Page 462 - Dust Explosions in the Process Industries
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Ignition of Dust Clouds and Dust Deposits 429
Kachan, V. N., N. @. Kocherga, P. M. Petntkhin, et al. (1976) “Ignitionof Coal Dust by Frictional Sparks.”
Fizika Gorenja k Vzryva 12,pp. 302-304. (Translatedby New York Plenum Publishing Corporation.)
Kalkert, N., and Schecker,H.-G. (1979) “Theoretische iiberlegungen zum Einfluss der Teilchengrosse
auf die Mindestziindenergie von Stauben.” Chem.-Ing.-Tech. 51, pp. 1248-1249.
Klemens, R., and S. Wojcicki. (1981) “Model of Ignition of Dust/Air Mixtures by a Low-Energy
Electric Spark.” Unpublished manuscript, Warsaw Technical University, Poland.
Krauss, L., and H. Kiempl. (1963) “Uber das Temperaturabklingenin Funken 50 000 bis 5000 Grad.”
Zeitschriftfur angewandte Physik 16, pp. 243-247.
Leisch, S. O., C. MI.Kauffman, and M. Sichel. (1984) “Smouldering Combustion in Horizontal Dust
Layers.” Proceedings of 20th Symposium (International) on Combustion, the Combustion Institute,
pp. 1601-1610.
Lermant, J.-C., and S.Yip. (1984) “GeneralizedSemenovModel for Thermal Ignition. ..” Combustion
and Flame 57, pp. 41-54.
Lermant, J.-C., and S. Yip. (1986) “Response to R. H. Essenhigh, ‘A Comment on the Definition of
Ignition Used by Lermant and Yip.”’ Combustion and Flame 63, p. 305.
Leuschke, 6. (1980) “Induction Times of Dust Deposits Stored at and above Self-Ignition
Temperatures.” Proceedings of the Third International Symposium on Loss Prevention and Safety
Promotion in the Process Industries, Basle, vol. 2, pp. 81647-81656.
Leuschke, G. (1981) “Experimental Investigations on Self-Ignition of Dust Deposits in Hot
Environments.” Proceedings of the Industrial Chemical Engineering Symposium. Series No. 68.
Rugby, UK: Institution of Chemical Engineers.
Leuschke, G., and J. Zehr. (1962) “Zundung von Staublagerungen und Staubkuftgemischen durch
mechanisch erzeugte Funken.” Arbeitsschutz 6, p. 146.
Liang, H., and T. Tanaka. (1987a) “Effect of Biot Number on the Critical Condition for Spontaneous
Ignition.” Kagaku Kogaku Ronbunshu 13, pp. 847-849.
Liang, H., and T. Tanaka. (1987b) “The Spontaneous Ignition of Dust Deposits. Ignition Temperature
and Induction Time.” Kona. Powder Science and Technology in Japan, no. 5, pp. 25-32.
Liang, W.,and T. Tanaka. (1988) “Simulation of SpontaneousHeating for the Evaluation of the Ignition
Temperature and Induction Time of a Combustible Dust.” International Chemical Engineering 28,
pp. 652-660.
Line, L. E., H. A. Rhodes, and T. E. Gilmer. (1959) “The Spark Ignition of Dust Clouds.” Journal of
Physical Chemistry 63, pp. 290-294.
Marchand, D. (1988) “Entstehung von Glimmnestern bzw. Schwelbriindenund deren Auswirkungen
auf die Betriebssicherheit von Tuchfiltem. Staub-Reinhalt.” Luft 48, pp. 369-370.
Matsuda, T., and M. Naito. (1983) “Effects of Spark Discharge Duration on Ignition Energy for
Dust/Air Suspensions.” In Particulate Systems, Technology and Fundamentals, ed. J. K. Beddow.
New York: Hemisphere Publishing Corp./McGraw-Hill International Book Co., pp. 189-198.
Miron, Y., and C. P. Lazzara. (1988) “Hot-Surface Ignition Temperatures of Dust Layers.” Fire and
Materials 12, pp. 115-126.
Mitsui, R., and T. Tanaka. (1973) “Simple Models of Dust Explosion. Predicting Ignition Temperature
and Minimum Explosive Limit in Terms of Particle Size.” Industrial Engineering and Chemistry,
Process Design and Development 12, pp. 384-389.
Muller, R. (1989) “Ziindfiihigkeit von mechanisch erzeugten Funken und heissen Oberflachen in
Staub-Luftgemischen.” VDI-Berichte [VDI-Verlag GmbH, Diisseldorfl 701, pp. 421466.
Nomura, S., andT. 6.Callcott. (1986) “Calculation of the Ignition Sensitivity of Dus~Clouds ofvarying
Size Distributions.” Powder Technology 45, pp. 145-154.
Norberg, A., D. Xu, and D. Zhang. (1988, September) “Powder Ignition Energy Measured Utilizing
a New Fluidized Bed Ignition Chamber.” Report ISSN 0349-8352. Uppsala, Sweden: Institute for
High Voltage Research.
Parker, S. J. (1985,August) “Electric Spark Ignition of Gases and Dusts.” Ph.D. thesis, City University,
London. Dust part also published as Report No. 8533514. Bergen, Norway: Chr. Michelsen Institute.

