Funding Information: This work was supported by the BECCU project (https://www.beccu.fi/) (accessed on 1 October 2022), which received funding from Business Finland (Funding decision number 3834/31/2019). Publisher Copyright: © 2022 by the authors.The highly selective production of light olefins from CO2 was demonstrated for the first time with a laboratory-scale process comprising consecutive reverse water gas shift (RWGS) and Fischer–Tropsch (FT) reactors. The RWGS reaction, catalyzed by rhodium washcoated catalyst at 850 °C yielded good quality syngas with conversion values close to the thermodynamic equilibrium and without experiencing catalyst deactivation from carbon formation or sintering. For the FT synthesis, a packed bed Fe-Na-S/α...
The utilization of carbon dioxide as a raw material to produce light olefins can occur via reverse w...
CO2 global emissions exceed 30 Giga tonnes (Gt) per year, and the high atmospheric concentrations ar...
L'hydrogénation du CO et du CO2 sont une voie intéressante de conversion des matières premières non ...
The highly selective production of light olefins from CO2 was demonstrated for the first time with a...
The highly selective production of light olefins from CO2 was demonstrated for the first time with a...
Light olefins as one the most important building blocks in chemical industry can be produced via Fis...
There is a large worldwide demand for light olefins (C2=–C4=), which are needed for the production o...
The scope in this project is the design of a synthesis gas to light olefins (C2, C3) process includi...
SSCI-VIDE+ING+PBD:YSC:DFAInternational audienceTo fulfil climate objectives, the production of synth...
The production of light olefins, as the critical components in chemical industries, is possible via ...
The increase in global demand for lower olefins (ethylene, propylene, and butylenes) coupled with th...
One of the main initiatives for fighting climate change is to use carbon dioxide as a resource inste...
The model mixtures for biomass-derived-syngas consisted of H2 and CO of different molar H2/CO-ratios...
Four iron-based catalysts supported on niobium oxide (Nb2O5) were prepared by impregnation and chara...
C2 to C4 olefins are traditionally produced from steam cracking of naphtha. The necessity for altern...
The utilization of carbon dioxide as a raw material to produce light olefins can occur via reverse w...
CO2 global emissions exceed 30 Giga tonnes (Gt) per year, and the high atmospheric concentrations ar...
L'hydrogénation du CO et du CO2 sont une voie intéressante de conversion des matières premières non ...
The highly selective production of light olefins from CO2 was demonstrated for the first time with a...
The highly selective production of light olefins from CO2 was demonstrated for the first time with a...
Light olefins as one the most important building blocks in chemical industry can be produced via Fis...
There is a large worldwide demand for light olefins (C2=–C4=), which are needed for the production o...
The scope in this project is the design of a synthesis gas to light olefins (C2, C3) process includi...
SSCI-VIDE+ING+PBD:YSC:DFAInternational audienceTo fulfil climate objectives, the production of synth...
The production of light olefins, as the critical components in chemical industries, is possible via ...
The increase in global demand for lower olefins (ethylene, propylene, and butylenes) coupled with th...
One of the main initiatives for fighting climate change is to use carbon dioxide as a resource inste...
The model mixtures for biomass-derived-syngas consisted of H2 and CO of different molar H2/CO-ratios...
Four iron-based catalysts supported on niobium oxide (Nb2O5) were prepared by impregnation and chara...
C2 to C4 olefins are traditionally produced from steam cracking of naphtha. The necessity for altern...
The utilization of carbon dioxide as a raw material to produce light olefins can occur via reverse w...
CO2 global emissions exceed 30 Giga tonnes (Gt) per year, and the high atmospheric concentrations ar...
L'hydrogénation du CO et du CO2 sont une voie intéressante de conversion des matières premières non ...