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Thermodynamic considerations of the corrosion of nickel ferrite refractory by Na3AlF6–AlF3–CaF2–Al2O3bath

机译:Na3alF6-alF3-CaF2-al2O3浴对镍铁氧体耐火材料腐蚀的热力学考虑

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摘要

Thermodynamic analysis was carried out to interpret the results of corrosion testing of nickel ferrite samples in cryolite-based baths. The equilibrium between cryolite-based baths and nickel ferrite was considered. Isopleths between cryolite-based baths and nickel ferrite confirmed that for the temperature range of interest (1223-1273 K) there was limited solubility of nickel ferrite in the bath. To better understand the formation of the metal from nickel ferrite, the effect of reducing potentials on nickel ferrite and nickel ferrite-cryolite-based bath systems were considered. The formation of a metal phase was predicted at relatively high pO2. The metal phase was nickel-rich at higher pO2, becoming enriched in iron as the pO 2 decreased. The oxide phases seen in corroded nickel ferrite samples corresponded to the spinel phase in the thermodynamic calculations. Penetration of aluminium oxides into the spinel phase seen in the experimental samples occurred only under a reducing potential.
机译:进行热力学分析,以解释在克隆岩浴中镍铁氧体样品的腐蚀试验结果。考虑了龙晶岩浴与铁素体之间的平衡。无胶质基浴和镍铁氧体之间的Isopleth确认,对于感兴趣的温度范围(1223-1273k),镍铁氧体在浴中存在有限的溶解度。为了更好地了解从镍铁氧体形成金属的形成,考虑了降低镍铁氧体和镍铁晶沸石的浴系统的潜在潜在的效果。在相对高的PO2中预测金属相的形成。金属相富含镍在较高PO2,在PO 2减少时富含铁。在腐蚀的镍铁氧体样品中观察到的氧化物相对应于热力学计算中的尖晶石相位。氧化铝渗透到实验样品中观察到的尖晶石相仅在还原电位下发生。

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