Actions for High temperature corrosion of separator materials for MCFC [electronic resource].
High temperature corrosion of separator materials for MCFC [electronic resource].
- Published
- Oak Ridge, Tenn. : Distributed by the Office of Scientific and Technical Information, U.S. Dept. of Energy, 1996.
- Physical Description
- pages 379-381 : digital, PDF file
- Additional Creators
- United States. Department of Energy. Office of Scientific and Technical Information
Access Online
- Restrictions on Access
- Free-to-read Unrestricted online access
- Summary
- The Molten Carbonate Fuel Cell (MCFC) is one of promising high efficiency power generation devices with low emission. Molten carbonate used for its electrolyte plays an important role in MCFC. It separates between anode and cathode gas environment and provides ionic conductivity on MCFC operation. Stainless steel is conventionally used as separator/current collector materials in MCFC cathode environment. As corrosion of the components of MCFC caused by the electrolyte proceeds with the electrolyte consumption, the corrosion in the MCFC is related to its performance and life. To understand and inhibit the corrosion in the MCFC is important to realize MCFC power generation system. We have studied the effect of alkaline earth carbonate addition into carbonate on corrosion of type 316L stainless steel. In this paper, we describe the effect of the temperature on corrosion behavior of type 316L stainless steel with carbonate mixture, (Li{sub 0.62}K{sub 0.38})₂CO₃, under the cathode environment in out-of-cell test.
- Report Numbers
- E 1.99:conf-961107--absts.
conf-961107--absts. - Subject(s)
- Other Subject(s)
- Note
- Published through SciTech Connect.
12/31/1996.
"conf-961107--absts."
"TI97001494"
Fuel cell seminar, Kissimmee, FL (United States), 17-20 Nov 1996.
Yanagida, Masahiro; Tanimoto, Kazumi; Kojima, Toshikatsu.
Fuel Cell Seminar Organizing Committee (United States)
View MARC record | catkey: 14067198