
Leizig provides a one-stop optimal temperature control solution for containerized battery energy storage systems. We offer chillers and dehumidifiers to ensure efficient operation of the energy storage containers within suitable temperature and humidity environments. Through our container systems and equipment, we conduct energy consumption analysis and provide customized temperature control solutions for our clients, aiming to improve energy efficiency and ensure optimal system performance and stability.
In high-temperature conditions, the internal resistance of energy storage containers increases, leading to reduced discharge efficiency. By implementing centralized cooling, we can control the temperature of the containers, thereby enhancing their efficiency. High temperatures can also damage the electrochemical materials inside the containers, reducing their lifespan. Centralized cooling helps maintain the containers within an appropriate temperature range, slowing down material aging and extending the containers’ lifespan. Additionally, high temperatures increase the internal pressure of energy storage containers, which can lead to potential fire or explosion hazards. With centralized cooling, we can control the container’s temperature, lower the pressure, and enhance the safety of the energy storage system.
Each end-user operates under different conditions, and some may experience low temperatures with high humidity. When the humidity exceeds 75%, sensitive electrical components within the energy storage container are prone to misoperation, failure, or even damage. Leizig’s Industrial Dehumidifier HD/LG series can effectively reduce and control the internal humidity of the energy storage container, managing the dew point to prevent both visible and hidden condensation. This ensures that the internal climate of the energy storage container remains in a dynamically balanced and dry state, enabling the efficient operation of delicate electrical components and prolonging the lifespan of the energy storage container.