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Meeting 2022 TMS Annual Meeting & Exhibition
Symposium Aluminum Reduction Technology Joint Session with REWAS: Decarbonizing the Metals Industry
Presentation Title Research on Low Temperature Aluminium Electrolysis Charging Recovery System of Renewable Energy Cycle Power Generation System
Author(s) Huimin Lu, Neale R Neelameggham
On-Site Speaker (Planned) Huimin Lu
Abstract Scope This paper studies a low-temperature aluminium electrolysis charging recovery system of a renewable energy cycle power generation system, which involves the field of renewable energy and aluminium electrolysis. This article research covers wind power systems, photovoltaic power systems, intelligent integrated power coordination control systems, high-purity aluminium production, low-temperature molten salt aluminium electrolysis charging recovery system and aluminium-air battery power generation system. The intelligent integrated power supply coordination control system presented in this paper is electrically connected to the low-temperature molten salt aluminium electrolysis charging recovery system and the aluminium -air battery power generation system to provide reliable power. Aluminium electrolysis takes places at low temperatures in range of 700-750°C where by the anode is an inert anode producing oxygen gas. The metal is of high purity while the current efficiency is in 90-95% range. The attached the aluminium-air battery power generation system is used for wind power and photovoltaic power regulation.
Proceedings Inclusion? Planned: Light Metals
Keywords Energy Conversion and Storage, Aluminum, Electrometallurgy

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Building of a Superconductor Busbar at 200 kA for an Aluminium Plant
Bus Bars FSW Repair during Full Operation of Alumina Electrolysis
Cooling of Pot Gas Enabling Carbon Footprint Reductions
Research on Low Temperature Aluminium Electrolysis Charging Recovery System of Renewable Energy Cycle Power Generation System
Stabilizing Electrolysis Cells with Oscillating Currents: Amplitude, Frequency and Current Efficiency
The Contribution and Economics of Demand Side Response towards Decarbonizing the Aluminium Industry

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