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Chemical corrosion mechanisms of magnesia-chromite and chrome-free refractory bricks by copper metal and anode slag

机译:铜和阳极渣对镁铬铁矿和无铬耐火砖的化学腐蚀机理

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The penetration and corrosion resistance to copper and anode slag of six magnesia-chromite and six chrome-free refractory brick types were tested using static finger tests at a typical copper-refining temperature (1300 deg C). The microstructures of the as-delivered and tested refractory types were investigated by means of electron-probe micro-analysis (EPMA) and scanning electron microscopy (SEM) techniques. The results showed that the overall wear rate of the fingers was very low, with the exception of the alumina-based brick made of fused corundum and magnesia-alumina spinel, and the magnesia-based brick made of sintered magnesia and zircon addition. In all refractory types new phases were formed as a result of slag-refractory interactions. Apart from the samples recovered from the copper zone of the latest generation of direct-bonded magnesia-chromite bricks, all the rest were completely infiltrated by copper and slag components (copper oxide, iron oxide, alumina and silica). However, the amount of infiltrated liquid in the chrome-free types was higher than in the magnesia-chromite bricks. Explanations are provided for the distinct infiltration behaviour. The results show that economically viable chrome-free refractory alternatives are still elusive for anode furnace linings.
机译:在典型的铜精炼温度(1300℃)下使用静态手指试验测试了六种亚铬酸镁和六种无铬耐火砖对铜和阳极渣的渗透性和耐腐蚀性。通过电子探针显微分析(EPMA)和扫描电子显微镜(SEM)技术研究了已交付和测试的耐火材料类型的微观结构。结果表明,除了由刚玉和镁铝尖晶石制成的氧化铝基砖,以及由烧结氧化镁和锆石添加制成的镁基砖外,手指的总体磨损率非常低。在所有耐火材料类型中,由于炉渣与耐火材料的相互作用而形成了新的相。除了从最新一代的直接粘结氧化镁铬铁砖的铜区回收的样品外,其余所有样品都被铜和炉渣成分(氧化铜,氧化铁,氧化铝和二氧化硅)完全渗透。但是,无铬类型的渗透液体的量高于氧化镁-铬铁矿砖中的渗透液体的量。提供了有关不同渗透行为的说明。结果表明,经济可行的无铬耐火材料替代品对于阳极炉炉衬仍然难以捉摸。

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