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Journal ArticleDOI

Multiple steady states in an isothermal, integral reactor: the catalytic oxidation of carbon monoxide over platinum--alumina

L. Louis Hegedus, +2 more
- 01 Sep 1977 - 
- Vol. 23, Iss: 5, pp 632-642
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TLDR
In this article, stable isothermal multiplicities were observed during carbon monoxide oxidation in an integral reactor, filled with alumina supported platinum catalysts, in the conversion-temperature, conversion-inlet carbon dioxide concentration and conversion-mass flow rate domains.
Abstract
Stable isothermal multiplicities were observed during carbon monoxide oxidation in an integral reactor, filled with alumina supported platinum catalysts. The multiplicities were investigated in the conversion-temperature, conversion-inlet carbon monoxide concentration and conversion-mass flow rate domains. The region of multiplicities was found to widen significantly upon catalyst aging which enhanced the pellets' diffusive resistances. Several intermediate stable steady states were found between the highest and lowest steady states, both experimentally and theoretically. All the above phenomena could be well interpreted by the interactions of the kinetics of carbon monoxide oxidation with intrapellet diffusion resistances.

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Role of support structure on kinetic parameter estimations in a shell catalyst

TL;DR: In this paper, the authors showed that the values of the kinetic parameters depend significantly upon the location and width of the active catalyst layer as well as value of the effective diffusivity of the reactant within the porous structure.
Journal ArticleDOI

Spatiotemporal patterns in a porous catalyst during light-off and quenching of carbon monoxide oxidation

TL;DR: In this article, a detailed numerical model was used to simulate the behavior of carbon monoxide oxidation within a porous platinum/alumina catalyst during temperature ramps, revealing complex spatial patterns of species and local reaction rate which change with time and temperature.
Journal ArticleDOI

An Approach for Achieving Unstable Convergence for Non-Isothermal CSTRs

TL;DR: A novel algorithm is proposed to stabilize the system by designing a cascade of CSTRs that are capable of achieving this inaccessible steady state and meets the design criteria and achieves the locally unstable steady state temperature to a high degree of accuracy.
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Comprehensive Characterization of the Behavior of a Diesel Oxidation Catalyst Used on a Dual-Fuel Engine

TL;DR: The objective of this work is the evaluation of thermal behavior and performance of a conventional diesel oxidation catalyst installed on an engine operating in dual-fuel diesel-methane conditi...
Journal ArticleDOI

Achieving stability under inaccessible conversions using CSTR cascades

TL;DR: The comparison with the graphical solution method showed that the modified method is faster and more accurate in solving the CSTR problem and gives better stability and tolerance to a probable control system failure.
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