OUR ENGINEERING WORKFLOW

The Circular Battery Lifecycle

From collection to second-life applications, our 10-step process ensures maximum value recovery and traceable compliance for every battery.

ENGINEERING METHODOLOGY

10 Steps to Sustainable Battery Management

01 / Collection

02 / Inspection

03 / Diagnosis

04 / Grading

Secure logistics and intake of spent lithium-ion packs from EV partners.

Meticulous visual and physical assessment of casing integrity and safety.

Advanced electrochemical testing and cell-level state-of-health analysis.

Categorizing cells based on capacity, internal resistance, and performance.

05 / Discharge

06 / Disassembly

07 / Refurbishment

08 / Repurposing

Controlled energy depletion to prepare modules for safe physical handling.

Precision mechanical dismantling of packs down to individual cell levels.

Repairing, balancing, and restoring viable components to active service.

Engineering second-life battery packs for stationary energy storage systems.

09 / Recycling

10 / Certification

Closed-loop hydrometallurgical recovery of high-value active cathode materials like lithium, cobalt, and nickel.

Providing fully traceable safety, compliance, and carbon offset documentation for circular economy reporting.

ENGINEERING RIGOR

Precision Diagnostics. Uncompromising Safety. Full Traceability.

Every battery pack undergoes meticulous cell-level inspection and validation, ensuring compliance and maximizing its sustainable value.

Ready to Transform Your Battery Lifecycle?

Collaborate with Turbo Ion Energy to implement a truly circular battery ecosystem.