Page 460 - Dust Explosions in the Process Industries
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Ignition of Dust Clouds and Dust Deposits  427

                Ballal, D. R.  (1980) “Ignition and Flame Quenching of  Quiescent Dust Clouds of  Solid Fuels.”
                 Proceedings of  the Royal Society (London) A369, pp. 479-500.
                Ballal, D. R., and A. H. Lefebvre. (1977) “Ignition and Flame Quenchingin Flowing Gaseous Mixtures.”
                 Proceedings of the Royal Society (London) A357, pp. 163-1 81.
                Beever, P.  (1984) “Self-Heating of  Powders in Theory and Practice.”  VDi-Berichte [VDI-Verlag
                 GmbH, Dusseldofl494, pp. 151-155.
                Beever, P.  E (1988)  “Self-Heating and Spontaneous Combustion.’’ In SFPE Handbook  of  Fire
                 Protection Engineering. Quincy, MA: National Fire Protection Association.
                Bigg, S., and P. J. Street. (1989) “Predicting Spontaneous Ignition and Combustion in Fixed Beds of
                 Activated Carbon.” Combustion Science and Technology 65, pp. 245-262.
                Birks, PJ.,  and A.  G. F. Alabi.  (1986, April)  “Reactions Leading to the Autoignition  of  Direct
                 Reduced Iron.” Proceedings of the Fifth International Iron and Steel Congress, Washington, DC,
                 pp. 85-91.
                Birks, N., and A. G. E Alabi. (1987, MarcWApril) “Mechanisms in Corrosion-Induced Autoignition
                 of Direct Reduced Iron.” Proceedings of the 70th Steelmaking Conference, Pittsburgh.
                Birks, N., and A. G. F. Alabi. (1988) “The Role of Corrosion in the Autoignition of Direct Reduced
                 Iron.” Proceedings of the MI.  0.Philbrook Memorial Symposium, pp. 61-65.
               Bowes, P.  C. (1981)  “A General Approach to the Prediction  and Control of Potential Runaway
                 Reaction.” Proceedings of the Industrial Chemical Engineering Symposium. Series No. 68. Rugby,
                 UK: The Institution of Chemical Engineers, pp. 1/A:1-1/A:35.
               Bowes,  P.  C.  (1984)  Self-Heating:  Evaluating  and  Controlling  the  ffazards. Amsterdam:
                 Elsevier.
               Boyle, A. R., and F. J. Llewellyn. (1950) “The Electrostatic Ignitability of Dust Clouds and Powders.”
                 Journal of the Socieq of the Chemicals Industry Transactions 69, pp. 173-181.
               Bradley, D., and E K.-K. Lung. (1987) “Spark Ignition and the Early Stages of  Turbulent Flame
                 Propagation.” Combustion and Flame 69, pp. 71-93.
               Brooks, K., N. Svanas, and D. Glasser. (1988) “Evaluating the Risk of Spontaneous Combustion in
                 Coal Stockpiles.” Fuel 67, pp. 651-656.
                Chamberlain, E. A. C.. and D. A. Hall. (1973, February) “The Liability of  Coals to Spontaneous
                 Combustion.” Colliery Guardian, pp. 65-72.
                Dahn, C.J., and B. N. Reyes. (1987) “Determination of Metal Sparking Characteristicsand the Effects
                 on Explosive Dust Clouds.” In Industrial Dust Explosions, ed. K. L. Cashdollar and M. Hertzberg.
                 Special Technical Publication 958. Philadelphia: ASTM, pp. 324-332.
                Dik, I. 6.(1987) “Solution by the Thermal Impedance Method to the Problem of Critical Conditions
                 for Self-Ignition.” In  Combustion, Explosion  and Shock  Waves. New York: Plenum Publishing
                 Corporation, pp. 495-501.
               Duncan. A. B., G.P. Peterson, and L. S. Fletcher. (1988) “EffectiveThermal Conductivity within Packed
                 Beds of Spherical Particles.” ASME HTD 104, pp. 77-88.
               Eckhoff, R. K.  (1970) “The Energy Required for the Initiation of  Explosions in Dust  Clouds by
                 Electric Sparks.” M. Phil. thesis, University of London.
               Eckhoff, R. K. (1975) “Towards Absolute Minimum Ignition Energies for Dust Clouds?’ Combustion
                 and Flame 24, pp. 53-64.
               Eckhoff, R. K., and G. G. Enstad. (1976) “Why Are  ‘Long’ Electric Sparks More Effective Dust
                 Explosion Initiators than ‘Short’ Ones?’  Combustion and Flame 27, pp. 129-131.
               Elder, J. L., L. D. Schmidt, W. A. Steiner, et al. (1945) “Relative Spontaneous Heating Tendencies of
                 Coals.” Technical Paper 681. Washington, DC: U.S. Department of the Interior.
               Enemoto, H., M. Nifuku, M. Deguchi, et al. (1987) “On the Ignition Source of Fire in a Bag Separator
                 in the Pneumatic Transport System for Pulverized Coal.” Safety Engineering (in Japanese) 26, no. 3,
                 pp. 153-160.
               Enstad, 6.G. (1981, February) “Effect of Shock Wave Emitted from Electric Spark Discharges on the
                 Energy Required for Spark Ignition of Dust Clouds.” Report No. 813101-2. Bergen, Norway: Chr.
                 Michelsen Institute.
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