The cell could even function at as low as 200 degreesC. The cell has also undergone a life test for several months. A two-cell stack was studied, showing expected performance successfully. The excellent LTSOFC performance is resulted from both functional electrolyte and electrode materials. The electrolytes are two phase composite materials based on the oxygen ion and proton conducting phases, or two rare-earth oxides. The electrodes used were based on the same composite material system having excellent compatibility with the electrolyte. They are highly catalytic and conductive thus creating the excellent performances at low temperatures. These innovative LT materials and LTSOFC technologies would open the door for wide applications, not only for stationary but also for mobile power sources.

Nyckelord

low temperature solid oxide fuel cells
ion-doped ceria
ceria-based composite electrolyte
oxide fuel-cells
electrolytes
performance
generation
anode

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