Performance Evaluation on Mass Transport in Cathode-side Molybdenum Electrodes for a Low-temperature-type AMTEC Cell.

Author:

TANAKA Kotaro1,NAKAGIRI Toshio2,FUJII Takahiro3,HONDA Takeo3

Affiliation:

1. Shizuoka Institute of Science and Technology

2. Japan Nuclear Cycle Development Institute

3. National Institute of Advanced Industrial Science and Technology

Publisher

Society of Chemical Engineers, Japan

Subject

General Chemical Engineering,General Chemistry

Reference12 articles.

1. Hunt, T. K.; “Research on Materials Related to the Sodium Heat Engine,” Report No. LBL-21232, University of California, Berkley, USA (1986)

2. The role of electrodes in power degradation of AMTEC: analysis and simulation

3. Pantolin, J. E., R. K. Sievers, J. C. Giglio, D. R. Tomczak, Q. Y. Shuck and B. K. Thomas; “Advanced AMTEC Converter Development,” Proc. of the 36th Intersociety Energy Conversion Conference, pp. 519-523, Savannah, USA (2001)

4. Ryan, M. A., R. M. Williams, L. Lara, R. H. Cortez, M. L. Homer, V. B. Shields, J. Miller and K. S. Manatt; “The Sodium Exposure Test Cell to Determine Operating Parameters for AMTEC Electrochemical Cells,” Proc. of the 33rd Intersociety Energy Conversion Conference, Paper No. 98-335, Colorado Springs, USA (1998)

5. Schuller, M., B. Fiebig, P. Hudson and A. Williams; “Post Test Examination of AMTEC Electrodes from Sodium Exposure Test Cells,” Proc. of the 35th Intersociety Energy Conversion Engineering Conference, pp. 710-718, Las Vegas, USA (2000)

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1. Concept design of solar thermal receiver using alkali metal thermal to electric converter (AMTEC);Current Applied Physics;2010-03

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