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首页> 外文期刊>Journal of Applied Electrochemistry >Influence of electrolyte impurities on current efficiency in aluminium electrolysis cells
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Influence of electrolyte impurities on current efficiency in aluminium electrolysis cells

机译:电解质杂质对铝电解槽电流效率的影响

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The influence of electrolyte impurity species on current efficiency with respect to aluminium (CE) was studied in a specially designed laboratory cell at 980 ℃, with a graphite anode an a cathodic current density of 0.85 A cm~(-2). The electrowinning was performed in a base melt of Na_3AlF_6 with a NaF/AlF_3 molar ratio of 2.5 and with 4-6 wt % Al_2O_3 and 5 wt % CaF_2. Impurity species, probably present in only one valence state in the electrolyte, Mg, Ba and B, had no measurable effect on CE for low impurity concentrations. Sn, added to the electrolyte as SnO_2, also did not affect current efficiency, probably due to its low solubility. The results show a linear decrease in CE with increasing electrolyte concentration of the polyvalent impurity species from the elements, Fe, P, V, Si, Zn, Ti and Ga. The decrease was found to be within the range 0.1 to 0.7% in CE per 0.01 wt % of impurity cations present in the electrolyte, with phosphorus ions as the most detrimental. The effects of the individual impurity species on CE appear to be roughly additive for electrolytes containing more than one impurity species. The results obtained cannot be explained by a simple codeposition mechanism or a single reduction to a soluble species of a lower valency. The most likely mechanism explaining the observed decrease in CE for a large number of impurity species is cyclic redox reactions in the cathode and anode/CO_2 interfacial boundary layers. Such a mechanism may also be the dominant one in commercial cells, since the impurity levels are of the same size as in the laboratory cell.
机译:在一个专门设计的实验室电池中,在980℃下,采用石墨阳极和0.85 A cm〜(-2)的阴极电流密度,研究了电解质杂质种类对铝(CE)电流效率的影响。在具有NaF / AlF_3摩尔比为2.5的Na_3AlF_6和4-6 wt%的Al_2O_3和5 wt%的CaF_2的基础熔体中进行电沉积。杂质可能仅以一种价态存在于电解液中,即Mg,Ba和B,对于低杂质浓度而言,对CE没有可测量的影响。作为SnO_2添加到电解质中的Sn也不会影响电流效率,这可能是由于其低溶解度。结果表明,随着元素,Fe,P,V,Si,Zn,Ti和Ga中多价杂质物质电解质浓度的增加,CE呈线性下降。CE的下降幅度在0.1%至0.7%范围内。每0.01wt%的电解质中存在的杂质阳离子,磷离子是最有害的。对于包含一种以上杂质的电解质,单个杂质对CE的影响似乎是相加的。无法通过简单的共沉积机制或单价还原为价数较低的可溶性物质来解释获得的结果。解释观察到的大量杂质的CE降低的最可能机理是阴极和阳极/ CO_2界面边界层中的循环氧化还原反应。由于杂质水平与实验室单元中的杂质水平相同,因此这种机制在商业单元中也可能是主要的机理。

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