Dimensional and phase changes of four candidate oxygen carrier materials for chemical looping combustion are investigated by dilatometry and high-temperature X-ray diffraction during four redox cycles. NiO/Ni2AlO4 does not exhibit significant dimensional changes during cycling, and it is shown that the support material also contributes to the oxygen carrying capacity. CaMn0.875Ti0.125O3 exhibited good chemical stability and small dimensional changes upon redox cycling. Cu0.95Fe1.05AlO4 showed a one-dimensional expansion of 9% after the experiments, and significant phase changes were seen. The complex set of reactions occurring during redox cycling of ilmenite (FeTiO3) was shown to be accompanied by dimensional changes, giving non-steady dim...
Synthesis and characterization of supported metal-based oxygen carriers were carried out to provide ...
Carbon capture and storage has the potential of reducing emissions of CO2, generated by combustion o...
The performance of oxygen carriers contributes significantly to the efficiency of chemical looping c...
Ilmenite ore has been widely accepted to be a cost-effective oxygen carrier (OC) of Chemical Looping...
The objective of this study was to establish the reaction kinetics involved in redox cycles of the C...
Ilmenite (FeTiO3) is being explored as an oxygen carrier in chemical looping processes. It...
Chemical looping combustion (CLC) and chemical looping reforming (CLR) are innovative technologies f...
The performance of an oxygen carrier for Chemical Looping Combustion varies with the support materia...
Solid oxygen-carrier materials for chemical-looping applications have been examined by reduction wit...
A coupled analysis of the reaction kinetics and microstructural changes of Fe<sub>2</sub>O<sub>3</su...
Capture and storage of CO2 can be used to reduce greenhouse gas emissions from combustion of fossil ...
Solid oxygen-carrier materials for chemical-looping applications have been examined by reduction wit...
Combined Cu-Fe and Mn-Ni oxygen carriers were investigated as bed" materials for-chemical-looping co...
Chemical-Looping Combustion is a promising method for combustion with inherent carbon dioxide captur...
Characteristics of various new oxygen carriers for CLC - Various materials specially prepared for th...
Synthesis and characterization of supported metal-based oxygen carriers were carried out to provide ...
Carbon capture and storage has the potential of reducing emissions of CO2, generated by combustion o...
The performance of oxygen carriers contributes significantly to the efficiency of chemical looping c...
Ilmenite ore has been widely accepted to be a cost-effective oxygen carrier (OC) of Chemical Looping...
The objective of this study was to establish the reaction kinetics involved in redox cycles of the C...
Ilmenite (FeTiO3) is being explored as an oxygen carrier in chemical looping processes. It...
Chemical looping combustion (CLC) and chemical looping reforming (CLR) are innovative technologies f...
The performance of an oxygen carrier for Chemical Looping Combustion varies with the support materia...
Solid oxygen-carrier materials for chemical-looping applications have been examined by reduction wit...
A coupled analysis of the reaction kinetics and microstructural changes of Fe<sub>2</sub>O<sub>3</su...
Capture and storage of CO2 can be used to reduce greenhouse gas emissions from combustion of fossil ...
Solid oxygen-carrier materials for chemical-looping applications have been examined by reduction wit...
Combined Cu-Fe and Mn-Ni oxygen carriers were investigated as bed" materials for-chemical-looping co...
Chemical-Looping Combustion is a promising method for combustion with inherent carbon dioxide captur...
Characteristics of various new oxygen carriers for CLC - Various materials specially prepared for th...
Synthesis and characterization of supported metal-based oxygen carriers were carried out to provide ...
Carbon capture and storage has the potential of reducing emissions of CO2, generated by combustion o...
The performance of oxygen carriers contributes significantly to the efficiency of chemical looping c...