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首页> 外文期刊>Journal of Ceramic Science and Technology >Sintering of Magnesia and Iron Oxide in Air and Flowing Nitrogen and its Corrosion Process by Molten Electrolyte
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Sintering of Magnesia and Iron Oxide in Air and Flowing Nitrogen and its Corrosion Process by Molten Electrolyte

机译:空气和流动氮中氧化镁和氧化铁的烧结及其熔融电解质的腐蚀过程。

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摘要

In the present paper, novel sidewall materials for aluminum reduction cells were prepared in air and nitrogen using magnesia and magnetite powders. The sintering behavior of the specimens and their corrosion resistance to electrolyte have been investigated. The results show that Fe3O4 phase is transformed into Fe2O3 at high temperatures in air, which in turn reacts with the MgO added to form MgFe2O4. For the specimens prepared in nitrogen, most of the Fe 30 4 is reduced to FeO in specimens without MgO while all the specimens with added MgO are composed of FexMg1-xO only. The densification of the specimens prepared in both air and nitrogen decreased with the MgO content. The corrosion tests showed that corrosion layers were produced in all the MgO-added specimens while the corrosion process was inhibited in case of formation of composite spinel layer on the surface of the specimens during the tests. Moreover, since MgFe2O4 exhibits higher chemical stability than that of FexMg1-xO in electrolyte and a protective composite spinel layer with dense structure can be more easily formed in specimens prepared in air, the specimens prepared in air generally exhibited better corrosion resistance than that of the specimens prepared in nitrogen. The corrosion processes were also analyzed and discussed based on thermodynamic calculations.
机译:在本文中,使用氧化镁和磁铁矿粉在空气和氮气中制备了用于铝还原电池的新型侧壁材料。研究了样品的烧结行为及其对电解质的耐蚀性。结果表明,Fe3O4相在空气中高温下会转变为Fe2O3,进而与添加的MgO反应形成MgFe2O4。对于在氮气中制备的样品,在不含MgO的样品中,大多数Fe 30 4还原为FeO,而所有添加MgO的样品仅由FexMg1-xO组成。随着MgO含量的增加,在空气和氮气中制备的样品的致密性降低。腐蚀试验表明,在所有添加了MgO的试样中均产生了腐蚀层,而在试验过程中,在试样表面形成了复合尖晶石层的情况下,腐蚀过程受到了抑制。此外,由于MgFe2O4在电解液中的化学稳定性高于FexMg1-xO,并且在空气中制备的样品中可以更容易地形成具有致密结构的保护性尖晶石层,因此在空气中制备的样品通常具有比FexMg1-xO更好的耐腐蚀性标本在氮气中制备。还基于热力学计算对腐蚀过程进行了分析和讨论。

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