By Andrzej Stankiewicz, Jacob A. Moulijn
ISBN-10: 0203913299
ISBN-13: 9780203913291
ISBN-10: 0824743024
ISBN-13: 9780824743024
The 1st consultant to bring together present examine and frontline advancements within the technological know-how of method intensification (PI), Re-Engineering the Chemical Processing Plant illustrates the layout, integration, and alertness of PI ideas and buildings for the advance and optimization of chemical and business vegetation. This quantity updates execs on rising PI gear and methodologies to advertise technological advances and operational efficacy in chemical, biochemical, and engineering environments and offers transparent examples illustrating the implementation and alertness of particular process-intensifying gear and strategies in a variety of advertisement arenas
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Additional resources for Re-Engineering the Chemical Processing Plant: Process Intensification
Example text
118. Terril DL. AIChE Symp Ser 2000; 96(323):329–332. Johns WR. Chem Eng Prog 2001; 97(4):59–65. Steffens MA, Fraga ES, Bogle IDL. Comput Chem Eng 1999; 23:1455–1467. Johnson DB, Bogle IDL. Chem Papers 2000; 54:398–405. Bisschops MAT. Centrifugal adsorption technology. D. dissertation, Delft University of Technology, Delft, Netherlands, 1999. Copyright © 2004 by Marcel Dekker, Inc. All Rights Reserved. 2 Chemical Processing in High-Gravity Fields David L. A. 1. INTRODUCTION The use of high-gravity, or centrifugal, fields for chemical processing has generated much interest in recent years.
The very high heat transfer rates achievable in microreactors allow for isothermal operation of highly exothermic processes (also important in carrying out kinetic studies). The very low reaction-volume-to-surfacearea ratios make microreactors potentially attractive for carrying out reactions involving poisonous or explosive reactants (think about partial oxidation reactions). Copyright © 2004 by Marcel Dekker, Inc. All Rights Reserved. FIGURE 14 HEX reactor developed by the BHR Group. ) Also, microchannel heat exchangers have channel sizes around or lower than 1 mm and are fabricated via silicon micromachining, deep X-ray lithography, or nonlithographic micromachining.
Laird T. Org Proc Res Dev 2001; 5:612. Stankiewicz A. Between the chip and the blast furnace. Process intensification in industry and in academia. UEF Conference “Refocusing Chemical Engineering,” Barga, Italy, May 27–June 1, 2001. Douglas JM. Conceptual Design of Chemical Processes. New York: McGraw-Hill, 1988. The future is now! DSM Magazine 1999; 148:4–10. Elverding P. DEFACTO 2001; 15(5):28–32. Hendershot DC. Chem Eng Prog 2000; 96:35–40. Ramshaw C. The desktop fine chemical process. TG Lustrum Congress 2000, “Honey, I Shrunk the Plant,” Delft, Nov 8–9, 2000.
Re-Engineering the Chemical Processing Plant: Process Intensification by Andrzej Stankiewicz, Jacob A. Moulijn
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