Trina Green Hydrogen Unveils Cutting-Edge Hydrogen Equipment at International Conference in Shanghai
Key Ideas
- Trina Green Hydrogen showcased new green hydrogen equipment at the International Solar Photovoltaic and Smart Energy Conference in Shanghai, emphasizing high efficiency and reduced costs.
- Their megawatt-scale PEM electrolyzer features advanced materials, reducing precious metal usage by 80% and lowering power consumption. The equipment cost can be reduced by 20%.
- The alkaline electrolyzer and containerized hydrogen production system offer high stability, efficiency, and modular design for rapid assembly. The containerized system reduces transportation costs and time.
- As renewable energy costs decrease and electrolyzer efficiency improves, green hydrogen is set to become more competitive, with Trina Green Hydrogen committed to further R&D for enhanced product performance and stability.
Trina Green Hydrogen made a significant impact at the 18th International Solar Photovoltaic and Smart Energy Conference & Exhibition in Shanghai by launching three innovative green hydrogen equipment offerings. The company's megawatt-scale PEM electrolyzer boasts a new generation of materials ensuring safe operation, high efficiency, and reduced power consumption. The use of advanced catalyst technology minimizes precious metal iridium by 80%, extending the catalyst lifespan and reducing voltage decay. Moreover, Trina Green Hydrogen's alkaline electrolyzer and containerized hydrogen production system demonstrate high stability, efficiency, and modular design for quick assembly. The containerized system's standardized design enhances transportation efficiency and reduces costs significantly. With the declining costs of renewable energy and the continuous improvement in electrolyzer efficiency, the future of green hydrogen looks promising. Trina Green Hydrogen is dedicated to investing in research and development to enhance product performance, durability, and stability, contributing to a sustainable hydrogen-powered future.