Company Filing History:
Years Active: 2025
Title: Kyeong Hyeon Jo: Innovator in Waste Water Purification
Introduction
Kyeong Hyeon Jo is a notable inventor based in Daejeon, South Korea. He has made significant contributions to the field of environmental technology, particularly in waste water purification. His innovative methods aim to enhance the efficiency of waste water treatment processes.
Latest Patents
Kyeong Hyeon Jo holds a patent for a "Method for purifying of waste water." This method involves supplying a mixed stream containing wastewater, a nitrile-based monomer, ammonia, and an acid component to a first column. The process includes condensing an upper discharge stream of the first column, which is then supplied to a decanter to separate the stream into a water layer and an organic layer. The components of the organic layer are subsequently supplied to a second column, where a by-product is separated from a lower discharge stream, and the nitrile-based monomer is recovered from an upper discharge stream of the second column. This innovative approach addresses critical challenges in waste water management.
Career Highlights
Kyeong Hyeon Jo is currently employed at LG Chem, Ltd., a leading company in the chemical industry. His work focuses on developing sustainable solutions for waste water treatment, contributing to the company's commitment to environmental responsibility. His expertise in this area has positioned him as a valuable asset to the organization.
Collaborations
Kyeong Hyeon Jo collaborates with talented colleagues, including Suk Yung Oh and Yong Heon Cho. These partnerships enhance the research and development efforts within the company, fostering innovation in waste water purification technologies.
Conclusion
Kyeong Hyeon Jo's contributions to waste water purification exemplify the importance of innovation in environmental technology. His patented method showcases a practical approach to addressing waste water challenges, reflecting his commitment to sustainability and environmental protection.