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Corrosion behavior of Cu-Ni-Ag-Al alloy anodes in aluminium electrolysis
作者姓名:徐君莉  石忠宁  邱竹贤
作者单位:SchoolofMaterials&Metallurgy,NortheasternUniversity,Shenyang110004,China
基金项目:国家重点基础研究发展计划(973计划)
摘    要:The behavior of Cu-Ni-Ag-Al alloy used as anode for aluminum electrolysis was directly visualized in a two-compartment see-through cell during electrolysis, and its performances were tested at 850℃ in acidic electrolyte molten salts consisting of 39.3%NaF-43.7%AlF3-8%NaCl-5?F2-4%Al2O3 for 40 h in a laboratory cell. The results show that nascent oxygen oxidizes the anodic surface to form oxide film at the beginning of electrolysis. X-ray diffraction analysis of alloy surface show that the oxide film on the anodic surface consists of CuO, NiO, Al2O3,CuAl2O4 and NiAl2O4. However, SEM image shows the oxide film is porous, loose and easy to fall into electrolyte and to contaminate aluminum. The corrosion mechanism of metal anodes was analyzed.

关 键 词:Cu-Ni-Ag-Al合金  铝合金  电解  电极  SEM  腐蚀

Corrosion behavior of Cu-Ni-Ag-Al alloy anodes in aluminium electrolysis
XU Jun-li,SHI Zhong-ning,QIU Zhu-xian.Corrosion behavior of Cu-Ni-Ag-Al alloy anodes in aluminium electrolysis[J].Transactions of Nonferrous Metals Society of China,2004,14(2):397-400.
Authors:XU Jun-li  SHI Zhong-ning  QIU Zhu-xian
Abstract:The behavior of Cu-Ni-Ag-Al alloy used as anode for aluminum electrolysis was directly visualized in a two-compartment see-through cell during electrolysis, and its performances were tested at 850℃ in acidic electrolyte molten salts consisting of 39.3 % NaF-43.7 % AlF3-8 % NaCl-5 % CAF2-4 % Al2 O3 for 40 h in a laboratory cell. The results show that nascent oxygen oxidizes the anodic surface to form oxide film at the beginning of electrolysis. X-ray diffraction analysis of alloy surface show that the oxide film on the anodic surface consists of CuO, NiO, Al2O3,CuAl2 O4 and NiAl2 O4. However, SEM image shows the oxide film is porous, loose and easy to fall into electrolyte and to contaminate aluminum. The corrosion mechanism of metal anodes was analyzed.
Keywords:metal anodes  aluminum electrolysis  oxide film  porous  corrosion mechanism
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