Recent advances on syngas conversion targeting light olefins

S Zhao, H Li, B Wang, X Yang, Y Peng, H Du, Y Zhang… - Fuel, 2022 - Elsevier
The direct synthesis of light olefins (C 2 H 4, C 3 H 6 and C 4 H 8) from syngas (a mixture of
H 2 and CO) could supply the extra resources of these platform building blocks for the …

A review of advanced catalyst development for Fischer–Tropsch synthesis of hydrocarbons from biomass derived syn-gas

H Jahangiri, J Bennett, P Mahjoubi… - Catalysis Science & …, 2014 - pubs.rsc.org
Fischer–Tropsch synthesis (FTS) is a process which converts syn-gas (H2 and CO) to
synthetic liquid fuels and valuable chemicals. Thermal gasification of biomass represents a …

Atomically Dispersed Co2+ Sites Incorporated into a Silicalite-1 Zeolite Framework as a High-Performance and Coking-Resistant Catalyst for Propane Nonoxidative …

L Wu, Z Ren, Y He, M Yang, Y Yu, Y Liu… - … Applied Materials & …, 2021 - ACS Publications
Propane nonoxidative dehydrogenation (PDH) is a promising route to produce propylene
with the development of shale gas exploration technology. Co-based catalysts with low cost …

Development of novel catalysts for Fischer–Tropsch synthesis: tuning the product selectivity

Q Zhang, J Kang, Y Wang - ChemCatChem, 2010 - Wiley Online Library
Fischer–Tropsch synthesis is a heterogeneous catalytic process for the production of clean
hydrocarbon fuels or chemicals from synthesis gas (CO+ H2), which can be derived from …

A review of Fischer Tropsch synthesis process, mechanism, surface chemistry and catalyst formulation

H Mahmoudi, M Mahmoudi, O Doustdar… - Biofuels …, 2017 - degruyter.com
For more than half a century, Fischer-Tropsch synthesis (FTS) of liquid hydrocarbons was a
technology of great potential for the indirect liquefaction of solid or gaseous carbon-based …

Recent advances in Fischer-Tropsch synthesis using cobalt-based catalysts: A review on supports, promoters, and reactors

Z Gholami, Z Tišler, V Rubáš - Catalysis Reviews, 2021 - Taylor & Francis
Fischer–Tropsch (FT) process is a promising method for producing liquid fuels and other
valuable chemicals through CO hydrogenation. The catalyst activity and product selectivity …

Deactivation of cobalt based Fischer–Tropsch catalysts: a review

NE Tsakoumis, M Rønning, Ø Borg, E Rytter, A Holmen - Catalysis Today, 2010 - Elsevier
To trace the origin of catalyst deactivation is in many cases difficult. It is usually a complex
problem where several mechanisms contribute to the loss of activity/selectivity. Low …

Two-dimensional zeolites in catalysis: current status and perspectives

MV Opanasenko, WJ Roth, J Čejka - Catalysis Science & Technology, 2016 - pubs.rsc.org
Two-dimensional zeolites have been studied and developed as diverse and fundamentally
new forms of 3D framework structures. They can produce structures such as pillared …

Structure–activity relationships of Fe-Co/K-Al2O3 catalysts calcined at different temperatures for CO2 hydrogenation to light olefins

T Numpilai, T Witoon, N Chanlek, W Limphirat… - Applied Catalysis A …, 2017 - Elsevier
Abstract Fe-Co/K-Al 2 O 3 catalyst has been reported to be active and selective for olefin
production from CO 2 hydrogenation. However, the effect of calcination temperature on the …

An Investigation into the Effects of Mn Promotion on the Activity and Selectivity of Co/SiO2 for Fischer–Tropsch Synthesis: Evidence for Enhanced CO Adsorption and …

GR Johnson, S Werner, AT Bell - ACS Catalysis, 2015 - ACS Publications
Mn is an effective promoter for improving the activity and selectivity of Co-based Fischer–
Tropsch synthesis (FTS) catalysts, but the mechanism by which this promoter functions is …