Kinetics of Iron Removal From Ti-Extraction Blast Furnace Slag by Chlorination Calcination

In this research, ammonium chloride was used to calcine Ti-extraction blast furnace slag (EBFS) with the aim of removing iron from it. The influences of calcination temperature, ammonium chloride to EBFS mass ratio and particle size on the rates of iron removal were investigated. The results show th...

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Main Authors: He Siqi, Peng Tongjiang, Sun Hongjuan, Luo Dongshan, Xiao Qing, Geng Qian
Format: Article
Language:English
Published: De Gruyter 2019-12-01
Series:Open Chemistry
Subjects:
Online Access:http://www.degruyter.com/view/j/chem.2019.17.issue-1/chem-2019-0124/chem-2019-0124.xml?format=INT
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spelling doaj-1a4cb39489924b21a721a7b0a5b4b6cb2020-11-25T03:51:26ZengDe GruyterOpen Chemistry2391-54202019-12-011711146115610.1515/chem-2019-0124chem-2019-0124Kinetics of Iron Removal From Ti-Extraction Blast Furnace Slag by Chlorination CalcinationHe Siqi0Peng Tongjiang1Sun Hongjuan2Luo Dongshan3Xiao Qing4Geng Qian5Key Laboratory of Ministry of Education for Solid Waste Treatment and Resource Recycle, Southwest University of Science and Technology, Mianyang621010 Sichuan, ChinaKey Laboratory of Ministry of Education for Solid Waste Treatment and Resource Recycle, Southwest University of Science and Technology, Mianyang621010 Sichuan, ChinaKey Laboratory of Ministry of Education for Solid Waste Treatment and Resource Recycle, Southwest University of Science and Technology, Mianyang621010 Sichuan, ChinaKey Laboratory of Ministry of Education for Solid Waste Treatment and Resource Recycle, Southwest University of Science and Technology, Mianyang621010 Sichuan, ChinaKey Laboratory of Ministry of Education for Solid Waste Treatment and Resource Recycle, Southwest University of Science and Technology, Mianyang621010 Sichuan, ChinaKey Laboratory of Ministry of Education for Solid Waste Treatment and Resource Recycle, Southwest University of Science and Technology, Mianyang621010 Sichuan, ChinaIn this research, ammonium chloride was used to calcine Ti-extraction blast furnace slag (EBFS) with the aim of removing iron from it. The influences of calcination temperature, ammonium chloride to EBFS mass ratio and particle size on the rates of iron removal were investigated. The results show that the rate of iron removal increased to almost 100% with increases in calcination temperature and the NH4Cl to EBFS mass ratio, but decreased with increases in particle size. Iron is removed in the form of ferric chloride gas, and ammonium chloride can be recycled by recrystallization after decomposition. The bagdasarrym model was used to describe the calcination process at temperatures below 261°C, which was controlled by nonisothermal crystallization. The reaction kinetic equation was obtained and the apparent activation energy of 67.21 kJ/mol. Ferric chloride reaction product existed in the calcined slag in an amorphous solid state. The shrinking core model was used to describe the calcination process at temperatures above 261°C, which was controlled by surface chemical reactions. The reaction kinetic equation was obtained and the apparent activation energy was found to be 42.05 kJ/mol.http://www.degruyter.com/view/j/chem.2019.17.issue-1/chem-2019-0124/chem-2019-0124.xml?format=INTti-extraction blast furnace slagiron removalchlorination calcinationkinetics
collection DOAJ
language English
format Article
sources DOAJ
author He Siqi
Peng Tongjiang
Sun Hongjuan
Luo Dongshan
Xiao Qing
Geng Qian
spellingShingle He Siqi
Peng Tongjiang
Sun Hongjuan
Luo Dongshan
Xiao Qing
Geng Qian
Kinetics of Iron Removal From Ti-Extraction Blast Furnace Slag by Chlorination Calcination
Open Chemistry
ti-extraction blast furnace slag
iron removal
chlorination calcination
kinetics
author_facet He Siqi
Peng Tongjiang
Sun Hongjuan
Luo Dongshan
Xiao Qing
Geng Qian
author_sort He Siqi
title Kinetics of Iron Removal From Ti-Extraction Blast Furnace Slag by Chlorination Calcination
title_short Kinetics of Iron Removal From Ti-Extraction Blast Furnace Slag by Chlorination Calcination
title_full Kinetics of Iron Removal From Ti-Extraction Blast Furnace Slag by Chlorination Calcination
title_fullStr Kinetics of Iron Removal From Ti-Extraction Blast Furnace Slag by Chlorination Calcination
title_full_unstemmed Kinetics of Iron Removal From Ti-Extraction Blast Furnace Slag by Chlorination Calcination
title_sort kinetics of iron removal from ti-extraction blast furnace slag by chlorination calcination
publisher De Gruyter
series Open Chemistry
issn 2391-5420
publishDate 2019-12-01
description In this research, ammonium chloride was used to calcine Ti-extraction blast furnace slag (EBFS) with the aim of removing iron from it. The influences of calcination temperature, ammonium chloride to EBFS mass ratio and particle size on the rates of iron removal were investigated. The results show that the rate of iron removal increased to almost 100% with increases in calcination temperature and the NH4Cl to EBFS mass ratio, but decreased with increases in particle size. Iron is removed in the form of ferric chloride gas, and ammonium chloride can be recycled by recrystallization after decomposition. The bagdasarrym model was used to describe the calcination process at temperatures below 261°C, which was controlled by nonisothermal crystallization. The reaction kinetic equation was obtained and the apparent activation energy of 67.21 kJ/mol. Ferric chloride reaction product existed in the calcined slag in an amorphous solid state. The shrinking core model was used to describe the calcination process at temperatures above 261°C, which was controlled by surface chemical reactions. The reaction kinetic equation was obtained and the apparent activation energy was found to be 42.05 kJ/mol.
topic ti-extraction blast furnace slag
iron removal
chlorination calcination
kinetics
url http://www.degruyter.com/view/j/chem.2019.17.issue-1/chem-2019-0124/chem-2019-0124.xml?format=INT
work_keys_str_mv AT hesiqi kineticsofironremovalfromtiextractionblastfurnaceslagbychlorinationcalcination
AT pengtongjiang kineticsofironremovalfromtiextractionblastfurnaceslagbychlorinationcalcination
AT sunhongjuan kineticsofironremovalfromtiextractionblastfurnaceslagbychlorinationcalcination
AT luodongshan kineticsofironremovalfromtiextractionblastfurnaceslagbychlorinationcalcination
AT xiaoqing kineticsofironremovalfromtiextractionblastfurnaceslagbychlorinationcalcination
AT gengqian kineticsofironremovalfromtiextractionblastfurnaceslagbychlorinationcalcination
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