Carbon, 3. Graphite
Abstract
The article contains sections titled:
1. |
Single Crystal |
2. |
Natural Graphite |
3. |
Synthetic Graphite |
Specific References
- 1 J. D. Bernal, Proc. R. Soc. London Ser. 106 (1924) 749.
- 2 B.T. Kelly: Physics of Graphite, Applied Science Publishers, London 1981.
- 3 A.K. Dutta, Phys. Rev. 90 (1953) 187.
- 4 E. Poquet, N. Lumbroso, J. Hoaran, A. Marchand, A. Pacault, D.E. Soule, J. Chim. Phys. Phys. Chim. Biol. 57 (1960) 866.
- 5 R.O. Grisdale, A.C. Pfister, W. van Roosbrock, Bell Syst. Tech. J. 30 (1951) 271.
- 6 W.N. Reynolds: Physical Properties of Graphite, Elsevier, New York 1968.
- 7 R. Franklin, Acta Crystallogr. 4 (1951) 253.
- 8 J. Mering, J. Maire, J. Chim. Phys. Phys. Chim. Biol. 57 (1960) 803.
- 9 C.R. Houska, B.E. Warren, J. Appl. Phys. 25 (1954) 1503.
- 10 E. Fitzer, K.-H. Köchling, H.P. Boehm, H. Marsh, Pure Appl. Chem. 67 (1995) no. 3, 473–506.
- 11 W. Ruland in P. L. Walker (ed.): Chemistry and Physics of Carbon, vol. 4, Marcel Dekker, New York 1968, p. 1.
- 12 W. Frohs: Untersuchungen zum thermischen Abbau von Polyacrylnitril(PAN)-Precursorfasern zu Carbonfasern im Temperaturbereich von 500 bis 2800°C, PhD Thesis, University of Karlsruhe, 1989.
- 13 S. Hembacher, F. Giessibl, J. Mannhart, C. Quate: “Revealing the hidden atom in graphite by low–temperature atomic force microscopy,” Proc. Natl. Acad. Sci. USA 100 (2003) no. 22, 12539–12542.
- 14 G.J. Orris, J.D. Bliss: Some industrial mineral deposit models: Descriptive deposit models, US Geological Survey 1991.
- 15 H. Spatzek, F. Mayr-Melnhof, Carbon '72, Int. Carb. Conf., Baden-Baden 25–30 Jun. 1972, p. 351.
- 16 K. Erhard, personal communication.
- 17 R. Menéndez: Anthracene Oil Pitch for Needle Coke Production, III. International Pitch & Calcined Petroleum Conference, Hotel Arts, Barcelona, Spain, September 2005.
- 18 J.D. Brooks, G.H. Taylor in P. L. Walker (ed.): Chemistry and Physics of Carbon, vol. 4, Marcel Dekker, New York 1968, p. 243.
- 19 H. Marsh, P.L. Walker in P. L. Walker, P. A. Thrower (eds.): Chemistry and Physics of Carbon, vol. 15, Marcel Dekker, New York 1979, p. 229.
- 20 C. Holley: Ausbildung von Koksgefügen während der Flüssigphasenpyrolyse von Pechen und ihre Bedeutung bezüglich der physikalischen Kokseigenschaften, Ph. D. Thesis, University Karlsruhe, 1985.
- 21 K.J. Hüttinger, Bitumen–Teere–Asphalte–Peche 1973 no. 6, 3.
- 22 C.A. Kovac, I.C. Lewis, Carbon 16 (1978) 433.
- 23 J.D. Brooks, G.H. Taylor: The formation of graphitizing carbons from the liquid phase, Carbon 3 (1965) 185–186.
- 24 E. Fitzer, K. Müller, W. Schaefer in P. L. Walker (ed.): Chemistry and Physics of Carbon, vol. 7, Marcel Dekker, New York 1971, p. 237.
- 25 I.C. Lewis, Carbon 20 (1982) 519.
- 26 Elkem, WO 03/027012 A1, 2003 (J.A. Aune, L.P. Larsen, P.O. Nos, G. Aas).
- 27 R. Kawamura, T. Wakasa: “Improvement in the Calcination Process of Anthracite for Cathode Carbon Blocks,” Light Metals 2001, New Orleans, LA 2001, Conference abstracts, p. 711–716.
- 28 E. G. Acheson, US 568 323, 1895.
- 29 J. H. Castner, GB 19 089, 1893.
- 30 Graphite Synthesis Company, US 4,160,813, 1979 (R. Markel, M. Goldberger).
- 31 J.C. Bokros in P. L. Walker (ed.): Chemistry and Physics of Carbon, vol. 5, Marcel Dekker, New York 1969, p. 1.
- 32 L.M. Currie, V.C. Hamister, H.G. MacPherson, Proc. Int. Conf. Peaceful Uses At. Energy 8 (1956) 451.
- 33 B. Lux, Giessereiforschung 22 (1970) 65, 161.
- 34 H.P. Boehm, Carbon 16 (1978) 385.
- 35 United Aircraft Corp., FR 1 433 002, 1965 (W.E. Arnoldi, P.J. Birbara, S. Russell).
- 36 M.H. Wagner, H. Jäger, I. Letizia, G. Wilhelmi: “Anomalous puffing of coal tar pitch needle coke, effect of residual nitrogen content,” XVIIIth Biennial Conference on Carbon, Worcester, MA 1987, 38–39.
- 37 E. Fitzer, W. Frohs, G. Hannes, D. Kompalik: “Sulphur and nitrogen puffing of petroleum and coal tar pitch cokes,” XVIIIth Biennial Conference on Carbon, Worcester, MA 1987, 40–41.
- 38 K. Fujimoto, M. Sato, M. Yamada, R. Yamashita, K. Sahibata: “Puffing inhibitors for coal tar based needle coke,” Carbon 24 (1986) 397–401.
- 39 K. Fujimoto, I. Mochida, Y. Todo, T. Oyama, R. Yamashita, H. Marsh: “Mechanism of puffing and the role of puffing inhibitors in the graphitization of electrodes from needle coke,” Carbon 27 (1989) 909–917.
- 40 E. Fitzer, S. Weisenburger: “Direktverfolgung der thermischen Graphitierung eines Pechkokses durch röntgenographische Messungen der Basisreflexe (001) und der Modulation der zweidimensionalen (hk) Reflexe unter währenden Bedingungen bis 2600°C,” Int. Carbon Conference, Baden-Baden 1972, pp. 130–132.
- 41 A.R. Ubbelohde, D.A. Young, A.W. Moore, Nature (London) 198 (1963) 1192.
- 42 H. Marsh, J. Griffith, lecture held at the Int. Symposium on Carbon, Toyohashi, Japan, 1982, 81.
- 43 F.W. Wellmer, Press Release BASF, October 2004.
- 44 D.G. Hammond et al., American Institute of Chemical Engineers, 2003 Spring National Meeting, April 2, 2003, Paper 44c.
- 45 H. Predel, M. Niesen: “Petroleumkoks–Entwicklung und Tendenzen,” Erdöl, Erdgas, Kohle 121 (2005) no. 10, 348–352.
Further Reading
- P. Delhaès (ed.): Graphite and Precursors, vol. 1, Gordon and Breach, Amsterdam 2001.
- M. Inagaki (ed.): New Carbons, 1st ed., Elsevier, Amsterdam 2000.
- H. O. Pierson: Handbook of Carbon, Graphite, Diamond and Fullerenes, Noyes Publ., Park Ridge, NJ 1993.