This inventor holds 2 USPTO granted patents. Top assignee: University of California. Active years: 2002.
Company Filing History:
Years Active: 2002
Title: Innovations by David L Hipple
Introduction
David L Hipple is an accomplished inventor based in Livermore, CA (US). He has made significant contributions to the field of molten salt reactors, particularly in the area of contaminant removal from spent salts. With a total of 2 patents, his work focuses on improving the safety and efficiency of nuclear waste management.
Latest Patents
Hipple's latest patents include innovative methods for removing actinide contaminants and metal contaminants from spent salts in molten salt oxidation (MSO) reactors. The first patent describes a method for removing actinide contaminants, such as uranium and thorium, from spent salt. This process involves analyzing the spent salt, dissolving it in water, and adding reagents to precipitate the contaminants. The resulting materials are filtered and packaged for disposal, achieving over 90% removal efficiency. The second patent outlines a method and apparatus for removing metal contaminants, which similarly involves analyzing, dissolving, and precipitating the contaminants. This method also achieves over 90% removal efficiency and allows for the re-use of salt solutions with a carbonate concentration greater than 20%.
Career Highlights
David L Hipple is affiliated with the University of California, where he continues to advance research in nuclear waste management. His innovative approaches have garnered attention in the scientific community, contributing to safer practices in handling radioactive materials.
Collaborations
Hipple collaborates with notable colleagues, including Peter C Hsu and Erica H Von Holtz. Their combined expertise enhances the research and development of effective solutions for nuclear waste challenges.
Conclusion
David L Hipple's contributions to the field of molten salt reactors and contaminant removal are noteworthy. His patents reflect a commitment to improving safety and efficiency in nuclear waste management.
