Seoul, South Korea

MahnJung Kim


Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: Innovator Spotlight: MahnJung Kim

Introduction:

MahnJung Kim, based in Seoul, South Korea, is an accomplished inventor known for his innovative contributions to chemical engineering. His work focuses on the regeneration of zeolite catalysts, which are essential in the process of converting acetylene into aromatic compounds. With one patent to his name, Kim is making strides in enhancing the efficiency of catalyst regeneration.

Latest Patents:

MahnJung Kim holds a notable patent titled "Method of regenerating zeolite catalyst for aromatization of acetylene by plasma treatment." This invention outlines a unique method for preparing aromatic compounds from acetylene. The process involves synthesizing aromatic compounds from an acetylene-containing reactant gas while utilizing a zeolite catalyst. Kim's method includes a breakthrough plasma treatment at ambient temperature and pressure, which effectively removes coke deposits that deactivate the catalyst, thus regenerating it for further use.

Career Highlights:

Kim is associated with the Industry-University Cooperation Foundation at Sogang University, an institution renowned for its focus on research and development in various scientific fields. Through his career, he has demonstrated a strong commitment to advancing chemical engineering, particularly in catalyst technology.

Collaborations:

During his tenure at the Industry-University Cooperation Foundation, MahnJung Kim has collaborated with notable colleagues such as Kyoung-Su Ha and Juchan Kim. Together, they work on innovative projects aimed at improving industrial processes through advanced research and development.

Conclusion:

MahnJung Kim is a pioneering inventor whose work in regenerative methods for zeolite catalysts marks a significant advancement in chemical engineering. His dedication to innovation and collaboration in research positions him as a key figure in the pursuit of more efficient chemical processes.

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