Influence of calcination on physico-chemical properties and Ficher–Tropsch activity of titanosilicate supported cobalt catalysts with different pore sizes
Author:
Funder
Canada Research Chair
Natural Science and Engineering Research Council
Publisher
Elsevier BV
Subject
Process Chemistry and Technology,Catalysis
Reference23 articles.
1. Advances in the Development of Novel Cobalt Fischer−Tropsch Catalysts for Synthesis of Long-Chain Hydrocarbons and Clean Fuels
2. Design, synthesis, and use of cobalt-based Fischer-Tropsch synthesis catalysts
3. On the Origin of the Cobalt Particle Size Effects in Fischer−Tropsch Catalysis
4. On the support in cobalt Fischer–Tropsch synthesis—Emphasis on alumina and aluminates
5. Effect of the porous structure of the support on hydrocarbon distribution in the Fischer–Tropsch reaction
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1. Catalytic performance of cobalt supported onto APTES functionalized TiO2 for Fischer-Tropsch reaction;Fuel;2023-05
2. Design of a renewable catalyst support derived from biomass with optimized textural features for fischer tropsch synthesis;Renewable Energy;2023-01
3. On the Effect of Flash Calcination Method on the Characteristics of Cobalt Catalysts for Ammonia Synthesis Process;European Journal of Inorganic Chemistry;2021-04-07
4. Recent developments in catalyst pretreatment technologies for cobalt based Fisher–Tropsch synthesis;Reviews in Chemical Engineering;2021-01-11
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