Effects of minerals in ferric bauxite on sodium carbonate decomposition and volatilization

Direct reduction is an emerging technology for ferric bauxite utilization. However, because of sodium volatilization, its sodium carbonate consumption is considerably higher than that in ordinary bauxite processing technology. TG-DSC and XRD were applied to detecting phase transformation and mass lo...

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Published inJournal of Central South University Vol. 22; no. 7; pp. 2503 - 2507
Main Authors Hu, Wen-tao, Wang, Hua-jun, Liu, Xin-wei, Sun, Chuan-yao
Format Journal Article
LanguageEnglish
Published Changsha Central South University 01.07.2015
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ISSN2095-2899
2227-5223
DOI10.1007/s11771-015-2778-1

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Abstract Direct reduction is an emerging technology for ferric bauxite utilization. However, because of sodium volatilization, its sodium carbonate consumption is considerably higher than that in ordinary bauxite processing technology. TG-DSC and XRD were applied to detecting phase transformation and mass loss in direct reduction to reveal the mechanism on sodium volatilization. The results show that the most significant influence factor of ferric bauxite on sodium volatilization in direct reduction system is its iron content. Sodium volatilization is probably ascribed to the instability of amorphous substances structure. Amorphous substances are the intermediate-products of the reaction, and the volatilization rate of sodium increases with its generating rate. These amorphous substances are volatile, thus, more sodium is volatilized with its generation. A small amount of amorphous substances are generated in the reaction between Na 2 CO 3 and Al 2 O 3 ; thus, only 3.15% of sodium is volatilized. Similarly, the volatilization rate is 1.87% in the reaction between Na 2 CO 3 and SiO 2 . However, the volatilization rate reaches 7.64% in the reaction between Na 2 CO 3 and Fe 2 O 3 because of the generation of a large amount of amorphous substances.
AbstractList Direct reduction is an emerging technology for ferric bauxite utilization. However, because of sodium volatilization, its sodium carbonate consumption is considerably higher than that in ordinary bauxite processing technology. TG-DSC and XRD were applied to detecting phase transformation and mass loss in direct reduction to reveal the mechanism on sodium volatilization. The results show that the most significant influence factor of ferric bauxite on sodium volatilization in direct reduction system is its iron content. Sodium volatilization is probably ascribed to the instability of amorphous substances structure. Amorphous substances are the intermediate-products of the reaction, and the volatilization rate of sodium increases with its generating rate. These amorphous substances are volatile, thus, more sodium is volatilized with its generation. A small amount of amorphous substances are generated in the reaction between Na 2 CO 3 and Al 2 O 3 ; thus, only 3.15% of sodium is volatilized. Similarly, the volatilization rate is 1.87% in the reaction between Na 2 CO 3 and SiO 2 . However, the volatilization rate reaches 7.64% in the reaction between Na 2 CO 3 and Fe 2 O 3 because of the generation of a large amount of amorphous substances.
Author Hu, Wen-tao
Sun, Chuan-yao
Wang, Hua-jun
Liu, Xin-wei
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Issue 7
Keywords ferric bauxite
decomposition
Na
CO
direct reduction
volatilization
Language English
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Snippet Direct reduction is an emerging technology for ferric bauxite utilization. However, because of sodium volatilization, its sodium carbonate consumption is...
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Title Effects of minerals in ferric bauxite on sodium carbonate decomposition and volatilization
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