Dissolution Kinetics of Chlorine from Iron Ore Sintering Dust

Chlorine is generated during iron ore sintering, mostly in the form of alkali chlorides and primarily accumulates in sintering dust, which must be removed before reusing. In this study, an in-situ monitor leaching system based was designed to detect chloride ion water leaching behaviors in real-time...

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Main Authors: Honghu Tang, Lihua Zhao, Yue Yang, Haisheng Han, Li Wang, Wei Sun
Format: Article
Language:English
Published: MDPI AG 2021-07-01
Series:Metals
Subjects:
Online Access:https://www.mdpi.com/2075-4701/11/8/1185
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spelling doaj-d3b91436f7de40bba27abd4346a33e422021-08-26T14:04:09ZengMDPI AGMetals2075-47012021-07-01111185118510.3390/met11081185Dissolution Kinetics of Chlorine from Iron Ore Sintering DustHonghu Tang0Lihua Zhao1Yue Yang2Haisheng Han3Li Wang4Wei Sun5School of Minerals Processing and Bioengineering, Central South University, Changsha 410083, ChinaHunan Zhongye Changtian Energy Conservation and Environment Protection Technology Co., Ltd., Changsha 410205, ChinaSchool of Minerals Processing and Bioengineering, Central South University, Changsha 410083, ChinaSchool of Minerals Processing and Bioengineering, Central South University, Changsha 410083, ChinaSchool of Minerals Processing and Bioengineering, Central South University, Changsha 410083, ChinaSchool of Minerals Processing and Bioengineering, Central South University, Changsha 410083, ChinaChlorine is generated during iron ore sintering, mostly in the form of alkali chlorides and primarily accumulates in sintering dust, which must be removed before reusing. In this study, an in-situ monitor leaching system based was designed to detect chloride ion water leaching behaviors in real-time and improve the understanding of chlorine dissolution kinetic behaviors in water. Various parameters, including water leaching temperature, solid/liquid ratio, stirring speed, particle size and surfactant addition have been studied. Meanwhile their chlorine dissolution data exhibited a good fit to Stumm’s kinetic models. The results of kinetics analysis and transition state theory calculation on apparent activation energy demonstrated that the dissolution process was controlled by diffusion at low S/L ratio, while changed to be controlled by surface chemical reaction as the S/L ratio increased. Furthermore, increasing both temperature and stirring speed improved the chlorine removal speed. Moreover, reducing the particle size and adding 0.2% nonionic surfactant Triton X-100 reduced the surface energy and accelerated surface chemical reaction, which were also beneficial for removing chlorine from sintering dust. In addition, the SEM-EDS examination inferred that the existence of laurionite (PbOHCl) limited the chlorine dissolution rate to less than 97%, while beneficiation or hydrometallurgy treatment was needed to further remove chlorine.https://www.mdpi.com/2075-4701/11/8/1185iron ore sintering dustdissolution kineticsStumm’s kinetic modelchlorine removingsurfactant addition
collection DOAJ
language English
format Article
sources DOAJ
author Honghu Tang
Lihua Zhao
Yue Yang
Haisheng Han
Li Wang
Wei Sun
spellingShingle Honghu Tang
Lihua Zhao
Yue Yang
Haisheng Han
Li Wang
Wei Sun
Dissolution Kinetics of Chlorine from Iron Ore Sintering Dust
Metals
iron ore sintering dust
dissolution kinetics
Stumm’s kinetic model
chlorine removing
surfactant addition
author_facet Honghu Tang
Lihua Zhao
Yue Yang
Haisheng Han
Li Wang
Wei Sun
author_sort Honghu Tang
title Dissolution Kinetics of Chlorine from Iron Ore Sintering Dust
title_short Dissolution Kinetics of Chlorine from Iron Ore Sintering Dust
title_full Dissolution Kinetics of Chlorine from Iron Ore Sintering Dust
title_fullStr Dissolution Kinetics of Chlorine from Iron Ore Sintering Dust
title_full_unstemmed Dissolution Kinetics of Chlorine from Iron Ore Sintering Dust
title_sort dissolution kinetics of chlorine from iron ore sintering dust
publisher MDPI AG
series Metals
issn 2075-4701
publishDate 2021-07-01
description Chlorine is generated during iron ore sintering, mostly in the form of alkali chlorides and primarily accumulates in sintering dust, which must be removed before reusing. In this study, an in-situ monitor leaching system based was designed to detect chloride ion water leaching behaviors in real-time and improve the understanding of chlorine dissolution kinetic behaviors in water. Various parameters, including water leaching temperature, solid/liquid ratio, stirring speed, particle size and surfactant addition have been studied. Meanwhile their chlorine dissolution data exhibited a good fit to Stumm’s kinetic models. The results of kinetics analysis and transition state theory calculation on apparent activation energy demonstrated that the dissolution process was controlled by diffusion at low S/L ratio, while changed to be controlled by surface chemical reaction as the S/L ratio increased. Furthermore, increasing both temperature and stirring speed improved the chlorine removal speed. Moreover, reducing the particle size and adding 0.2% nonionic surfactant Triton X-100 reduced the surface energy and accelerated surface chemical reaction, which were also beneficial for removing chlorine from sintering dust. In addition, the SEM-EDS examination inferred that the existence of laurionite (PbOHCl) limited the chlorine dissolution rate to less than 97%, while beneficiation or hydrometallurgy treatment was needed to further remove chlorine.
topic iron ore sintering dust
dissolution kinetics
Stumm’s kinetic model
chlorine removing
surfactant addition
url https://www.mdpi.com/2075-4701/11/8/1185
work_keys_str_mv AT honghutang dissolutionkineticsofchlorinefromironoresinteringdust
AT lihuazhao dissolutionkineticsofchlorinefromironoresinteringdust
AT yueyang dissolutionkineticsofchlorinefromironoresinteringdust
AT haishenghan dissolutionkineticsofchlorinefromironoresinteringdust
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AT weisun dissolutionkineticsofchlorinefromironoresinteringdust
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