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The process is designed to be highly energy-efficient, requires no water, and generates no waste, every material fed into the process is fully utilized. In addition to metals, the same process produces circular cement, which replaces traditional cement and supports substantial global CO₂ reduction.
The technology is built on strong R&D foundations, combining thermodynamic modeling, slag chemistry optimization, smelting and reduction trials, microstructural analysis, and AI-assisted material modeling. This integrated approach enables processing at lower temperatures, better viscosity control for high metal yields, and consistent quality of the circular cement.
Betolar’s solution generates significant value for metal producers by capturing metals that would otherwise remain unused, while also reducing environmental liabilities and lowering dependence on virgin raw materials.
Importantly, the technology also strengthens national and regional self‑sufficiency in critical raw materials, reducing reliance on geopolitically sensitive supply chains and supporting industrial resilience.
Betolar's proprietary Metal Extraction Technology improves the yield of metal extraction from unused industrial sidestreams and mine tailings - up to 99%
The residual slag from the process is utilized as low-carbon binder material - Betolar's circular cement
This groundbreaking process leaves no waste behind converting unutilized industrial sidestreams into valuable materials.
The results are based on the combination of:
1. Experimental tests
2. Thermo-dynamic modelling
3. AI-assisted composition modelling
4. Large scale pilot testing
Contact us for more information and to see how your sidestreams and mine tailings can be utilized.
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