A detailed study of new oxygen carrier materials, Mg-Fe-Al-O, with various loadings of iron oxide (10-100 wt% Fe2O3) is carried out in order to investigate the relationship between material transformation, stability and CO yield from CO2 conversion. In situ XRD during H-2-TPR, CO2-TPO and isothermal chemical looping cycles as well as Mossbauer spectroscopy are employed. All samples show the formation of a spinel phase, MgFeAlOx. High loadings of iron oxide (50-90 wt%) lead to both spinel and Fe2O3 phases and show deactivation in cycling as a result of Fe2O3 particle sintering. During the reduction, reoxidation and cycling of the spinel MgFeAlOx phase, only limited sintering occurs. This is evidenced by the stable spinel crystallite sizes (s...
CO2 Fischer–Tropsch synthesis (CO2–FTS) is a promising technology enabling conversion of CO2 into va...
Carbon monoxide production from carbon dioxide via isothermal reverse water–gas shift chemical loopi...
This work provides a way to design oxygen carriers for chemical looping. Starting from Prussian blue...
Fe2O3/MgFeAlOx materials are promising oxygen storage candidates for chemical looping CO2 conversion...
Fe2O3/MgFeAlOx materials are promising oxygen storage candidates for chemical looping CO2 conversion...
H-2 and CO production from H2O and CO2 is investigated experimentally using a two-step chemical loop...
The oxidation of carbon monoxide on xMgO • yFe2O 3 catalysts was studied over the temperature range ...
The preferential oxidation of CO (CO-PrOx) to CO2 is an effective catalytic process for purifying th...
In this paper, the structure of Al2O3 is modified with magnesium to synthesize MgAl2O4 as an oxygen ...
The performance of oxygen carriers contributes significantly to the efficiency of chemical looping c...
Deactivation was investigated in Fe2O3-CeO2 oxygen storage materials during repeated H-2-reduction a...
In this work, a spray-dried Fe-based oxygen carrier with an in situ generated Mg1-xAl2-yFex+yO4-supp...
Enhancement of sintering resistance is key to the application of iron-based oxygen carriers in chemi...
We report a MgFexAl2–xO4 synthetic spinel, where x varies from 0 to 0.26, as support for Ni-based ca...
FeCo2O4and CoFe2O4nanoparticles have been studied as oxygen carriers for the Chemical Loop Reforming...
CO2 Fischer–Tropsch synthesis (CO2–FTS) is a promising technology enabling conversion of CO2 into va...
Carbon monoxide production from carbon dioxide via isothermal reverse water–gas shift chemical loopi...
This work provides a way to design oxygen carriers for chemical looping. Starting from Prussian blue...
Fe2O3/MgFeAlOx materials are promising oxygen storage candidates for chemical looping CO2 conversion...
Fe2O3/MgFeAlOx materials are promising oxygen storage candidates for chemical looping CO2 conversion...
H-2 and CO production from H2O and CO2 is investigated experimentally using a two-step chemical loop...
The oxidation of carbon monoxide on xMgO • yFe2O 3 catalysts was studied over the temperature range ...
The preferential oxidation of CO (CO-PrOx) to CO2 is an effective catalytic process for purifying th...
In this paper, the structure of Al2O3 is modified with magnesium to synthesize MgAl2O4 as an oxygen ...
The performance of oxygen carriers contributes significantly to the efficiency of chemical looping c...
Deactivation was investigated in Fe2O3-CeO2 oxygen storage materials during repeated H-2-reduction a...
In this work, a spray-dried Fe-based oxygen carrier with an in situ generated Mg1-xAl2-yFex+yO4-supp...
Enhancement of sintering resistance is key to the application of iron-based oxygen carriers in chemi...
We report a MgFexAl2–xO4 synthetic spinel, where x varies from 0 to 0.26, as support for Ni-based ca...
FeCo2O4and CoFe2O4nanoparticles have been studied as oxygen carriers for the Chemical Loop Reforming...
CO2 Fischer–Tropsch synthesis (CO2–FTS) is a promising technology enabling conversion of CO2 into va...
Carbon monoxide production from carbon dioxide via isothermal reverse water–gas shift chemical loopi...
This work provides a way to design oxygen carriers for chemical looping. Starting from Prussian blue...