Mechanism and kinetics study of sulfuric acid leaching of titanium from titanium-bearing electric furnace slag

Titanium(Ti)-bearing electric furnace slag (TEFS) was leached with sulfuric acid in this study. The influence of temperature, acid/solid ratio, particle size, and initial sulfuric acid concentration on the Ti extraction was evaluated. The leaching kinetics indicate that diffusion across the product...

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Main Authors: Wenlin Nie, Shuming Wen, Qicheng Feng, Dan Liu, Yaowen Zhou
Format: Article
Language:English
Published: Elsevier 2020-03-01
Series:Journal of Materials Research and Technology
Online Access:http://www.sciencedirect.com/science/article/pii/S2238785419316539
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spelling doaj-ae1f6c5b621a4da392d43fbce047da062020-11-25T04:00:32ZengElsevierJournal of Materials Research and Technology2238-78542020-03-019217501758Mechanism and kinetics study of sulfuric acid leaching of titanium from titanium-bearing electric furnace slagWenlin Nie0Shuming Wen1Qicheng Feng2Dan Liu3Yaowen Zhou4State Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization, Faculty of Land Resource Engineering, Kunming University of Science and Technology, Kunming 650093, China; Department of Mathematics and Physics, West Yunnan University, Lincang 677000, ChinaState Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization, Faculty of Land Resource Engineering, Kunming University of Science and Technology, Kunming 650093, China; Corresponding authors.State Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization, Faculty of Land Resource Engineering, Kunming University of Science and Technology, Kunming 650093, China; Corresponding authors.State Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization, Faculty of Land Resource Engineering, Kunming University of Science and Technology, Kunming 650093, ChinaState Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization, Faculty of Land Resource Engineering, Kunming University of Science and Technology, Kunming 650093, ChinaTitanium(Ti)-bearing electric furnace slag (TEFS) was leached with sulfuric acid in this study. The influence of temperature, acid/solid ratio, particle size, and initial sulfuric acid concentration on the Ti extraction was evaluated. The leaching kinetics indicate that diffusion across the product layer and the interface transfer both affected the decomposition of the TEFS, and the apparent activation energy was24.01 kJ/mol. Reaction temperature was the most important factor that influenced the extraction of Ti, followed by the acid/solid ratio, sulfuric acid concentration, and particle size. The Ti leaching rate reached up to 89.46 % under the conditions of an average particle size of 31.5 μm, acid/solid ratio of 2.0:1, initial acid concentration of 88.0 wt%, reaction temperature of 513.15 K, and water leaching temperature of 333.15 K for 120 min. Fe was almost completely dissolved in the acid, whereas MgO (22.73 wt%) and Al2O3 (44.57 wt%) in spinel were retained in the leach residue, and SiO2 (45.94 wt%) and CaO (34.96 wt%) occurred in the form of diopside in the leach residue. During the leaching process, substantial TiOSO4 and CaSO4·2H2O were produced and coated the TEFS particles, which hindered the leaching of Ti. Keywords: Sulfuric acid leaching, Titanium-bearing electric furnace slag, Kinetics, Mechanismhttp://www.sciencedirect.com/science/article/pii/S2238785419316539
collection DOAJ
language English
format Article
sources DOAJ
author Wenlin Nie
Shuming Wen
Qicheng Feng
Dan Liu
Yaowen Zhou
spellingShingle Wenlin Nie
Shuming Wen
Qicheng Feng
Dan Liu
Yaowen Zhou
Mechanism and kinetics study of sulfuric acid leaching of titanium from titanium-bearing electric furnace slag
Journal of Materials Research and Technology
author_facet Wenlin Nie
Shuming Wen
Qicheng Feng
Dan Liu
Yaowen Zhou
author_sort Wenlin Nie
title Mechanism and kinetics study of sulfuric acid leaching of titanium from titanium-bearing electric furnace slag
title_short Mechanism and kinetics study of sulfuric acid leaching of titanium from titanium-bearing electric furnace slag
title_full Mechanism and kinetics study of sulfuric acid leaching of titanium from titanium-bearing electric furnace slag
title_fullStr Mechanism and kinetics study of sulfuric acid leaching of titanium from titanium-bearing electric furnace slag
title_full_unstemmed Mechanism and kinetics study of sulfuric acid leaching of titanium from titanium-bearing electric furnace slag
title_sort mechanism and kinetics study of sulfuric acid leaching of titanium from titanium-bearing electric furnace slag
publisher Elsevier
series Journal of Materials Research and Technology
issn 2238-7854
publishDate 2020-03-01
description Titanium(Ti)-bearing electric furnace slag (TEFS) was leached with sulfuric acid in this study. The influence of temperature, acid/solid ratio, particle size, and initial sulfuric acid concentration on the Ti extraction was evaluated. The leaching kinetics indicate that diffusion across the product layer and the interface transfer both affected the decomposition of the TEFS, and the apparent activation energy was24.01 kJ/mol. Reaction temperature was the most important factor that influenced the extraction of Ti, followed by the acid/solid ratio, sulfuric acid concentration, and particle size. The Ti leaching rate reached up to 89.46 % under the conditions of an average particle size of 31.5 μm, acid/solid ratio of 2.0:1, initial acid concentration of 88.0 wt%, reaction temperature of 513.15 K, and water leaching temperature of 333.15 K for 120 min. Fe was almost completely dissolved in the acid, whereas MgO (22.73 wt%) and Al2O3 (44.57 wt%) in spinel were retained in the leach residue, and SiO2 (45.94 wt%) and CaO (34.96 wt%) occurred in the form of diopside in the leach residue. During the leaching process, substantial TiOSO4 and CaSO4·2H2O were produced and coated the TEFS particles, which hindered the leaching of Ti. Keywords: Sulfuric acid leaching, Titanium-bearing electric furnace slag, Kinetics, Mechanism
url http://www.sciencedirect.com/science/article/pii/S2238785419316539
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