In this work, a detailed single particle model was developed to describe the reaction of porous solids consisting of different solid species, with an initial composition that can be non-uniformly distributed along its radius, and multiple reactions. The continuous particle model is used to describe the rate of reduction of iron–titanium oxide particles for Chemical Looping Combustion processes, considering a two-step reaction mechanism involving two solid reagents: hematite and pseudobrookite. The experimentally observed non-uniform initial distribution of solid species, as a consequence of the solids activation procedure, was accounted for by assuming an initial core–shell structure with a diffused interface with different compositions of ...
A new model to describe the non-catalytic conversion of a solid by a reactant gas is proposed. This ...
A new model to describe the non-catalytic conversion of a solid by a reactant gas is proposed. This ...
The effect of particle size on ilmenite (FeTiO₃) reduction was studied by experimentally determining...
In this work, a detailed single particle model was developed to describe the reaction of porous soli...
Increasing interest in the direct reduction of iron has revived investigations on gaseous iron oxide...
The study presents a new modelling approach applied to hematite to magnetite reduction, which is the...
This thesis investigates single particle models to describe non catalytic gas-solid reactions. A com...
A numerical comparison between the shrinking core model and the grain model is carried out, in the c...
The Direct Reduction (DR) of iron ore pellets with syngas or hydrogen is a promising technology to r...
A unified gas-solid reaction model that considers multi gas-solid components is developed for reacti...
Reactions between gases and solid particles are commonly modeled using a shrinking core framework, w...
Suspension reduction kinetics of hematite ore particles at 1710 K to 1785 K was described by the Joh...
National audienceSolid-gas reactions are of great interest in many industrial fields such as nuclear...
For fluid-solid reactions a random pore model is developed which accounts for arbitrary pore-size di...
Increasing interest in the direct reduction process of iron ore has revived investigations on gaseou...
A new model to describe the non-catalytic conversion of a solid by a reactant gas is proposed. This ...
A new model to describe the non-catalytic conversion of a solid by a reactant gas is proposed. This ...
The effect of particle size on ilmenite (FeTiO₃) reduction was studied by experimentally determining...
In this work, a detailed single particle model was developed to describe the reaction of porous soli...
Increasing interest in the direct reduction of iron has revived investigations on gaseous iron oxide...
The study presents a new modelling approach applied to hematite to magnetite reduction, which is the...
This thesis investigates single particle models to describe non catalytic gas-solid reactions. A com...
A numerical comparison between the shrinking core model and the grain model is carried out, in the c...
The Direct Reduction (DR) of iron ore pellets with syngas or hydrogen is a promising technology to r...
A unified gas-solid reaction model that considers multi gas-solid components is developed for reacti...
Reactions between gases and solid particles are commonly modeled using a shrinking core framework, w...
Suspension reduction kinetics of hematite ore particles at 1710 K to 1785 K was described by the Joh...
National audienceSolid-gas reactions are of great interest in many industrial fields such as nuclear...
For fluid-solid reactions a random pore model is developed which accounts for arbitrary pore-size di...
Increasing interest in the direct reduction process of iron ore has revived investigations on gaseou...
A new model to describe the non-catalytic conversion of a solid by a reactant gas is proposed. This ...
A new model to describe the non-catalytic conversion of a solid by a reactant gas is proposed. This ...
The effect of particle size on ilmenite (FeTiO₃) reduction was studied by experimentally determining...