The conversion of syngas through the Fischer–Tropsch (FT) process leads to the formation of products, essentially made up of a mixture of n-paraffins, which need to be subjected to a hydrocracking process in order to improve both yields and properties of middle distillates. The paper presents the evolution of a previous lumped model; the actual one is able to reproduce the outlet stream composition since it satisfies the material balance of each component and provides kinetic constants that depend on the number of carbon atoms
Hydrocracking Fischer-Tropsch waxes is a catalytic process that occurs both in vapour phase and in l...
The single-step production of wax-free liquid hydrocarbons from syngas (H<sub>2</sub> + CO) via inte...
Considering the current need of low emission fuels for the automotive market and the need of renewab...
The conversion of syngas through the Fischer–Tropsch (FT) process leads to the formation of products...
Production of synthetic liquid fuels via Fischer-Tropsch (FT)-based technologies is a valuable way t...
The single-step production of wax-free liquid hydrocarbons from syngas (H<sub>2</sub> + CO) via inte...
A pathway-level kinetic model for the hydrocracking process of the Fischer-Tropsch waxes is presente...
Fischer–Tropsch synthesis is considered a key component of alternative-to-oil technology pathways to...
The single-step production of wax-free liquid hydrocarbons from syngas (H2+CO) via integration of Fi...
International audienceDevelopment of models for industrial hydrocrackers has received a great amount...
The hydrocracking behavior the product of a Fischer-Tropsch synthesis consisting of a C4–C30 mixture...
In recent years, the production of hydrocarbon cuts from various sources via the Fischer-Tropsch pro...
A novel approach to the description of the kinetics of hydrocracking of vacuum gas oils (VGO) is dev...
Hydrocracking feedstocks contain a wide variation in the concentration of various compunds types, i....
Hydrocracking Fischer-Tropsch waxes is a catalytic process that occurs both in vapour phase and in l...
The single-step production of wax-free liquid hydrocarbons from syngas (H<sub>2</sub> + CO) via inte...
Considering the current need of low emission fuels for the automotive market and the need of renewab...
The conversion of syngas through the Fischer–Tropsch (FT) process leads to the formation of products...
Production of synthetic liquid fuels via Fischer-Tropsch (FT)-based technologies is a valuable way t...
The single-step production of wax-free liquid hydrocarbons from syngas (H<sub>2</sub> + CO) via inte...
A pathway-level kinetic model for the hydrocracking process of the Fischer-Tropsch waxes is presente...
Fischer–Tropsch synthesis is considered a key component of alternative-to-oil technology pathways to...
The single-step production of wax-free liquid hydrocarbons from syngas (H2+CO) via integration of Fi...
International audienceDevelopment of models for industrial hydrocrackers has received a great amount...
The hydrocracking behavior the product of a Fischer-Tropsch synthesis consisting of a C4–C30 mixture...
In recent years, the production of hydrocarbon cuts from various sources via the Fischer-Tropsch pro...
A novel approach to the description of the kinetics of hydrocracking of vacuum gas oils (VGO) is dev...
Hydrocracking feedstocks contain a wide variation in the concentration of various compunds types, i....
Hydrocracking Fischer-Tropsch waxes is a catalytic process that occurs both in vapour phase and in l...
The single-step production of wax-free liquid hydrocarbons from syngas (H<sub>2</sub> + CO) via inte...
Considering the current need of low emission fuels for the automotive market and the need of renewab...