This inventor holds 1 USPTO granted patent. Top assignee: Trustees of the Colorado School of Mines. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: Innovations by Dylan Everly in Rare Earth Element Beneficiation
Introduction
Dylan Everly is an accomplished inventor based in Golden, Colorado. He has made significant contributions to the field of rare earth element beneficiation. His innovative methods and systems are designed to enhance the efficiency of separating valuable minerals from less desirable materials.
Latest Patents
Dylan Everly holds a patent for "Compounds, methods, and systems for benefication of rare earth elements by flotation and gravity concentration." This patent discloses methods, devices, and systems that effectively separate carbonate gangue from bastnaesite without sacrificing significant rare earth oxide (REO) grade or recovery. The disclosed methods can achieve initial gravity REO recoveries exceeding 90% while rejecting a substantial portion of calcium from flotation concentrates. The systems may also utilize centrifugal concentrators to beneficiate ultra-fine bastnaesite and calcite-bearing flotation concentrates.
Career Highlights
Dylan Everly is associated with the Trustees of the Colorado School of Mines, where he applies his expertise in mineral processing and separation techniques. His work focuses on improving the recovery rates of rare earth oxides while minimizing the loss of valuable materials. His innovative approach has the potential to revolutionize the industry by providing more efficient methods for mineral extraction.
Collaborations
Dylan collaborates with notable colleagues such as Carl Alexander Norgren and Nathanael Williams. Their combined expertise contributes to the advancement of technologies in the field of rare earth element beneficiation.
Conclusion
Dylan Everly's contributions to the field of rare earth element beneficiation demonstrate his commitment to innovation and efficiency. His patented methods and systems are paving the way for more effective mineral processing techniques.
