CO2 decomposition using metal ferrites prepared by co-precipitation method

被引:0
作者
Shen Jiaowen
Dong Woo Kim
Sang Bum Kim
Young Min Jo
机构
[1] Kyung Hee University,Department of Environmental Engineering
[2] KITECH,Green Process and Material R&D Group
来源
Korean Journal of Chemical Engineering | 2016年 / 33卷
关键词
Carbon Dioxide; Metal Ferrite; Co-precipitation; Catalytic Reduction;
D O I
暂无
中图分类号
学科分类号
摘要
To catalytically decompose the greenhouse gas, CO2, spinel structure M-ferrites (M=Co, Ni, Cu, Zn) were synthesized by chemical co-precipitation using metal salts and sodium hydroxide as starting materials. The crystallite size of the newly-prepared M-ferrites increased and the BET surface area decreased with increasing calcination temperature. A thermal analysis of the reduction and reoxidation of M-ferrites indicated that substitution of divalent transition metals (i.e., Cu, Ni and Co) into Fe3O4 improved the reduction kinetics in the order of Cu>Ni>Co. ZnFe2O4 was the most difficult compound to completely reduce due to its stable structure. Commercial samples of the reduced Fe3O4, CoFe2O4 and ZnFe2O4 showed an increase in mass through the reoxidation process, but it was much more difficult for oxygen atoms to enter the structure of the reduced samples of NiFe2O4 and CuFe2O4. The M-ferrites in a batch type reactor showed better efficiency than the commercial Fe3O4. Also found was that CoFe2O4 showed a high regeneration potential, although it required a higher critical reaction temperature. NiFe2O4 and CuFe2O4 were excellent candidate materials for CO2 decomposition at lower temperatures.
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页码:3162 / 3168
页数:6
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