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  • Fe-40Cr-5Al合金陽極在800℃和900℃的電解腐蝕行為

    Electrolysis corrosion behaviors of Fe-40Cr-5Al alloy anodes at 800℃ and 900℃

    • 摘要: 采用真空感應熔煉法制備了鋁電解用Fe-40Cr-5Al合金陽極.研究了合金陽極材料在800℃和900℃下的電解腐蝕行為.電解測試采用冰晶石-氧化鋁低溫電解質體系,陽極電流密度為0.5 A·cm-2,電解時間為10 h.結果表明:隨著電解溫度的降低,合金陽極的腐蝕速率減小;在900℃電解后,合金表面形成了多孔結構的腐蝕層;在800℃電解后,合金表面形成了保護性氧化膜,氧化膜分為兩層,外層為尖晶石結構的Fe(Al,Cr)2O4,內層為Fe、Cr和O構成的復合氧化物,其中收集的鋁產品純度為98.552%,合金陽極的腐蝕速率為5.51 cm·a-1.

       

      Abstract: Fe-40Cr-5Al alloy anodes were prepared by vacuum induction melting for aluminum electrolysis.The electrolysis corrosion behaviors of the alloy anodes at 800℃ and 900℃ were investigated.Aluminum electrolysis tests were conducted in a cryolite-alumina low-temperature electrolyte system,at an anodic current density of 0.5A·cm-2 for 10h.The results indicated that the corrosion rate of the alloy anodes reduced with decreasing electrolysis temperature.After electrolysis at 900℃,there was a porous corrosion layer on the anode surface,while a protective oxide scale formed after electrolysis at 800℃.The oxide scale was divided into two layers,in which the outer layer was a Fe(Al,Cr)2O4 spinel and the inner layer was a composite oxide consisting of Fe,Cr and O.The purity of the collected aluminium products after electrolysis at 800℃ was 98.552% and the corrosion rate of the alloy anodes was 5.51cm·a-1.

       

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