Citation:
KANG Min, ZHANG Jun, ZHAO Ning, WEI Wei, SUN Yu-han. CO production via thermochemical CO2 splitting over Ni ferrite-based catalysts[J]. Journal of Fuel Chemistry and Technology,
;2014, 42(1): 68-73.
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The thermochemical CO2 splitting activity of NiFe2O4 and NiFe2O4/ZrO2 prepared by the conventional co-precipitation method was investigated with thermogravimetric analysis (TGA) technique. Significant sintering was observed over the two samples during cyclic reactions because of the high reaction temperature. This would lead to an incomplete re-oxidation of the reduced sample in the CO2 splitting reaction. Introduction of ZrO2 could greatly enhance the thermal stability of NiFe2O4, and hence, the cycling behavior in repeated cycles. The catalytic results of NiFe2O4/ZrO2 for cyclic splitting of CO2 in a high-temperature furnace indicate that CO productivity increased with the thermal reduction temperature, while the cycling stability severely decreased with the cyclic number.
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[1]
[1] MEIER A, STEINFELD A. Solar thermochemical production of fuels[J]. Adv Sci Technol, 2010, 74: 303-312.
-
[2]
[2] CENTI G, PERATHONER S. Towards solar fuels from water and CO2[J]. ChemSusChem, 2010, 3(2): 195-208.
-
[3]
[3] LOUTZENHISER P G, BARTHEL F, STAMATIOU A, STEINFELD A. CO2 reduction with Zn particles in a packed-bed reactor[J]. AIChE J, 2011, 57(9): 2529-2534.
-
[4]
[4] STAMATIOU A, LOUTZENHISER P G, STEINFELD A. Syngas production from H2O and CO2 over Zn particles in a packed-bed reactor[J]. AIChE J, 2011, 58(2): 625-631.
-
[5]
[5] ABANADES S, VILLAFAN-VIDALES I. CO2 and H2O conversion to solar fuels via two-step solar thermochemical looping using iron oxide redox pair[J]. Chem Eng J, 2011, 175: 368-375.
-
[6]
[6] LOUTZENHISER P G, GÁLVEZ M E, HISCHIER I, STAMATIOU A, FREI A, STEINFELD A. CO2 splitting via two-step solar thermochemical cycles with Zn/ZnO and FeO/Fe3O4 redox reactions Ⅱ: Kinetic analysis[J]. Energy Fuels, 2009, 23(5): 2832-2839.
-
[7]
[7] ABANADES S, VILLAFAN-VIDALES I. CO2 valorisation based on Fe3O4/FeO thermochemical redox reactions using concentrated solar energy[J]. Int J Energy Res, 2013, 37(6): 598-608.
-
[8]
[8] COKER E N, AMBROSINI A, RODRIGUEZ M A, MILLER J E. Ferrite-YSZ composites for solar thermochemical production of synthetic fuels: In operando characterization of CO2 reduction[J]. J Mater Chem, 2011, 21(29): 10767-10776.
-
[9]
[9] COKER E N, OHLHAUSEN J A, AMBROSINI A, MILLER J E. Oxygen transport and isotopic exchange in iron oxide/YSZ thermochemically-active materials via splitting of C(O-18)(2) at high temperature studied by thermogravimetric analysis and secondary ion mass spectrometry[J]. J Mater Chem, 2012, 22(14): 6726-6732.
-
[10]
[10] GÁLVEZ M E, LOUTZENHISER P G, HISCHIER I, STEINFELD A. CO2 Splitting via two-step solar thermochemical cycles with Zn/ZnO and FeO/Fe3O4 redox reactions: Thermodynamic analysis[J]. Energy Fuels, 2008, 22(5): 3544-3550.
-
[11]
[11] CHUEH W C, HAILE S M. Ceria as a thermochemical reaction medium for selectively generating syngas or methane from H2O and CO2[J]. ChemSusChem, 2009, 2(8): 735-739.
-
[12]
[12] GAL A L, ABANADES S, FLAMANT G. CO2 and H2O splitting for thermochemical production of solar fuels using nonstoichiometric ceria and ceria/zirconia solid solutions[J]. Energy Fuels, 2011, 25(10): 4836-4845.
-
[13]
[13] RUDISILL S G, VENSTROM L J, PETKOVICH N D, QUAN T T, HEIN N, BOMAN D B, DAVIDSON J H, STEIN A. Enhanced oxidation kinetics in thermochemical cycling of CeO2 through templated porosity[J]. J Phys Chem C, 2013, 117(4): 1692-1700.
-
[14]
[14] CHUEH W C, FALTER C, ABBOTT M, SCIPIO D, FURLER P, HAILE S M, STEINFELD A. High-flux solar-driven thermochemical dissociation of CO2 and H2O using nonstoichiometric ceria[J]. Science, 2010, 330(6012): 1797-1801.
-
[15]
[15] KODAM T, GOKON N, YAMAMOTO R. Thermochemical two-step water splitting by ZrO2-supported NixFe3-xO4 for solar hydrogen production[J]. Sol Energy, 2008, 82(1): 73-79.
-
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