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Melting and separation behavior of slag and metal phases in metallized pellets obtained from the direct-reduction process of vanadium-bearing titanomagnetite

机译:含钒钛磁铁矿直接还原法制得的金属化球团中矿渣和金属相的熔化和分离行为

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摘要

With increasing attention to environment and energy issues, it is important to utilize vanadium-bearing titanomagnetite resource effectively in ironmaking industry. In this paper, melting and separation behavior of metallization pellets produced in a direct-reduction process of vanadium-bearing titanomagnetite was studied. The results showed that the effective separation of slag and metal phases could be obtained in which over 95% Fe was transferred into metal phase and over 90% Ti was remained in slag under the conditions of reducing atmosphere and complete carburizing; there were some inclusions of residual carbon and sulfur in the metal phase; the main components in the slag are geikielite, titanium oxide, aluminum silicate, magnesium silicate, and a small amount of iron and its oxides; the complete separation of slag and metal phases was achieved at the condition of 1500 degrees C, holding time of 50 min, reducing atmosphere, and limited carburization; it was considered that the melting and separation process of metallization pellet could be divided into three stages of which slag and metal respectively and sequentially melted and gathered, the molten slag leaked while metallized pellet shrank, and then the slag and metal phases separated from each other completely. (C) 2015 Elsevier B.V. All rights reserved.
机译:随着对环境和能源问题的日益重视,在炼铁行业中有效利用含钒的钛磁铁矿资源非常重要。本文研究了含钒钛磁铁矿直接还原过程中产生的金属化球团的熔化和分离行为。结果表明,在还原气氛和完全渗碳的条件下,可以有效地分离渣和金属相,其中铁中有95%以上的铁转移到金属相中,而渣中有90%以上的Ti残留。金属相中有一些残留的碳和硫。炉渣中的主要成分是geikielite,氧化钛,硅酸铝,硅酸镁和少量的铁及其氧化物。在1500摄氏度,保持时间50分钟,还原气氛和有限的渗碳条件下,实现了炉渣和金属相的完全分离。据认为,金属化球团的熔化和分离过程可分为炉渣和金属三个阶段,依次熔化和聚集,熔融的炉渣在金属化球团收缩的同时泄漏,然后炉渣和金属相相互分离。完全。 (C)2015 Elsevier B.V.保留所有权利。

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