Hades Mining employs advanced in-situ recovery (ISR) techniques to access ultra-deep geothermal heat reservoirs for energy generation and extract critical minerals from deep rock formations. This subsurface fluid circulation method minimizes environmental impact while providing a scalable solution for industrial sectors needing secure raw materials and reliable geothermal energy.
Funding
Funding not disclosed

Founders
Product
Problem
Accessing ultra-deep geothermal heat reservoirs and extracting critical minerals from deep rock formations presents significant technical and environmental challenges. Traditional mining methods often involve extensive surface disruption and can be resource-intensive, while current geothermal energy extraction is limited to shallower, more accessible heat sources.
Solution
Hades Mining is developing advanced in-situ recovery (ISR) techniques to access ultra-deep geothermal heat reservoirs for energy generation and to extract critical minerals from deep rock formations. This approach utilizes fluid circulation within subsurface rock formations to facilitate heat transfer for energy production and mineral dissolution for extraction, minimizing surface environmental impact. By focusing on subsurface operations, Hades Mining aims to provide a scalable and responsible method for securing vital raw materials and generating abundant energy. The company's technology operates at the intersection of geology, engineering, and resource management to foster industrial independence.
Target Audience
Primary customers include industrial sectors requiring a secure and sovereign supply of critical minerals and entities seeking large-scale, reliable geothermal energy solutions.
Features
- Advanced In-Situ Recovery (ISR) technology for subsurface resource extraction.
- Utilization of fluid circulation for geothermal heat transfer and mineral dissolution.
- Focus on ultra-deep heat reservoirs for enhanced geothermal energy potential.
- Minimization of surface environmental impact through subsurface operations.
- Proprietary geological modeling and engineering for deep rock formation access.
- Integrated approach to energy generation and critical mineral extraction.