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Degradation Mechanisms of Refractories in a Bottom Blown Copper Smelting Furnace

机译:底吹铜熔炼炉中耐火材料的降解机理

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The first bottom blown copper smelting furnace (BBF) has been successfully operated for 10 years at Dongying Fangyuan Nonferrous Metals. In addition to many advantages of the BBF reported previously, stable operation with spinel-containing slags enabled the BBF refractories to achieve three-year campaign life. Understanding of the degradation mechanisms of the magnesia-chromite refractory will be able to further prolong the service life of the refractories and develop new refractories. In the present study, the post-mortem refractories were collected from different locations of the BBF during the annual maintenance. It is the first systematic study for the used refractories of a BBF. The phases present in the refractories and their compositions have been determined by Electron Probe X-Ray Microanalysis. The degradation mechanisms of the refractories are discussed based on the analyses. The results will be used to optimize the operation and select proper refractories in the furnaces.
机译:首台底部吹铜熔炼炉(BBF)在东营方圆有色金属有限公司成功运行了10年。除了先前报道的BBF的许多优点之外,稳定的操作与含尖晶石的炉渣使BBF耐火材料能够达到三年的使用寿命。了解镁铬铁质耐火材料的降解机理将能够进一步延长耐火材料的使用寿命并开发新的耐火材料。在本研究中,在年度维护期间从BBF的不同位置收集了事后耐火材料。这是对BBF耐火材料的首次系统研究。耐火材料中存在的相及其组成已通过电子探针X射线微分析法确定。在分析的基础上,探讨了耐火材料的降解机理。结果将用于优化操作并在炉中选择合适的耐火材料。

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