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Melt corrosion of refractories in the nonferrous industry and the electric arc furnace: A thermochemical approach

机译:有色金属行业和电弧炉中耐火材料的熔融腐蚀:一种热化学方法

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摘要

A thermochemical approach was implemented to study the dissolution mechanisms of a wide range of refractory oxides and silicates in slags of the nonferrous metals industry and electric arc furnaces. First of all, the slags have been characterized regarding their working range, phase assemblage, and melting behavior. Subsequently, the interactions of different combinations of refractory and slag have been examined, and emphasis has been placed on the determination of possible reaction products formed during dissolution and the solubilities of the refractory oxides and silicates in various slags. Direct dissolution, decisive in the case of high corrosion rates, as well as indirect dissolution have been described. Varying operation conditions (e.g., temperature, atmosphere) have been incorporated into the investigations. In addition to the thermochemical calculations, the solubility of magnesia in fayalite slags has been determined experimentally with the quenching method and the calculated results have been compared to published corrosion studies of other authors. These studies revealed that thermochemical calculations are a suitable tool to examine melt corrosion. The thermochemical approach provides information that can be incorporated into product development and in the operation mode, giving a proper choice of process conditions.
机译:运用热化学方法研究了有色金属工业和电弧炉炉渣中各种难熔氧化物和硅酸盐的溶解机理。首先,对矿渣的工作范围,相组成和熔化行为进行了表征。随后,研究了耐火材料和炉渣的不同组合的相互作用,并着重于确定在溶解过程中形成的可能的反应产物以及耐火氧化物和硅酸盐在各种炉渣中的溶解度。已经描述了在高腐蚀速率下起决定作用的直接溶解以及间接溶解。各种操作条件(例如温度,大气)已被纳入研究范围。除了进行热化学计算外,还通过淬火法实验确定了镁在铁橄榄石炉渣中的溶解度,并将计算结果与其他作者发表的腐蚀研究进行了比较。这些研究表明,热化学计算是检查熔体腐蚀的合适工具。热化学方法提供的信息可以结合到产品开发和操作模式中,从而适当选择工艺条件。

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