Company Filing History:
Years Active: 2011-2021
Title: Byoung-Gyu Kim: Innovator in Lithium Recovery Technologies
Introduction
Byoung-Gyu Kim is a prominent inventor based in Daejeon, South Korea. He has made significant contributions to the field of lithium recovery technologies, holding a total of six patents. His work focuses on improving the efficiency of lithium adsorption and desorption processes, which are crucial for resource recovery.
Latest Patents
One of his latest patents is a lithium adsorption-desorption apparatus and method. This invention includes multiple reaction tanks arranged in a row, a guide rail at the upper portion of the tanks, and a movable driving unit. The apparatus is designed to enhance the adsorption and desorption of lithium by allowing a large amount of lithium adsorbent to be immersed in a lithium-containing solution. This innovative design accelerates the adsorption process and facilitates the quick desorption of lithium, while also enabling efficient washing of the lithium adsorbent. Another notable patent is a recovery method for useful resources in seawater and brine. This method improves the adsorption and recovery efficiency of trace amounts of resources such as strontium, lithium, and boron, utilizing a magnetic adsorbent composite and a solid-liquid separation process.
Career Highlights
Byoung-Gyu Kim has worked at esteemed institutions such as the Korea Institute of Geoscience and Mineral Resources and the Korea Institute of Geoscience and Material Resources. His research and innovations have significantly advanced the field of resource recovery, particularly in the context of lithium extraction.
Collaborations
Throughout his career, Byoung-Gyu Kim has collaborated with notable colleagues, including Kang-Sup Chung and In-Su Park. These collaborations have contributed to the development of innovative technologies in the field.
Conclusion
Byoung-Gyu Kim is a key figure in the advancement of lithium recovery technologies. His patents and research efforts are paving the way for more efficient resource recovery methods, which are essential for sustainable development.