A Kinetic Study on the Reduction of Single Magnetite Particle with Melting Products at High Temperature Based on Visual and Surface Analytical Techniques

In this study, the reduction characteristics of single magnetite particles with melting products at high temperature were investigated by using visualization and surface analytical techniques. The morphology evolution, product type, reduction degree, and reduction rate of single magnetite particles...

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Published in:Metals
Main Authors: Zhongjie Shen, Shuang Sun, Yulong Zhu, Dong Han, Zhan Du, Haifeng Liu
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Subjects:
Online Access:https://www.mdpi.com/2075-4701/11/8/1268
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author Zhongjie Shen
Shuang Sun
Yulong Zhu
Dong Han
Zhan Du
Haifeng Liu
author_facet Zhongjie Shen
Shuang Sun
Yulong Zhu
Dong Han
Zhan Du
Haifeng Liu
author_sort Zhongjie Shen
collection DOAJ
container_title Metals
description In this study, the reduction characteristics of single magnetite particles with melting products at high temperature were investigated by using visualization and surface analytical techniques. The morphology evolution, product type, reduction degree, and reduction rate of single magnetite particles during the reduction process were analyzed and compared at different reduction temperatures. The results showed that the morphology of the product formed at the reduction temperature of 1300 °C was a mainly nodular structure. When the reduction temperature was above 1400 °C, the products were melted to liquid and flowed out of the particle to form a layered structure. The morphology of the melted products finally transformed to be root-like in structure on the plate around the unmelted core. Raman spectroscopy was used to determine the product types during the reduction process. Experiments studying the effects of gas flowrate and particle size on the reduction degree were carried out, and the results showed that both increasing the temperature and gas flowrate can increase the reduction degree. The internal/external diffusion influence can be ignored with a particle size smaller than 100 μm and a gas flowrate more than 200 mL/min. However, owing to the resistance of the melted products to gas diffusion, the reduction rates at 1400 and 1500 °C were reduced significantly when the reduction degree increased from 0.5 to 1.0. Conversely, the formation of the liquid enlarged the contact area of the reducing gas and solid–liquid and further increased the reduction degree. The kinetics parameters, including average activation energy and pre-exponential factor, were calculated from the experimental data. The reduction kinetics equation of the single magnetite particle, considering the effect of melted products is also given in this study.
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spelling doaj-art-ee91e72f6ff647e195065fb013a9bc842025-08-19T22:40:25ZengMDPI AGMetals2075-47012021-08-01118126810.3390/met11081268A Kinetic Study on the Reduction of Single Magnetite Particle with Melting Products at High Temperature Based on Visual and Surface Analytical TechniquesZhongjie Shen0Shuang Sun1Yulong Zhu2Dong Han3Zhan Du4Haifeng Liu5School of Resources and Environmental Engineering, East China University of Science and Technology, Shanghai 200237, ChinaSchool of Resources and Environmental Engineering, East China University of Science and Technology, Shanghai 200237, ChinaSchool of Resources and Environmental Engineering, East China University of Science and Technology, Shanghai 200237, ChinaSchool of Resources and Environmental Engineering, East China University of Science and Technology, Shanghai 200237, ChinaState Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, ChinaSchool of Resources and Environmental Engineering, East China University of Science and Technology, Shanghai 200237, ChinaIn this study, the reduction characteristics of single magnetite particles with melting products at high temperature were investigated by using visualization and surface analytical techniques. The morphology evolution, product type, reduction degree, and reduction rate of single magnetite particles during the reduction process were analyzed and compared at different reduction temperatures. The results showed that the morphology of the product formed at the reduction temperature of 1300 °C was a mainly nodular structure. When the reduction temperature was above 1400 °C, the products were melted to liquid and flowed out of the particle to form a layered structure. The morphology of the melted products finally transformed to be root-like in structure on the plate around the unmelted core. Raman spectroscopy was used to determine the product types during the reduction process. Experiments studying the effects of gas flowrate and particle size on the reduction degree were carried out, and the results showed that both increasing the temperature and gas flowrate can increase the reduction degree. The internal/external diffusion influence can be ignored with a particle size smaller than 100 μm and a gas flowrate more than 200 mL/min. However, owing to the resistance of the melted products to gas diffusion, the reduction rates at 1400 and 1500 °C were reduced significantly when the reduction degree increased from 0.5 to 1.0. Conversely, the formation of the liquid enlarged the contact area of the reducing gas and solid–liquid and further increased the reduction degree. The kinetics parameters, including average activation energy and pre-exponential factor, were calculated from the experimental data. The reduction kinetics equation of the single magnetite particle, considering the effect of melted products is also given in this study.https://www.mdpi.com/2075-4701/11/8/1268ironmakingsingle magnetite particlehigh-temperature reductionmelting productreaction kinetics
spellingShingle Zhongjie Shen
Shuang Sun
Yulong Zhu
Dong Han
Zhan Du
Haifeng Liu
A Kinetic Study on the Reduction of Single Magnetite Particle with Melting Products at High Temperature Based on Visual and Surface Analytical Techniques
ironmaking
single magnetite particle
high-temperature reduction
melting product
reaction kinetics
title A Kinetic Study on the Reduction of Single Magnetite Particle with Melting Products at High Temperature Based on Visual and Surface Analytical Techniques
title_full A Kinetic Study on the Reduction of Single Magnetite Particle with Melting Products at High Temperature Based on Visual and Surface Analytical Techniques
title_fullStr A Kinetic Study on the Reduction of Single Magnetite Particle with Melting Products at High Temperature Based on Visual and Surface Analytical Techniques
title_full_unstemmed A Kinetic Study on the Reduction of Single Magnetite Particle with Melting Products at High Temperature Based on Visual and Surface Analytical Techniques
title_short A Kinetic Study on the Reduction of Single Magnetite Particle with Melting Products at High Temperature Based on Visual and Surface Analytical Techniques
title_sort kinetic study on the reduction of single magnetite particle with melting products at high temperature based on visual and surface analytical techniques
topic ironmaking
single magnetite particle
high-temperature reduction
melting product
reaction kinetics
url https://www.mdpi.com/2075-4701/11/8/1268
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