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Research on the Penetration Depth in Aluminum Reduction Cell with New Type of Anode and Cathode Structures

机译:新型阳极和阴极结构的铝电解槽穿透深度的研究

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In this article, a cold water model experiment based on the principle of similitude was conducted to study penetration depth and to investigate the rules of penetration depth (the thickness of bubble sheet) in new anode structure electrolytic cell. New structure anodes and new structure cathodes were designed to examine penetration depth induced by anodic gas in the electrolytic cell. A high-speed camera was used to take photographs of the water model experiment. After that, photographs were analyzed by Image-Pro Plus software. The results revealed the effect of different parameters such as slit width, anode-cathode distance, electrolyte level, and gas rate on the penetration depth. The results provide several meaningful suggestions in selecting electrolysis apparatus. Finally, through dimensional analyzing, the penetration depth criterion equation of the 1/2 anode structure electrolytic cell was obtained. In sum, water model experimental results provide theoretical and experimental basis for the new anode structure and new cathode structure electrolysis cell's design and practice.
机译:本文基于相似原理进行了冷水模型实验,以研究渗透深度并研究新型阳极结构电解池中渗透深度的规则(气泡片的厚度)。设计了新结构的阳极和新结构的阴极,以检查由阳极气体在电解池中引起的穿透深度。使用高速相机拍摄水模型实验的照片。之后,通过Image-Pro Plus软件对照片进行分析。结果揭示了诸如缝隙宽度,阳极-阴极距离,电解质水平和气体速率等不同参数对穿透深度的影响。结果为选择电解装置提供了一些有意义的建议。最后,通过尺寸分析,获得了1/2阳极结构电解池的渗透深度判据方程。总之,水模型实验结果为新型阳极结构和新型阴极结构电解槽的设计与实践提供了理论和实验依据。

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