Title of article :
Comparison of iron-, nickel-, copper- and manganese-based oxygen carriers for chemical-looping combustion
Author/Authors :
Cho، نويسنده , , Paul and Mattisson، نويسنده , , Tobias and Lyngfelt، نويسنده , , Anders، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
11
From page :
1215
To page :
1225
Abstract :
For combustion with CO2 capture, chemical-looping combustion (CLC) with inherent separation of CO2 is a promising technology. Two interconnected fluidized beds are used as reactors. In the fuel reactor, a gaseous fuel is oxidized by an oxygen carrier, e.g. metal oxide particles, producing carbon dioxide and water. The reduced oxygen carrier is then transported to the air reactor, where it is oxidized with air back to its original form before it is returned to the fuel reactor. The feasibility of using oxygen carrier based on oxides of iron, nickel, copper and manganese was investigated. Oxygen carrier particles were produced by freeze granulation. They were sintered at 1300 °C for 4 h and sieved to a size range of 125–180 μm. The reactivity of the oxygen carriers was evaluated in a laboratory fluidized bed reactor, simulating a CLC system by exposing the sample to alternating reducing and oxidizing conditions at 950 °C for all carriers except copper, which was tested at 850 °C. Oxygen carriers based on nickel, copper and iron showed high reactivity, enough to be feasible for a suggested CLC system. However, copper oxide particles agglomerated and may not be suitable as an oxygen carrier. Samples of the iron oxide with aluminium oxide showed signs of agglomeration. Nickel oxide showed the highest reduction rate, but displayed limited strength. The reactivity indicates a needed bed mass in the fuel reactor of about 80–330 kg/MWth and a needed recirculation flow of oxygen carrier of 4–8 kg/s, MWth.
Keywords :
Chemical-looping combustion , CO2 separation , Carbon dioxide capture
Journal title :
Fuel
Serial Year :
2004
Journal title :
Fuel
Record number :
1463486
Link To Document :
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