The effect of time on stream and feed composition on the selectivity of a cobalt fischer—Tropsch catalyst
- 1 April 1984
- journal article
- research article
- Published by Wiley in The Canadian Journal of Chemical Engineering
- Vol. 62 (2) , 249-256
- https://doi.org/10.1002/cjce.5450620213
Abstract
The Taylor–Wojciechowski formulation of Fischer Tropsch product distributions has been used to study the effect of time on stream and of feed composition on the parameters which arise in the T–W treatment. An experimental setup which allows the required evaluation of product yields is also described.The T–W formulation was found to give an excellent fit to data obtained using a cobalt‐on‐kieselguhr catalyst. Since the ratios of the various specific rates of parallel synthesis reactions were found to be different functions of the H2/CO ratio in the reactor, we conclude that propagation, branching and termination reactions are not governed by the same kinetics.Keywords
This publication has 8 references indexed in Scilit:
- Stirred autoclave apparatus for study of the Fischer-Tropsch synthesis in a slurry bed. 2. Analytical procedures.Industrial & Engineering Chemistry Fundamentals, 1983
- A quantitative theoretical treatment of the fischer tropsch synthesisThe Canadian Journal of Chemical Engineering, 1983
- On-Line Single Run Analysis of Effluents from a Fischer-Tropsch ReactorJournal of Chromatographic Science, 1981
- Chain Growth in the Fischer-Tropsch SynthesisPublished by American Chemical Society (ACS) ,1979
- New concepts and results concerning the mechanism of carbon monoxide hydrogenation: I. Organic oxygen compounds produced during medium-pressure synthesis with iron catalystsFuel Processing Technology, 1977
- Fischer-Tropsch Reaction Mechanism Involving Stepwise Growth of Carbon ChainThe Journal of Chemical Physics, 1951
- Isomer Distribution in Hydrocarbons from the Fischer-Tropsch ProcessThe Journal of Chemical Physics, 1949
- Molecular Size Distribution in Linear Condensation Polymers1Journal of the American Chemical Society, 1936