Primary Hydrogen Corp. Launches Phase 2 Field Sampling Program at Dove Creek Project in Colorado
Key Ideas
- Primary Hydrogen Corp. has initiated a field sampling program at the Dove Creek project in Colorado, focusing on natural hydrogen exploration.
- The program, conducted by Lonewolf Energy, Inc., aims to gather critical data to enhance exploration models and guide future endeavors.
- Utilizing techniques tested by the INRS to minimize artificial hydrogen, the company anticipates rapid identification of potential subsurface anomalies.
- The Dove Creek project in Colorado shows promising potential for natural hydrogen generation through radiolysis of uranium-rich rocks and deep-seated fault systems.
Primary Hydrogen Corp. has announced the commencement of its Phase 2 field sampling program at the Dove Creek project in Colorado, USA. The program, led by Lonewolf Energy, Inc., under the supervision of Peter Lauder, VP of Exploration, will collect soil gas samples over 740 acres. The company is leveraging techniques by the INRS to minimize artificially produced hydrogen and ensure accurate results. This initiative aims to gather crucial information to refine exploration models and facilitate future exploration efforts.
The Dove Creek project, situated in southwestern Colorado, holds significant potential for natural hydrogen generation driven by radiolysis of uranium-rich basement rocks. The area's fault systems act as migration pathways for hydrogen, which may accumulate in traps. Geophysical data indicates strong anomalies aligned with fault structures, supporting the project's hydrogen potential.
Primary Hydrogen Corp. focuses on exploring and developing natural hydrogen resources across the U.S. and Canada. The company's sampling methodology, developed in collaboration with the INRS, ensures reliable data for upcoming exploration phases. The initiative aligns with the company's dedication to advancing hydrogen exploration and utilizing innovative techniques to accelerate target definition and resource potential.