Products
High-purity Precursor Materials
Our cutting-edge technology extracts precursor materials of ~99% purity from both ternary and LFP batteries. Our novel approach ensures efficient conversion of high-grade black mass into high-purity precursor materials.
- Li2CO3
- CoSO4
- Cobalt Metal
- NiSO4
- Nickel Metal
- MnSO4
- FePO4
- Graphite
- Copper Metal





High-grade Black Mass
Our comprehensive high-grade black mass extraction process not only maximizes the recovery of valuable materials from spent lithium-ion batteries but also adheres to high environmental and safety standards.
High-grade Black Mass

Battery Digital Technology Stack
Our AI-enabled battery SOH prediction and EOL recommendation engine empowers battery manufacturers, operators, OEMs and end-users to comprehensively monitor and predict the health and lifespan of batteries.
- Our Battery Health Monitoring Software will provide a robust solution for monitoring and maintaining battery systems. By leveraging advanced analytics, real-time data monitoring, stringent cybersecurity measures, seamless integration with the existing cloud-based monitoring platform, and remote firmware upgrades for BMS, our BHMS will enhance battery performance, safety, and lifespan, offering significant value to industries relying on battery technologies.
Key benefits of our digital battery solutions include :
- Improved Battery Lifespan
- Enhanced Safety
- Cost Savings
- User-friendly Interfaces
- Scalability
- Robust Security
- Unified Monitoring
- Our Master Battery Management System (BMS) Controller is engineered and designed for the controlled operations of Li-ion batteries. Bridge Green Master BMS is designed to support various configurations of Li-ion battery systems without specific constraints on the number of modules or racks. We provide a comprehensive solution for monitoring and controlling Li-ion battery systems, ensuring reliability, safety, and optimized performance.

through integration with the existing cloud-based monitoring platform.

Second-life Battery Applications
Batteries with remaining useful life are refurbished and repurposed for various industrial uses. These second-life batteries find new roles in applications such as power backup and energy storage. By giving these batteries an extended life, we contribute to resource conservation and support sustainable energy applications.
- Renewable Energy Storage
- Power Backup for Industries and Households
- EV Charging Stations
Second-life Battery Applications
Batteries with remaining useful life are refurbished and repurposed for various industrial uses. These second-life batteries find new roles in applications such as power backup and energy storage. By giving these batteries an extended life, we contribute to resource conservation and support sustainable energy applications.
- Renewable Energy Storage
- Power Backup for Industries and Households
- EV Charging Stations
