Shenzhen ZH Energy Storage Technology Co., Ltd. designs, manufactures, and supplies advanced flow‑battery key materials and equipment for long‑duration, low‑cost energy storage. Leveraging a stack production line with a hundred‑scale megawatt annual capacity, the company offers certified (UL 1973, IEC 62932) vanadium redox flow battery modules up to 375 kW, enabling large‑scale projects that reduce initial installation costs and support carbon‑neutral goals.
Funding
Funding not disclosed
Founders
Product
Problem
Large-scale energy storage projects require long-duration batteries that are safe, cost-effective, and capable of rapid deployment, but conventional flow battery installations involve high upfront capital costs and complex component integration.
Solution
ZH Energy Storage Technology develops and manufactures advanced vanadium redox flow battery modules and key components that reduce initial installation expenses while maintaining high performance and safety. The company leverages a decade of R&D to produce standardized 375 kW flow battery stacks with an annual production capacity of several hundred megawatts. Certified to UL 1973 and IEC 62932, these modules are ready for megawatt‑scale deployments in both domestic and international markets, enabling utilities and developers to implement long‑duration storage with lower capital outlay.
Target Audience
Primary customers are utility companies, large‑scale renewable project developers, and industrial energy users seeking long‑duration, safe, and cost‑effective storage solutions.
Features
- Standardized vanadium redox flow battery modules delivering up to 375 kW per unit
- High‑performance stack design with world‑leading efficiency and durability
- Certified compliance with UL 1973 and IEC 62932 for safety and reliability
- Scalable manufacturing line capable of producing hundreds of megawatts of stack capacity annually
- Integrated system and battery management solutions for turnkey deployment
- Low‑cost, high‑performance membrane and electrolyte technologies to reduce overall system cost