CO 还原Fe2O3-NiO复合物形成Fe-Ni合金的非等温还原动力学

来源期刊:中国有色金属学报(英文版)2014年第11期

论文作者:李 博 魏永刚 王华

文章页码:3710 - 3715

关键词:还原动力学;Fe2O3;NiO;Fe-Ni合金;CO

Key words:reduction kinetics; Fe2O3; NiO; Fe-Ni alloy; carbon monoxide

摘    要:研究采用CO还原不同比例Fe2O3-NiO复合物的非等温还原动力学及机理。结果表明:随着NiO含量的增加,样品的还原程度不断提高,NiO的存在提高氧化铁还原率。在还原开始阶段,NiO优先被还原,Ni作为催化剂可以提高氧化铁的还原率。NiO含量的增加促进镍铁相(FeNi3)的增加,但导致铁纹石相(Fe,Ni)和镍纹石相(Fe,Ni)的减少。金属镍、金属铁及镍铁合金的形成导致微观颗粒具有均匀性。在还原初始阶段,气体产物中CO浓度大于CO2浓度,然后逐渐减小,当温度在400~500 °C内,Fe2O3-NiO复合物的还原速率达到最大值,成核长大模型可以揭示还原机理。在温度低于1000 °C的条件下,成核长大过程是还原反应速率的限制环节。

Abstract: The non-isothermal reduction kinetics and mechanism of Fe2O3-NiO composites with different Fe2O3-NiO compacts using carbon monoxide as reductant were investigated. The results show that the reduction degree increases rapidly with increasing the content of NiO, and the presence of NiO also improves the reduction rate of iron oxides. It is found that NiO is preferentially reduced at the beginning of the reactions, and then the metallic Ni acts as a catalyst promoting the reduction rate of iron oxides. It is also observed that the increase of the NiO content enhances the formation of awaruite (FeNi3) but decreases the percentage of kamacite (Fe,Ni) and taenite (Fe,Ni). The particle size of the materials tends to be uniform during the reduction process due to the presence of metallic nickel, metallic iron and the formation of Fe-Ni alloy. The concentration of CO in the product gas is greater than that of CO2 at the beginning of the reaction and then slows down. The fastest reduction rate of Fe2O3-NiO composites with CO appears at 400-500 °C, and nucleation growth model can be used to elucidate the reduction mechanism. Nucleation growth process is found to be the rate controlling step when the temperature is lower than 1000 °C.

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