Advances in Materials Science for Environmental and Nuclear by S. K. Sundaram, Tatsuki Ohji, Kevin M. Fox, Elizabeth

By S. K. Sundaram, Tatsuki Ohji, Kevin M. Fox, Elizabeth Hoffman

This publication comprises 29 papers from the fresh strength: gas Cells, Batteries, Renewables; eco-friendly applied sciences for fabrics production and Processing II; and fabrics options for the Nuclear Renaissance symposia held throughout the 2010 fabrics technology and know-how (MS&T'10) assembly, October 17-21, 2010, Houston, Texas. subject matters contain Batteries; Corrosion and fabrics Degradation; gas Cells & Electrochemistry; Fossil strength fabrics; solar power; Waste Minimization; eco-friendly production and fabrics Processing; Immobilization of Nuclear Wastes; Irradiation and Corrosion results; and fabrics functionality in severe Environments.

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W. Stevenson, Selection and Evaluation of HeatResistant Alloys for SOFC Interconnect Applications, J. Electrochem. Soc, 150, A1188A1201 (2003). 6 N. Shaigan, W. G. Ivey and W. Chen, A Review of Recent Progress in Coatings, Surface Modifications and Alloy Developments for Solid Oxide Fuel Cell Ferritic Stainless Steel Interconnects,/ Power Sources, 195, 1529-1542 (2010). 7 Y. Larring and T. 9iMn03 Cathode Materials for Solid Oxide Fuel Cells, J. Electrochem. Soc. 147, 3251-3256, (2000). 8 Z. -G.

M. Green, K. Emery, Y. Hishikawa, W. Warta, Solar cell efficiency tables, Prog. Photovolt: Res. Appl, 17,85-94,(2009). 32 ■ Advances in Materials Science for Environmental and Nuclear Technology II EFFECT OF TITANIUM AND IRON ADDITIONS ON THE TRANSPORT PROPERTIES OF MANGANESE COBALT SPINEL OXIDE Jeffrey W. Fergus, Kangli Wang and Yingjia Liu Auburn University Auburn, AL, USA ABSTRACT The transport properties of manganese cobalt oxides are important for their application as coatings for interconnect alloys in solid oxide fuel cells (SOFCs).

Soc, 157, A967-71 (2010). 10 T. Ohzuku, H. Tomura, and K. Sawai, Monitoring of particle fracture by acoustic emission during charge and discharge of Li/MnC^ cells, J. Electrochem. Soc, 144, 3496-500 (1997). U K. Sawai, K. Yoshikawa, H. Tomura, and T. Ohzuku, Progress in Batteries & Battery Material, 17,201 (1998). 12 S. R. T. 035, (2010). 13 E. Peled, D. Golodnitsky, and G. Soc, 144, L208-10 (1997). 14 E. Peled, D. Golodnitsky, G. Ardel, and V. Acta, 40, 2197-204 (1995). O. Besenhard, Handbook of Battery Materials, (1999).

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