Assessment of Magnesia Refractories Corrosion by Iron-Rich Slags

Konstantinos Betsis, A. Kourtis, K. Karalis, A. Xenidis
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Abstract

: High purity magnesia refractories have been tested for their resistance to iron-rich converter slags of ferronickel production. Laboratory tests were performed using crucibles made from magnesia refractories filled with slag at temperatures up to 1700 ◦ C and contact times of 1, 2, 4, or 8 h. SEM observations and microanalyses performed on both refractories and slag indicated the progressive substitution of Mg in magnesia refractories by iron and production of magnesiowustite ((Mg, Fe)O), thus forming an affected intermediate zone with a depth depending on contact time and temperature. At the most aggressive conditions investigated, i.e., temperature 1700 ◦ C and 8 h contact time, the maximum depth of the intermediate affected zone measured was 1.57 mm. Thermodynamic simulation of the system with FactSage 7.0 confirmed the formation of magnesiowustite with progressively higher rates of Mg substitution by Fe that decreases the melting point of (Mg, Fe)O, resulting in the progressive corrosion of the converters’ lining.
富铁渣对镁耐火材料腐蚀的评价
对高纯镁耐火材料进行了耐镍铁生产中富铁转炉炉渣的测试。实验室测试使用由氧化镁耐火材料制成的坩埚进行,坩埚中填充了炉渣,温度高达1700℃,接触时间为1,2,4或8小时。对耐火材料和炉渣进行的扫描电镜观察和微量分析表明,氧化镁耐火材料中的Mg逐渐被铁取代,并产生了菱镁矿((Mg, Fe)O),从而形成了一个受影响的中间区域,其深度取决于接触时间和温度。在最恶劣的条件下,即温度1700◦C和8小时的接触时间,测量的中间影响区的最大深度为1.57毫米。利用FactSage 7.0对该体系进行热力学模拟,证实了镁黄铁矿的形成,Fe取代Mg的速率逐渐提高,降低了(Mg, Fe)O的熔点,导致转炉内衬逐渐腐蚀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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