Location History:
- Cumbria, GB (1996)
- Seascale, GB (2001 - 2003)
Company Filing History:
Years Active: 1996-2003
Title: Innovations of Timothy Nicholas Milner
Introduction
Timothy Nicholas Milner is a notable inventor based in Seascale, GB. He has made significant contributions to the field of decontamination processes, particularly in relation to radioactively contaminated materials. With a total of 3 patents, Milner's work is recognized for its innovative approaches to environmental safety.
Latest Patents
Milner's latest patents focus on the treatment of organic materials and the decontamination of metal. One of his patents describes processes for treating solutions used for the decontamination of radioactively contaminated surfaces. This involves using a reagent that can destroy complexing agents and raising the pH to precipitate the metal from the solution. Additionally, he has developed processes that utilize electromagnetic radiation, including UV or visible radiation, to treat contaminated solutions at ambient temperatures. Another patent outlines a method for decontaminating radioactively contaminated metal by using a reagent solution containing an organic acid and an oxidizing agent, allowing for effective separation of radioactive contaminants.
Career Highlights
Milner is currently associated with British Nuclear Fuels Plc, where he applies his expertise in nuclear safety and environmental protection. His work has been instrumental in advancing methods for handling radioactive materials, ensuring safer practices in the industry.
Collaborations
Milner has collaborated with notable colleagues such as Alexander Hamilton Smith and Peter Jonathan Watson Rance. These partnerships have contributed to the development of innovative solutions in the field of nuclear decontamination.
Conclusion
Timothy Nicholas Milner's contributions to the field of decontamination highlight his commitment to environmental safety and innovation. His patents reflect a deep understanding of complex chemical processes and their applications in real-world scenarios.