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High temperature reaction behaviors of oxide materials with carbon for refractory application

Authors
최도문이진석김남훈최성철
Issue Date
Jun-2007
Publisher
Korean Ceramic Society
Keywords
Carbothermal reduction; Corrosion resistance; High temperature reaction; Refractory; Silicon carbide
Citation
Journal of the Korean Ceramic Society, v.44, no.6, pp.331 - 337
Indexed
SCOPUS
KCI
Journal Title
Journal of the Korean Ceramic Society
Volume
44
Number
6
Start Page
331
End Page
337
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/180008
DOI
10.4191/KCERS.2007.44.6.331
ISSN
1229-7801
Abstract
High temperature reaction behaviors of various oxide materials (such as bauxite, pyrophyllite, mullite and fused silica powders) used in the refractory materials for tap-hole plugging of blast furnace were investigated with varying temperature in the carbon surrounding. Kinetics of carbothermal reduction of SiO2 for forming SiC with high corrosion resistance were strongly dependent on it's crystalline phase. SiC generation yield increased with increasing catalyst amount in oxide regardless of generated SiO gas amount at temperature of <1500°C. However, in case of fused silica over 1500°C, SiC generation yield was dominantly influenced by SiO amount without catalyst effect. Bauxite showed the most effective carbothermal reduction reaction, since bauxite have a large amount of catalyst and well-dispersed SiO2 phase in oxide matrix.
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