Oxygen-carrier particles consisting of 40 wt% NiO supported on 60 wt% Mg-stabilized ZrO2 were produced by freeze granulation and examined as oxygen carrier for chemical-looping applications. Firstly, the particles were examined by oxidation and reduction experiments in a batch fluidized-bed reactor. These experiments indicated very high reactivity with CH4 and low affinity for carbon formation. For highly oxidized particles the products were CO2 and H2O, while for reduced particles they were CO and H2. Secondly, the particles were examined by 40 hours of operation in a small circulating fluidized-bed reactor, using natural gas as fuel. For chemical-looping combustion, there was complete conversion of fuel into products with high selectivity...
Chemical-looping combustion, CLC, is a novel combustion concept with inherent separation of CO2. Thi...
The feasibility of using three different solid fuels in chemical-looping combustion (CLC) has been i...
The work presented in this chapter demonstrates the economical feasibility of making a good oxygen c...
Oxygen-carrier particles consisting of 40 wt% NiO supported on 60 wt% Mg-stabilized ZrO2 were produc...
Oxygen-carrier particles for chemical-looping combustion have been manufactured by freeze granulatio...
Chemical-looping combustion is a combustion technology, where CO2 is separated from the rest of the ...
Capture and storage of CO2 can be used to reduce greenhouse gas emissions from combustion of fossil ...
Chemical-looping combustion is a two-step combustion process where CO2 is obtained in a separate str...
AbstractChemical-looping combustion is a two-step combustion process where CO2 is obtained in a sepa...
CO2 capture and storage has been proposed as an alternative to mitigate global warming. Chemical-loo...
Carbon dioxide is the gas which contributes most to the greenhouse effect. It is released in large ...
Capture and storage of carbon dioxide from combustion will likely be used in the future as a method ...
Three oxygen carriers for chemical-looping combustion and chemical-looping reforming have been inves...
Carbon capture and storage has the potential of reducing emissions of CO2, generated by combustion o...
In order to meet new demands on clean energy producing technologies, chemical-looping combustion cou...
Chemical-looping combustion, CLC, is a novel combustion concept with inherent separation of CO2. Thi...
The feasibility of using three different solid fuels in chemical-looping combustion (CLC) has been i...
The work presented in this chapter demonstrates the economical feasibility of making a good oxygen c...
Oxygen-carrier particles consisting of 40 wt% NiO supported on 60 wt% Mg-stabilized ZrO2 were produc...
Oxygen-carrier particles for chemical-looping combustion have been manufactured by freeze granulatio...
Chemical-looping combustion is a combustion technology, where CO2 is separated from the rest of the ...
Capture and storage of CO2 can be used to reduce greenhouse gas emissions from combustion of fossil ...
Chemical-looping combustion is a two-step combustion process where CO2 is obtained in a separate str...
AbstractChemical-looping combustion is a two-step combustion process where CO2 is obtained in a sepa...
CO2 capture and storage has been proposed as an alternative to mitigate global warming. Chemical-loo...
Carbon dioxide is the gas which contributes most to the greenhouse effect. It is released in large ...
Capture and storage of carbon dioxide from combustion will likely be used in the future as a method ...
Three oxygen carriers for chemical-looping combustion and chemical-looping reforming have been inves...
Carbon capture and storage has the potential of reducing emissions of CO2, generated by combustion o...
In order to meet new demands on clean energy producing technologies, chemical-looping combustion cou...
Chemical-looping combustion, CLC, is a novel combustion concept with inherent separation of CO2. Thi...
The feasibility of using three different solid fuels in chemical-looping combustion (CLC) has been i...
The work presented in this chapter demonstrates the economical feasibility of making a good oxygen c...