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Over the past few years there has been a significant growth in the
commercial application of a variety of processes which are all
essentially based upon the very rapid heat treatment of powdered
solid material in dilute gas suspensions. The objective of flash
heating is usually to create a desirable product by means of
physical and/or chemical transformations in the solid phase,
usually with a high degree of control and with lower specific
energy consumption than dense phase systems. Examples of successful
flash reaction processing are to be found in the areas
ofpyrometallurgy, mineral processing, plasma processing and, most
recently, rapid prototyping. These developments have been based on,
and have inspired, an expansion in fundamental research activities.
As our understanding of flash reaction technology improves so does
the need increase for the review of progress and the dissemination
of accumulated knowl edge. Previous stocktaking on selected areas
of flash reaction technology occurred in 1988 and can be found in
the proceedings of three conferences held in that year: Flash
Reaction Processes, Eds. D.G.C.Robertson, H.y'Sohn and
N.J.Themelis, published by the Center for Pyrometallurgy,
University of Missouri-Rolla, Rolla, MO 65401-0249; Production and
Processing of Fine Particles, Ed. A.J .Plumpton, Pergamon Press,
LeN 88-22755; High Temperature Dust-Laden Jets in Plasma
Technology, Eds. O.P.Solonenko and A.I.Fedorchenko, VSP, Utrecht,
ISBN 90- 6764-120-0."
Over the past few years there has been a significant growth in the
commercial application of a variety of processes which are all
essentially based upon the very rapid heat treatment of powdered
solid material in dilute gas suspensions. The objective of flash
heating is usually to create a desirable product by means of
physical and/or chemical transformations in the solid phase,
usually with a high degree of control and with lower specific
energy consumption than dense phase systems. Examples of successful
flash reaction processing are to be found in the areas
ofpyrometallurgy, mineral processing, plasma processing and, most
recently, rapid prototyping. These developments have been based on,
and have inspired, an expansion in fundamental research activities.
As our understanding of flash reaction technology improves so does
the need increase for the review of progress and the dissemination
of accumulated knowl edge. Previous stocktaking on selected areas
of flash reaction technology occurred in 1988 and can be found in
the proceedings of three conferences held in that year: Flash
Reaction Processes, Eds. D.G.C.Robertson, H.y'Sohn and
N.J.Themelis, published by the Center for Pyrometallurgy,
University of Missouri-Rolla, Rolla, MO 65401-0249; Production and
Processing of Fine Particles, Ed. A.J .Plumpton, Pergamon Press,
LeN 88-22755; High Temperature Dust-Laden Jets in Plasma
Technology, Eds. O.P.Solonenko and A.I.Fedorchenko, VSP, Utrecht,
ISBN 90- 6764-120-0."
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