This inventor holds 1 USPTO granted patent. Top assignees: Korea Atomic Energy Research Institute, Korea Hydro Nuclear Power Co., Ltd.. Active years: 2013.
Company Filing History:


Years Active: 2013
Title: Innovations by Tae Kyo Lee in Radioactive Waste Processing
Introduction
Tae Kyo Lee, an inventive mind based in Pohang-si, South Korea, has made significant contributions to the field of nuclear waste management. He holds a patent for a pioneering method that addresses the separation of group II nuclides from radioactive waste lithium chloride salt.
Latest Patents
His sole patent describes a novel approach for separating group II nuclides while also recovering pure lithium chloride. The method involves injecting lithium oxide into lithium chloride salt that contains group II nuclides, resulting in a transformation of these nuclides into thermally-stable oxides or oxychlorides. Following this, the innovative process vaporizes and condenses the lithium chloride salt under reduced pressure conditions, successfully isolating the group II nuclides and reclaiming renewable lithium chloride. This advancement presents a notable advantage as it allows for the conversion of less stable chlorides into more stable forms that can be easily managed without introducing impurities.
Career Highlights
Tae Kyo Lee has honed his expertise by working with esteemed institutions such as the Korea Atomic Energy Research Institute and Korea Hydro & Nuclear Power Company Ltd. His experience in these organizations has considerably influenced his inventive capabilities in developing sustainable practices for nuclear waste treatment.
Collaborations
Throughout his career, Lee has had the opportunity to collaborate with notable colleagues, including Hee Chul Eun and Yung Zun Cho. These partnerships have likely contributed to his innovative achievements and provided a platform for shared knowledge and expertise.
Conclusion
Tae Kyo Lee’s advancements in the separation of group II nuclides from radioactive waste represent a meaningful contribution to the field of nuclear energy and waste management. His work not only helps in dealing with radioactive materials efficiently but also showcases the ongoing innovations in sustainable resource recovery.