Effect of Na2Co3 on the preparation of metallic tin from cassiterite roasted under strong reductive atmosphere

Tin is an indispensable metal in the modern industry. The current tin smelting processes, however, have the disadvantages of high smelting temperature, long smelting time, especially high tin loss ratio (>10 wt%). The tin loss attributes to the volatilization as gaseous SnO and stannous...

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Main Authors: Zhang Y., Liu B., Su Z., Chen J., Li G., Jiang T.
Format: Article
Language:English
Published: University of Belgrade, Technical Faculty, Bor 2016-01-01
Series:Journal of Mining and Metallurgy. Section B: Metallurgy
Subjects:
Online Access:http://www.doiserbia.nb.rs/img/doi/1450-5339/2016/1450-53391600006Z.pdf
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author Zhang Y.
Liu B.
Su Z.
Chen J.
Li G.
Jiang T.
author_facet Zhang Y.
Liu B.
Su Z.
Chen J.
Li G.
Jiang T.
author_sort Zhang Y.
collection DOAJ
description Tin is an indispensable metal in the modern industry. The current tin smelting processes, however, have the disadvantages of high smelting temperature, long smelting time, especially high tin loss ratio (>10 wt%). The tin loss attributes to the volatilization as gaseous SnO and stannous silicate (SnO•SiO2) residual in the slag. An innovative approach for preparing metallic tin effectively from cassiterite in the presence of Na2CO3, named gas-based reduction roasting followed by water leaching process, is under development in Central South University, China. The present study, using chemically pure SnO2 and SiO2, aims to determine the impact of Na2CO3 on the metallic tin preparation from cassiterite by the novel process using XRD, SEM-EDS, chemical analysis, etc. It was found that Na2CO3 effectively restrained the tin volatilization as SnO and the formation of hardly reductive SnO•SiO2 during the reduction roasting process. In the presence of Na2CO3, most of SnO2 in the raw materials (mixture of SnO2+SiO2) was directly reduced to metallic tin, and part of SnO2 reacted with Na2CO3 to form intermediate Na2SnO3, which was then reduced to metallic tin. The SiO2 was transformed into Na2SiO3 and then went into the water solution in the following water-leaching process. The main reactions of the SnO2 + SiO2 system in the presence of Na2CO3 under reductive atmosphere were ascertained.
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publishDate 2016-01-01
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record_format Article
series Journal of Mining and Metallurgy. Section B: Metallurgy
spelling doaj-art-c193c57c79814087bf69cb7f44ed45a52025-02-02T13:45:19ZengUniversity of Belgrade, Technical Faculty, BorJournal of Mining and Metallurgy. Section B: Metallurgy1450-53392217-71752016-01-0152191510.2298/JMMB150207006Z1450-53391600006ZEffect of Na2Co3 on the preparation of metallic tin from cassiterite roasted under strong reductive atmosphereZhang Y.0Liu B.1Su Z.2Chen J.3Li G.4Jiang T.5Central South University, School of Minerals Processing and Bioengineering, Changsha, ChinaCentral South University, School of Minerals Processing and Bioengineering, Changsha, ChinaCentral South University, School of Minerals Processing and Bioengineering, Changsha, ChinaCentral South University, School of Minerals Processing and Bioengineering, Changsha, ChinaCentral South University, School of Minerals Processing and Bioengineering, Changsha, ChinaCentral South University, School of Minerals Processing and Bioengineering, Changsha, ChinaTin is an indispensable metal in the modern industry. The current tin smelting processes, however, have the disadvantages of high smelting temperature, long smelting time, especially high tin loss ratio (>10 wt%). The tin loss attributes to the volatilization as gaseous SnO and stannous silicate (SnO•SiO2) residual in the slag. An innovative approach for preparing metallic tin effectively from cassiterite in the presence of Na2CO3, named gas-based reduction roasting followed by water leaching process, is under development in Central South University, China. The present study, using chemically pure SnO2 and SiO2, aims to determine the impact of Na2CO3 on the metallic tin preparation from cassiterite by the novel process using XRD, SEM-EDS, chemical analysis, etc. It was found that Na2CO3 effectively restrained the tin volatilization as SnO and the formation of hardly reductive SnO•SiO2 during the reduction roasting process. In the presence of Na2CO3, most of SnO2 in the raw materials (mixture of SnO2+SiO2) was directly reduced to metallic tin, and part of SnO2 reacted with Na2CO3 to form intermediate Na2SnO3, which was then reduced to metallic tin. The SiO2 was transformed into Na2SiO3 and then went into the water solution in the following water-leaching process. The main reactions of the SnO2 + SiO2 system in the presence of Na2CO3 under reductive atmosphere were ascertained.http://www.doiserbia.nb.rs/img/doi/1450-5339/2016/1450-53391600006Z.pdfstannic oxidecassiteritereduction roastingsodium carbonatemetallic tin
spellingShingle Zhang Y.
Liu B.
Su Z.
Chen J.
Li G.
Jiang T.
Effect of Na2Co3 on the preparation of metallic tin from cassiterite roasted under strong reductive atmosphere
Journal of Mining and Metallurgy. Section B: Metallurgy
stannic oxide
cassiterite
reduction roasting
sodium carbonate
metallic tin
title Effect of Na2Co3 on the preparation of metallic tin from cassiterite roasted under strong reductive atmosphere
title_full Effect of Na2Co3 on the preparation of metallic tin from cassiterite roasted under strong reductive atmosphere
title_fullStr Effect of Na2Co3 on the preparation of metallic tin from cassiterite roasted under strong reductive atmosphere
title_full_unstemmed Effect of Na2Co3 on the preparation of metallic tin from cassiterite roasted under strong reductive atmosphere
title_short Effect of Na2Co3 on the preparation of metallic tin from cassiterite roasted under strong reductive atmosphere
title_sort effect of na2co3 on the preparation of metallic tin from cassiterite roasted under strong reductive atmosphere
topic stannic oxide
cassiterite
reduction roasting
sodium carbonate
metallic tin
url http://www.doiserbia.nb.rs/img/doi/1450-5339/2016/1450-53391600006Z.pdf
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