Multi-phase and catalytic chemical reactors design simulation tool for pollution prevention

被引:0
|
作者
Hopper, J.R. [1 ]
Saleh, J.M. [1 ]
Waghchoure, S. [1 ]
Hedge, S.C. [1 ]
Pike, R. [1 ,2 ]
机构
[1] Lamar University, Chemical Engineering Department, P.O. Box 10053, Beaumont, TX 77710, United States
[2] Louisiana State University, Baton Rouge, LA, United States
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关键词
Algorithms - Computer aided design - Computer simulation - Computer software - Flowcharting - Fluidized beds - Industrial wastes - Mathematical models - Optimization - Pollution control - Process engineering;
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摘要
A comprehensive chemical reactor analysis tool was required to complete a project to develop an advanced on-line process optimization analysis system for pollution prevention. The advanced process analysis system integrates programs (reactors, on-line optimization, pinch analysis, and process flowsheeting) to analyze and modify chemical processes for waste minimization. The reactor analysis program is to be used to evaluate and analyze multi-phase and catalytic reactors to suggest to the plant and process engineers the best reactor type and operating conditions. A multi-phase catalytic reactor design and analysis tool, ReaCat, has been developed. ReaCat, incorporates models to design the following reactor types: plug flow, CSTR, batch, catalytic fixed-bed, catalytic fluidized-bed, gas-liquid stirred tank, Trickle-bed, three-phase fixed bubble-bed, bubble slurry column, CSTR slurry, three-phase fluidized-bed. This paper gives a summary of the multi-phase and catalytic reactors: classifications, theory and design models, numerical methods and solution algorithms. A description of the reactor analysis tool including comparison cases with experimental data is followed.
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页码:17 / 22
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