张延玲, 杨小刚, 魏文洁, 祁成林. Fe-Ni-O-C体系中Fe、Ni的固态还原机理[J]. 工程科学学报, 2011, 33(S1): 51-56. DOI: 10.13374/j.issn1001-053x.2011.s1.015
引用本文: 张延玲, 杨小刚, 魏文洁, 祁成林. Fe-Ni-O-C体系中Fe、Ni的固态还原机理[J]. 工程科学学报, 2011, 33(S1): 51-56. DOI: 10.13374/j.issn1001-053x.2011.s1.015
ZHANG Yan-ling, YANG Xiao-gang, WEI Wen-jie, QI Cheng-lin. Solid-state reduction mechanism of Fe and Ni in Fe-Ni-O-C systems[J]. Chinese Journal of Engineering, 2011, 33(S1): 51-56. DOI: 10.13374/j.issn1001-053x.2011.s1.015
Citation: ZHANG Yan-ling, YANG Xiao-gang, WEI Wen-jie, QI Cheng-lin. Solid-state reduction mechanism of Fe and Ni in Fe-Ni-O-C systems[J]. Chinese Journal of Engineering, 2011, 33(S1): 51-56. DOI: 10.13374/j.issn1001-053x.2011.s1.015

Fe-Ni-O-C体系中Fe、Ni的固态还原机理

Solid-state reduction mechanism of Fe and Ni in Fe-Ni-O-C systems

  • 摘要: 运用差示扫描量热法、采用XRD检测等手段探讨研究了Fe-Ni-O-C体系中Fe、Ni的还原行为,样品主要包括NiO+C、Fe2O3+C、NiFe2O4+C、NiO+Fe2O3+C和Ni+Fe2O3+C等5种体系.结果表明:NiO+Fe2O3体系中由于NiFe2O4及Fe-Ni合金的生成使得该体系被还原的反应开始温度高于纯NiO,且最大反应速率对应的温度及还原反应结束温度均高于纯NiO但低于纯Fe2O3物质;相对于NiO+Fe2O3,NiFe2O4被C还原的开始及结束温度均更高,且还原速率更小;Fe2O3被C还原可分为三个阶段,金属Ni的存在能够明显促进铁氧化物的还原,主要是促进了Fe的各种氧化物形式(Fe2O3、Fe3O4和FeO)直接向金属Fe形式的转换;数据显示C还原NiFe2O4的过程也基本可分为三个阶段,不同阶段中产物的形态和种类均存在一定差别.

     

    Abstract: Experimental studies on reduction behaviors of Fe and Ni in Fe-Ni-O-C systems (NiO + C,Fe2O3 + C,NiFe2O4 + C, NiO + Fe2O3 + C,and Ni + Fe2O3 + C) under different conditions were carried out by differential scanning calorimetry (DSC) analysis and X-ray diffraction (XRD) detection. The results show that due to the formation of NiFe2O4 and Fe-Ni alloys,the starting temperature of the NiO + Fe2O3 system is higher than that of pure NiO,while both of the temperatures corresponding to the maximum reduction rate and ending point are lower than those of pure Fe2O3. Compared with the system of NiO + Fe2O3,the reduction of NiFe2O4 shows higher starting and ending temperatures and lower reduction rates. The reduction of Fe2O3 by C could be divided into three stages,and the presence of Ni can obviously promote the transfer of iron oxides (Fe2O3,Fe3O4,and FeO) into metallic Fe. The data reveal that the reduction process of NiFe2O4 by C can also be divided into three stages,and the products in different stages show great difference.

     

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