Integral method of analysis of fischer-tropsch synthesis reactions in a catalyst pellet
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics,Industrial and Manufacturing Engineering,General Chemical Engineering,General Chemistry
Reference27 articles.
1. The behaviour of porous catalyst particles in view of internal mass and heat diffusion effects
2. Non-isothermal reaction in catalyst particles
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4. A simple method for the calculation of effectiveness factors
5. Diffusion and reaction on spherical catalyst pellets: steady state- and local stability analysis
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1. Modeling analysis of cobalt-based Fischer-Tropsch catalyst particles;Chinese Journal of Chemical Engineering;2024-06
2. Pore diffusion effects on catalyst effectiveness and selectivity of cobalt based Fischer-Tropsch catalyst;Catalysis Today;2020-03
3. Kinetic modeling and simulation of catalyst pellet in the high temperature sulfuric acid decomposition section of Iodine-Sulfur process;International Journal of Hydrogen Energy;2019-11
4. Effects of Catalyst Activity, Particle Size and Shape, and Process Conditions on Catalyst Effectiveness and Methane Selectivity for Fischer–Tropsch Reaction: A Modeling Study;Industrial & Engineering Chemistry Research;2017-03-03
5. Interplay of reaction and pore diffusion during cobalt-catalyzed Fischer–Tropsch synthesis with CO 2 -rich syngas;Catalysis Today;2016-10
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