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the vertically integrated value chain 

Our Battery Ecosystem

Solidior Power Ltd operates in a vertically integrated value chain that is encompassing responsible nickel sourcing, advanced materials processing, and the commercialization of fully traceable, battery‑grade materials. The Solidior Power battery manufacturing facility in Riga, Latvia is using high‑quality cathode and anode materials, combining Tier‑1 automated production with proprietary chemical synthesis. This integrated approach enhances supply‑chain resilience, cost control, and product reliability—positioning Solidior Power to support mission‑critical energy storage markets while driving sustainable, long‑term shareholder value.

a picture of moder underground  nickel mine .jpg
A clean , modern nickel hydroxide manufacturing plant .jpg
Nickel mining 
Nickel hydroxide production  
Yield Optimization

Nickel mining and MHP concentrate plant in Europe will provide the cathode materials to the batteries  

Our on-site chemical processing units manufacture advanced cobalt doped nickel hydroxide  for the NiZn batteries, reducing supply chain dependency.

Real-time AI monitoring throughout the 6.4 GWh production lines ensures product consistency, purity  and performance.

STEP 01

Raw Material Synthesis

STEP 03

Stacking & Assembly

The process begins with high-purity nickel and zinc sourcing, followed by precision chemical synthesis to create our proprietary active materials. Æsir Technologies Inc has proprietary rights for the manufacturing of doped nickel hydroxide and we develop further the process to obtain a higher yield of nickel and other minerals in the process.

Precise stacking of anodes, cathodes, and separators in a moisture-free environment ensures safety and longevity of the battery cells.

STEP 02

Electrode Coating

Proprietary slurries are coated onto current collectors with micron-level thickness control using automated clean-room equipment.

STEP 04

Forming & Testing

Cells undergo electrochemical formation and rigorous load testing to validate performance specifications before final packing.

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