critical materials

How Pure Lithium Brine to Battery Technology Improves Energy Storage, Manufacturing

Pure Lithium’s Brine to Battery™ technology fundamentally changes the way rechargeable batteries are made, from the materials used to the methods of production. The result is a lithium-metal (Li-M) battery delivered at a lower cost with significantly higher energy density than lithium-ion (Li-ion), the dominant battery on the global market today. The Brine to Battery method turns lithium-containing brines into 99.9% pure, battery-ready Li-M anodes, using sophisticated electrochemistry.

Sustainable Closed-Loop Metal Extraction Technology

pH7 is a startup focused on technologies centered on the extraction and recycling of critical metals essential for the transition to renewable energy. The proprietary, near-net-zero environmental impact technology transforms mining, recycling, and manufacturing operations into sustainable, eco-friendly processes. By using the novel science of solvometallurgy and complementary techniques, pH7 provides scalable solutions for minimizing waste, emissions, and resource consumption in the recovery of valuable materials.

Core Technology and Applications

Critical Materials Accelerator

The Critical Materials Accelerator aims to validate and prototype technologies and processes that address critical materials challenges by developing alternatives, diversifying and expanding supply, increasing manufacturing and material efficiency, and establishing a circular economy. 

The Accelerator intends to speed up the adoption of innovation while promoting safe, sustainable, economic, and environmentally just solutions to meet current and future critical materials supply chain needs​.