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LiTHiUM PriMAry BATTerieS 14.89
J. O. Besenhard and G. eichinger, “High energy Density Lithium Cells, pt. i, electrolytes, and Anodes,”
J. Electroanal. Chem. 68:1 (1976), elsevier Sequoia, Lausanne, Switzerland.
G. eichinger and J. O. Besenhard, “High energy Density Lithium Cells, pt. ii, Cathodes and Complete
Cells,” J. Electroanal. Chem. 72:1 (1980), elsevier Sequoia, Lausanne, Switzerland.
6. F. Deligiannis, B. V. ratnakumar, H. Frank, e. Davies, and S. Surampudi, Proc. 37th Power Sources Conf.,
pp. 373–377 (1996), Cherry Hill, NJ.
7. A. N. Dey, “Lithium Anode Film and Organic and inorganic electrolyte Batteries,” in Thin Solid Films,
Vol. 43, elsevier Sequoia S. A., Lausanne, Switzerland, 1977, p. 131.
8. S. Gilman and W. Wade, “The reduction of Sulfuryl Chloride at Teflon-Bonded Carbon Cathodes,”
J. Electrochem. Soc. 127:1427 (1980).
9. A. Meitav and e. Peled, “Calcium-Ca(AlCl ) -Thionyl Chloride Cell: Performance and Safety,” J. Electrochem.
4 2
Soc. 129:3 (1982).
10. r. L. Higgins and J. S. Cloyd, “Development of the Calcium-Thionyl Chloride Systems,” Proc. 29th Power
Sources Conf., electrochemical Society, Pennington, N.J., June 1980.
M. Binder, S. Gilman, and W. Wade, “Calcium-Sulfuryl Chloride Primary Cell,” J. Electrochem. Soc. 129:4 (1982).
11. e. S. Takeuchi and W. C. Thiebolt, “The reduction of Silver Vanadium Oxide in Lithium/Silver Vanadium
Oxide Cells,” J. Electrochem. Soc. 135:11 (1988).
e. S. Takeuchi, “Lithium/Solid Cathode Cells for Medical Applications,” Proc. Int. Battery Seminar, Boca
raton, FL, 1993.
A. Crespi, “The Characterization of Silver Vanadium Cathode Material by High-resolution electron
Microscopy,” Proc. 7th Int. Meet. Lithium Batteries, Boston, MA, May 1994.
12. N. i. Sax, Dangerous Properties of Industrial Materials, Van Nostrand reinhold, New york.
13. Transportation, Code of Federal regulations CFr 49, U.S. Government Printing Office, Washington, DC;
exemption DOT-e-7052, Department of Transportation, Washington, DC: “Technical instructions for the
Safe Transport of Dangerous Goods by Air,” international Civil Aviation Organization, DOC 9284-AN/905,
Montreal, Quebec, Canada.
14. e. H. reiss, “Considerations in the Use and Handling of Lithium-Sulfur Dioxide Batteries,” Proc. 29th
Power Sources Conf., electrochemical Society, Pennington, NJ, June 1980.
15. Technical Standard Order: TSO-C142, Lithium Batteries, U.S. Dept. of Transportation, Federal Aviation
Administration, Washington, DC (2000).
16. T. B. reddy, Modern Battery Technology, Sec. 5.2, C. D. S. Tuck, ed., ellis Horwood, New york (1991).
17. M. Mathews, Proc. 39th Power Sources Conf., pp. 77–80 (2000), Cherry Hill, NJ.
18. S. Charlton, r. Costa, and C. Negrete, Proc. 41st Power Sources Conf., pp. 29–31 (2004), Philadelphia, PA.
19. M. Sink, Proc. 38th Power Sources Conf., pp. 187–190 (1998), Cherry Hill, NJ.
20. H. Taylor, “The Storability of Li/SO Cells,” Proc. 12th Intersociety Energy Conversion Engineering Conf.,
2
American Nuclear Society, LaGrange Park, iL, 1977.
21. D. Linden and B. McDonald, “The Lithium-Sulfur Dioxide Primary Battery—its Characteristics,
Performance and Applications,” J. Power Sources 5:35 (1980), elsevier Sequoia, Lausanne, Switzerland.
22. r. C. McDonald et al., “investigation of Lithium Thionyl Chloride Battery Safety Hazard,” Tech. rep.
N60921-81-C0229, Naval Surface Weapons Center, Silver Spring, MD, Jan. 1983.
23. S. C. Levy and P. Bro, Battery Hazards and Accident Prevention, Sec. 10.3.2, Plenum Publishing Corp., New
york (1994).
24. Tadiran Batteries, Port Washington, Ny, 11050.
25. M. Babai and U. Zak, “Safety Aspects of Low-rate Li/SOCl Batteries,” Proc. 29th Power Sources Conf.,
2
electrochemical Society, Pennington, NJ, June 1980.
26. K. M. Abraham and r. M. Mank, “Some Safety related Chemistry of Li/SOCl Cells,” Proc. 29th Power
2
Sources Conf., electrochemical Society, Pennington, NJ, June 1980.
27. r. L. Zupancic, “Performance and Safety Characteristics of Small Cylindrical Li/SOCl Cells,” Proc. 29th
2
Power Sources Conf., electrochemical Society, Pennington, NJ, June 1980.
28. J. F. McCartney, A. H. Willis, and W. J. Sturgeon, “Development of a 200 kWh Li/SOCl Battery for Undersea
2
Applications,” Proc. 29th Power Sources Conf., electrochemical Society, Pennington, NJ, June 1980.
29. A. Zolla, J. Westernberger, and D. Noll, Proc. 39th Power Sources Conf., pp. 64–68 (2000), Cherry Hill, NJ.

