The utilization of biomass for energy generation is a CO2 neutral alternative to fossil fuel. A suitable way of thermal conversion of biomass is dual fluidized bed (DFB) gasification where biomass is converted to a raw gas which can subsequently be used for chemical synthesis. DFB gasification relies on bed material which functions as a heat carrier to transport thermal energy from the combustor to the gasifier. The bed material’s interaction with the inorganic ash fraction released from the biomass can results in detrimental agglomeration which necessitates replacement of the bed material, or beneficial activation which reduces problems associated with unwanted side-products (tar) of the process. Whether agglomeration or activation occurs ...
Ce travail traite du rôle des interactions entre les composés inorganiques (cendres) et les matériau...
The use of catalytic bed materials has become a state-of-the-art solution to control the concentrati...
Fluidized bed combustion technology is increasingly used for biomass fuels, due to the high variabil...
The utilization of the fluidized bed technology offers the possibility of thermally converting a lar...
Olivine and alkali-feldspar were utilized in separate campaigns in an indirect dual fluidized bed ga...
Dual Fluidized Bed (DFB) gasification is one alternative for the production of biofuels. In a DFB ga...
Quartz, feldspar, and olivine are minerals commonly used as bed materials for dual fluidized bed gas...
Dual Fluidized Bed (DFB) gasification is a promising alternative method for the production of biofue...
The choice of bed material for biomass gasification plays a crucial role for the overall efficiency ...
Although more than a hundred papers dealing with the agglomeration problem in combustion and gasific...
The main aim of this work was to investigate the propensity of bed materials to retain ash-forming e...
Bed materials and their catalytic activity are two main parameters that affect the performance of th...
In this paper, the ability of an ash-coated olivine to catalyze the steam gasification of biomass-de...
A critical process phenomenon in fluidized bed combustion and gasification is the bed particle layer...
Olivine and alkali-feldspar were utilized in separate campaigns in an indirect dual fluidized bed ga...
Ce travail traite du rôle des interactions entre les composés inorganiques (cendres) et les matériau...
The use of catalytic bed materials has become a state-of-the-art solution to control the concentrati...
Fluidized bed combustion technology is increasingly used for biomass fuels, due to the high variabil...
The utilization of the fluidized bed technology offers the possibility of thermally converting a lar...
Olivine and alkali-feldspar were utilized in separate campaigns in an indirect dual fluidized bed ga...
Dual Fluidized Bed (DFB) gasification is one alternative for the production of biofuels. In a DFB ga...
Quartz, feldspar, and olivine are minerals commonly used as bed materials for dual fluidized bed gas...
Dual Fluidized Bed (DFB) gasification is a promising alternative method for the production of biofue...
The choice of bed material for biomass gasification plays a crucial role for the overall efficiency ...
Although more than a hundred papers dealing with the agglomeration problem in combustion and gasific...
The main aim of this work was to investigate the propensity of bed materials to retain ash-forming e...
Bed materials and their catalytic activity are two main parameters that affect the performance of th...
In this paper, the ability of an ash-coated olivine to catalyze the steam gasification of biomass-de...
A critical process phenomenon in fluidized bed combustion and gasification is the bed particle layer...
Olivine and alkali-feldspar were utilized in separate campaigns in an indirect dual fluidized bed ga...
Ce travail traite du rôle des interactions entre les composés inorganiques (cendres) et les matériau...
The use of catalytic bed materials has become a state-of-the-art solution to control the concentrati...
Fluidized bed combustion technology is increasingly used for biomass fuels, due to the high variabil...