Shuchen Sun, Binchuan Li
In order to adapt the characteristics of wind power, we investigated the anode process with high current density. A liquid fluctuation testing system of aluminum electrolysis was designed and utilized to test the electrolyte liquid fluctuation conditions throughout the electrolysis process with differently shaped anodes and various current densities. We analyzed the effects of electrolyte fluctuation frequency and the extent of the bubbling behavior of anodic gas. Additionally, bath voltage fluctuation conditions in the electrolysis process with different anode shapes and current densities were tested, allowing us to analyze the impacts of bath voltage fluctuation frequency and voltage drop on the bubbling behavior of anodic gas. The findings contribute valuable knowledge towards understanding the optimization of aluminum electrolysis systems when utilizing non-grid-connected wind power. Proper management of the anode processes, stable operating conditions, and effective voltage control can potentially enhance the efficiency of aluminum electrolysis, thereby addressing challenges in renewable energy applications.
@article{96168052-feab-41b8-b29b-975def720bec,
title={Anodic Gas Behavior of Aluminum Electrol},
author={Shuchen Sun and Binchuan Li},
year={2026},
language={en}
}TY - JOUR TI - Anodic Gas Behavior of Aluminum Electrol AU - Shuchen Sun AU - Binchuan Li PY - 2026 LA - en ER -
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