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Chemical Stability of Thermal Insulating Materials in Sodium Vapour Environment

机译:钠蒸气环境下隔热材料的化学稳定性

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The most typical thermal insulating materials used in the cathode lining in aluminium electrolysis cells are Moler, calcium silicate, or vermiculite. The thermal insulation is important for the overall thermal and dimensional stability of the cell. The chemical stability of the thermal insulating materials is important, especially in cases where the refractory layer above the thermal insulation layer becomes fully penetrated by sodium vapour. The chemical degradation of thermal insulating materials by sodium vapours has been investigated in a laboratory test resembling the environments in the cathode lining. The exposed materials were investigated with respect to changes in the microstructure and chemical and mineralogical composition by a combination of optical and electronic microscopy and powder X-ray diffraction. These investigations revealed different reaction patterns for the three materials and the formation of new mineralogical phases were identified. Finally, these findings were compared with chemical reactions with sodium based on computational thermodynamics.
机译:铝电解池的阴极衬里使用的最典型的绝热材料是Moler,硅酸钙或ver石。绝热对于电池的整体热和尺寸稳定性很重要。隔热材料的化学稳定性很重要,尤其是在隔热层上方的耐火层被钠蒸气完全渗透的情况下。钠蒸气对隔热材料的化学降解已在类似于阴极衬里环境的实验室测试中进行了研究。通过光学和电子显微镜以及粉末X射线衍射相结合的方法研究了裸露的材料的微观结构以及化学和矿物学组成的变化。这些研究揭示了三种材料的不同反应模式,并确定了新的矿物相的形成。最后,将这些发现与基于计算热力学的钠化学反应进行了比较。

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