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Prediction of the Thermal Runaway Limit and Optimal Operation of Heat Transfer-Limited, Fixed-Bed Reactor Systems

Journal Article · · Industrial and Engineering Chemistry Research

Not provided.

Research Organization:
American Institute of Chemical Engineers (AIChE), New York, NY (United States)
Sponsoring Organization:
USDOE Office of Energy Efficiency and Renewable Energy (EERE)
DOE Contract Number:
EE0007888
OSTI ID:
1977843
Journal Information:
Industrial and Engineering Chemistry Research, Vol. 60, Issue 42; ISSN 0888-5885
Publisher:
American Chemical Society (ACS)
Country of Publication:
United States
Language:
English

References (15)

Chemical reactor stability and sensitivity: II. Effect of parameters on sensitivity of empty tubular reactors March 1956
Parametric sensitivity and runaway in tubular reactors September 1982
Simple runaway criteria for cooled reactors June 1989
Parametric sensitivity and runaway in fixed bed catalytic reactors October 1970
Thermal runaway limit of tubular reactors, defined at the inflection point of the temperature profile September 1992
What do we know already about reactor runaway? – A review March 2021
Efficient calculation of constraint back-offs for optimization under uncertainty: A case study on maleic anhydride synthesis December 2018
Heterogeneous catalytic reactor design with optimum temperature profile I: application of catalyst dilution and side-stream distribution October 2004
Runaway in Highly Sensitive Tubular Reactors December 1988
A Simple Approach to Highly Sensitive Tubular Reactors October 1988
The character of the stationary state of exothermic processes January 1958
Completion of thermal runaway criteria: Two new criteria to define runaway limits March 2019
Fundamental principles of laboratory fixed bed reactor design August 2016
Simultaneous dynamic optimization strategies: Recent advances and challenges September 2006
On the implementation of an interior-point filter line-search algorithm for large-scale nonlinear programming April 2005

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