The Growth Characteristics and Kinetics of Metallic Iron in Coal-Based Reduction of Jinchuan Ferronickel Slag

As the fourth-largest industry waste residue, after iron slag, steel slag, and red mud, in China, the comprehensive utilization of nickel slag is imminent. Coal-based reduction combined with magnetic separation was considered an efficient method to extract iron from nickel slag. During the coal-base...

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Main Authors: Jianwen Yu, Yonghong Qin, Peng Gao, Yongsheng Sun, Songbo Ma
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Series:Minerals
Subjects:
Online Access:https://www.mdpi.com/2075-163X/11/8/876
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spelling doaj-363748a8661a46ad999db93ccf0440732021-08-26T14:06:37ZengMDPI AGMinerals2075-163X2021-08-011187687610.3390/min11080876The Growth Characteristics and Kinetics of Metallic Iron in Coal-Based Reduction of Jinchuan Ferronickel SlagJianwen Yu0Yonghong Qin1Peng Gao2Yongsheng Sun3Songbo Ma4College of Resources and Civil Engineering, Northeastern University, Shenyang 110819, ChinaCollege of Resources and Civil Engineering, Northeastern University, Shenyang 110819, ChinaCollege of Resources and Civil Engineering, Northeastern University, Shenyang 110819, ChinaCollege of Resources and Civil Engineering, Northeastern University, Shenyang 110819, ChinaCollege of Resources and Civil Engineering, Northeastern University, Shenyang 110819, ChinaAs the fourth-largest industry waste residue, after iron slag, steel slag, and red mud, in China, the comprehensive utilization of nickel slag is imminent. Coal-based reduction combined with magnetic separation was considered an efficient method to extract iron from nickel slag. During the coal-based reduction of Jinchuan ferronickel slag, the growth characteristics and kinetics of metallic iron were investigated in this paper. The metallisation rate and metal iron grain size gradually increased with the reduction temperature or the reaction time, and the coal-based reduction process was divided into the rapid formation period and the aggregation growth period of the metallic phase. The granularity distribution of metallic iron obeyed the Doseresp sigmoidal function, and the activation energy of grain growth at different stages were 52.482 ± 4.448 kJ·mol<sup>−1</sup> and 26.426 ± 3.295 kJ·mol<sup>−1</sup>, respectively. Meanwhile, a mathematical growth model of the metallic iron grains was also established.https://www.mdpi.com/2075-163X/11/8/876ferronickel slagcoal-based reductionmetallic irongranularity characteristicgrowth kinetics
collection DOAJ
language English
format Article
sources DOAJ
author Jianwen Yu
Yonghong Qin
Peng Gao
Yongsheng Sun
Songbo Ma
spellingShingle Jianwen Yu
Yonghong Qin
Peng Gao
Yongsheng Sun
Songbo Ma
The Growth Characteristics and Kinetics of Metallic Iron in Coal-Based Reduction of Jinchuan Ferronickel Slag
Minerals
ferronickel slag
coal-based reduction
metallic iron
granularity characteristic
growth kinetics
author_facet Jianwen Yu
Yonghong Qin
Peng Gao
Yongsheng Sun
Songbo Ma
author_sort Jianwen Yu
title The Growth Characteristics and Kinetics of Metallic Iron in Coal-Based Reduction of Jinchuan Ferronickel Slag
title_short The Growth Characteristics and Kinetics of Metallic Iron in Coal-Based Reduction of Jinchuan Ferronickel Slag
title_full The Growth Characteristics and Kinetics of Metallic Iron in Coal-Based Reduction of Jinchuan Ferronickel Slag
title_fullStr The Growth Characteristics and Kinetics of Metallic Iron in Coal-Based Reduction of Jinchuan Ferronickel Slag
title_full_unstemmed The Growth Characteristics and Kinetics of Metallic Iron in Coal-Based Reduction of Jinchuan Ferronickel Slag
title_sort growth characteristics and kinetics of metallic iron in coal-based reduction of jinchuan ferronickel slag
publisher MDPI AG
series Minerals
issn 2075-163X
publishDate 2021-08-01
description As the fourth-largest industry waste residue, after iron slag, steel slag, and red mud, in China, the comprehensive utilization of nickel slag is imminent. Coal-based reduction combined with magnetic separation was considered an efficient method to extract iron from nickel slag. During the coal-based reduction of Jinchuan ferronickel slag, the growth characteristics and kinetics of metallic iron were investigated in this paper. The metallisation rate and metal iron grain size gradually increased with the reduction temperature or the reaction time, and the coal-based reduction process was divided into the rapid formation period and the aggregation growth period of the metallic phase. The granularity distribution of metallic iron obeyed the Doseresp sigmoidal function, and the activation energy of grain growth at different stages were 52.482 ± 4.448 kJ·mol<sup>−1</sup> and 26.426 ± 3.295 kJ·mol<sup>−1</sup>, respectively. Meanwhile, a mathematical growth model of the metallic iron grains was also established.
topic ferronickel slag
coal-based reduction
metallic iron
granularity characteristic
growth kinetics
url https://www.mdpi.com/2075-163X/11/8/876
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