Disa develops materials liberation technologies that enhance the recovery of valuable resources from waste streams, significantly improving recycling efficiency. This technology directly addresses the problem of resource scarcity by reducing reliance on landfills and optimizing material extraction processes.
Funding
$19.5M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.


Founders
Product
Problem
Traditional mineral processing techniques often result in inefficient separation of valuable minerals from waste rock, leading to lower recovery rates and increased environmental impact from tailings and site contamination. Existing methods may also be energy-intensive and costly, hindering the economic viability of processing certain mineral resources.
Solution
Disa Technologies offers High-Pressure Slurry Ablation (HPSA), a patented materials liberation technology designed to selectively isolate target minerals from gangue minerals. This innovative approach enhances mineral processing grades and recoveries while reducing site contamination and waste generation. Disa's HPSA technology improves the efficiency and sustainability of mineral extraction, enabling the recovery of valuable resources from mined ore and legacy waste. The technology is applicable to a wide array of critical minerals essential to the economy.
Target Audience
Disa's primary customers include mining companies, remediation firms, and organizations involved in tailings processing, seeking to improve mineral recovery and reduce environmental impact.
Features
- Patented High-Pressure Slurry Ablation (HPSA) technology for selective mineral liberation
- Optimized mineral processing grades and recoveries
- Reduced site contamination and waste generation
- Economic, efficient, and sustainable mineral processing
- Solutions for mineral processing, remediation, and tailings management
- Testing capabilities to assess material suitability for HPSA processing