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ELECTRICAL CONDUCTIVITY OF CRYOLITE ELECTROLYTES DURING THE LIQUID-SOLID PHASE TRANSITION

机译:液固相变期间浊石电解质的电导率

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It is generally accepted that flow of current during aluminium electrolysis may take place through the layer of side ledge (frozen electrolyte) to the carbon side lining of cathode. It may lead to current losses and this way contribute to decrease of current efficiency. Interesting from this of point of view is the recognition of changes of electrical conductivity of the sodium cryolite melts during the liquid-solid phase transition and in solid state. In this work electrical conductivity measurements were performed on natural cryolite and its binary solutions with AlF_3, CaF_2, MgF_2, LiF. In solidified mixtures of cryolite with additions of AlF_3, CaF_2, MgF_2, the conductivity is higher than in pure cryolite in the same temperature range. This observation suggests that in solid state additives of AlF_3, CaF_2, and MgF_2 cause changes in structure of solid cryolite by introducing cation vacancies which facilitate the ion transport.
机译:通常接受铝电解过程中的电流流动可以通过侧壁层(冷冻电解质)层到阴极的碳侧衬里。它可能导致目前的损失,这种方式有助于降低电流效率。从这一观点来看有趣的是识别在液体固相转变期间和固态期间碳水化石熔体的电导率变化。在该工作中,通过ALF_3,CAF_2,MGF_2,LIF进行天然冰晶岩及其二元溶液进行电导率测量。在粘性晶体的固化混合物中加入Alf_3,CaF_2,MgF_2,导电性高于相同温度范围内的纯晶圆。该观察结果表明,通过引入促进离子输送的阳离子障碍,在Alf_3,Caf_2和MgF_2的固态添加剂中导致固体磁阻石结构变化。

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