In order to solve the increasing greenhouse effect problem, perovskite-type oxides have been used to convert CO2 to CO in a reverse water-gas shift chemical looping (RWGS-CL) process. Currently, the process is at the micro-reactor scale and used catalyst in powder form. However, formed materials are needed if the scale is to be increased. Our research focus is on increasing the conversion yield of perovskite oxides with SiO2 support and scaling up the powder form perovskite-type oxides to pellet by extrusion. The binder added during the extrusion process must be removed to avoid affecting the performance of the catalyst and to provide porosity, without substantially lowering the mechanical strength. X-ray diffraction was utilized to identi...
Perovskites are attractive redox materials for thermo/electrochemical fuel synthesis. To design pero...
There is a pressing need for carbon dioxide (CO2) mitigation technologies as increasing emissions co...
Thermochemical splitting of CO2 and H2O via two‐step metal oxide redox cycles offers a promising app...
In order to solve the increasing greenhouse effect problem, perovskite-type oxides have been used to...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Reverse Water-Gas Shift (rWGS) is among the reactions with the highest readiness level for technolog...
As the greenhouse gas effect becomes more serious, it is important to find an effective way to reduc...
As the greenhouse gas effect becomes more serious, it is important to find an effective way to reduc...
As the greenhouse gas effect becomes more serious, it is important to find an effective way to reduc...
CO2 global emissions exceed 30 Giga tonnes (Gt) per year, and the high atmospheric concentrations ar...
CO2 global emissions exceed 30 Giga tonnes (Gt) per year, and the high atmospheric concentrations ar...
CO2 global emissions exceed 30 Giga tonnes (Gt) per year, and the high atmospheric concentrations ar...
An efficient redox material for two-step thermochemical CO2 splitting reaction requires high chemica...
Perovskites are attractive redox materials for thermo/electrochemical fuel synthesis. To design pero...
There is a pressing need for carbon dioxide (CO2) mitigation technologies as increasing emissions co...
Thermochemical splitting of CO2 and H2O via two‐step metal oxide redox cycles offers a promising app...
In order to solve the increasing greenhouse effect problem, perovskite-type oxides have been used to...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Perovskite-type oxides show irrefutable potential for feasible thermochemical solar-driven CO2 conve...
Reverse Water-Gas Shift (rWGS) is among the reactions with the highest readiness level for technolog...
As the greenhouse gas effect becomes more serious, it is important to find an effective way to reduc...
As the greenhouse gas effect becomes more serious, it is important to find an effective way to reduc...
As the greenhouse gas effect becomes more serious, it is important to find an effective way to reduc...
CO2 global emissions exceed 30 Giga tonnes (Gt) per year, and the high atmospheric concentrations ar...
CO2 global emissions exceed 30 Giga tonnes (Gt) per year, and the high atmospheric concentrations ar...
CO2 global emissions exceed 30 Giga tonnes (Gt) per year, and the high atmospheric concentrations ar...
An efficient redox material for two-step thermochemical CO2 splitting reaction requires high chemica...
Perovskites are attractive redox materials for thermo/electrochemical fuel synthesis. To design pero...
There is a pressing need for carbon dioxide (CO2) mitigation technologies as increasing emissions co...
Thermochemical splitting of CO2 and H2O via two‐step metal oxide redox cycles offers a promising app...