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  4. Nickel-Zirconia Anode Degradation and Triple Phase Boundary Quantification from Microstructural Analysis
 
research article

Nickel-Zirconia Anode Degradation and Triple Phase Boundary Quantification from Microstructural Analysis

Faes, A.  
•
Hessler-Wyser, A.  
•
Presvytes, D.
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2009
Fuel Cells

Microstructural evolution of anode supported solid oxide fuel cells (SOFC) during medium-term stack testing has been characterized by scanning electron microscopy (SEM). Low acceleration voltage SEM imaging is used to separate the three anode phases (nickel, yttria-stabilized zirconia and porosity). Microstructural quantification is obtained using a software code that yields phase proportion, particle size, particle size distribution and a direct measure of triple phase boundary (TPB) density. In addition, an anode degradation model is proposed. The model describes the gradual degradation of the anode due to nickel particle sintering and the concomitant loss of TPB. Fundamental operational and structural parameters of the anode can be used to estimate the TPB length change with time from the degradation rate. The combination of experimental results and modeling allows separating the degradation due to sintering of nickel particles from total stack degradation. Anode degradation occurs principally during the first 500 operating hours. For stack tests carried out over more than 1000 h, anode degradation was responsible for 18 % to 41 % of the total degradation depending on initial microstructure.

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Type
research article
DOI
10.1002/fuce.200800147
Web of Science ID

WOS:000273394400008

Author(s)
Faes, A.  
Hessler-Wyser, A.  
Presvytes, D.
Vayenas, C. G.
Van herle, J.  
Date Issued

2009

Published in
Fuel Cells
Volume

9

Issue

6

Start page

841

End page

851

Subjects

SOFC degradation

•

image analysis

•

TPB length

•

nickel particles sintering

•

Ni-YSZ anode

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
CIME  
LENI  
Available on Infoscience
December 22, 2008
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/32958
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