6x YOUR EV’s RANGE¹

Recover up to 6x your effective range on your EV battery

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Rebalancing Kit

Extend the health, lifespan, and effective range of your EV’s battery.

Current Clamp

Tablet

Cables

Vehicle Adapter

Airtight Module

Deciphering Module

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Battery Lift

Tool Kits

a 360° approach to battery metals

Battery X Metals is on mission is to advance North America’s clean energy transition by pioneering proprietary technologies to diagnose & extend electric vehicle (EV) battery life, recover battery-grade metals from end-of-life lithium-ion batteries, and exploring domestic battery metal resources.

As demand for battery metals soars, we are dedicated to implementing sustainable practices that reduce environmental impact. Our goal is to lead the industry in developing innovative solutions for battery metal recycling, renewal, and exploration. Battery X Metals is committed to a comprehensive, 360° approach, contributing to a cleaner, greener future.

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RECYCLING & REBALANCING THE FUTURE

RECYCLING & REBALANCING THE FUTURE ♻

Rebalancing. Recycling. Exploration.

Battery X Metals is developing next-generation technologies that improve how batteries are used, recycled, and sourced within the global clean-energy ecosystem. The Company’s team of scientists and engineers is advancing patent-pending rebalancing technologies that restore performance and extend the lifespan of electric vehicle batteries. In collaboration with a globally recognized Top 20 university, Battery X Metals is pioneering an eco-friendly process to recover battery-grade materials from end-of-life lithium-ion batteries, reducing waste and reliance on newly mined resources. Through its exploration initiatives, guided by experienced geological consultants and supported by artificial-intelligence-driven modelling, the Company is identifying and advancing critical battery-metal projects that aim to strengthen North America’s sustainable supply chain for next-generation technologies.

FROTH FLOTATION

Recovery of battery-grade materials from “black mass,” the fine residual material generated during the shredding of end-of-life lithium-ion batteries, through an eco-friendly process developed in collaboration with a globally recognized Top 20 university, supporting sustainable and circular resource recovery.

High Recovery: Achieves graphite recoveries exceeding 98% and metal-oxide purities up to 96%.

Eco-Friendly: Operates under mild, low-chemical, low-temperature, and low-energy conditions.

Efficiency: A cleaner, more efficient alternative to conventional hydrometallurgical and pyrometallurgical methods.

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Exploration projects