Company Filing History:
Years Active: 2019-2024
Title: Hae Gu Park: Innovator in Carbon Dioxide Conversion Technologies
Introduction
Hae Gu Park is a prominent inventor based in Daejeon, South Korea. He has made significant contributions to the field of chemical technology, particularly in the area of carbon dioxide conversion. With a total of 3 patents to his name, Park is recognized for his innovative approaches to energy efficiency and sustainability.
Latest Patents
One of Park's latest patents is titled "Energy-efficient system and method for carbon dioxide conversion." This invention proposes a system for converting carbon dioxide that includes a carbon monoxide generator and a hydrocarbon generator. The carbon monoxide generator utilizes a reverse water gas shift reaction, while the hydrocarbon generator employs a Fischer-Tropsch synthesis reaction. This dual-catalyst approach enhances carbon monoxide yield even at lower temperatures, ultimately increasing hydrocarbon production. Additionally, the energy generated from the exothermic Fischer-Tropsch synthesis reaction is harnessed to power the endothermic reverse water gas shift reaction, thereby improving energy efficiency and reducing operational costs.
Another notable patent is the "Bifunctional catalyst for hydrogenation of carbon dioxide, and method for preparing hydrocarbon by using same." This invention focuses on a bifunctional catalyst that facilitates the conversion of carbon dioxide and hydrogen into hydrocarbons. The catalyst comprises a carbon composite with cobalt and nitrogen atoms, which promotes both the reverse water gas shift reaction and the Fischer-Tropsch synthesis reaction. This innovative catalyst design enhances the overall efficiency of hydrocarbon production from carbon dioxide.
Career Highlights
Hae Gu Park is affiliated with the Korea Research Institute of Chemical Technology, where he continues to advance research in chemical processes and sustainable technologies. His work has garnered attention for its potential impact on reducing greenhouse gas emissions and improving energy efficiency in industrial applications.
Collaborations
Park collaborates with esteemed colleagues such as Ki Won Jun and Sun Mi Hwang, contributing to a dynamic research environment focused on innovative chemical solutions.
Conclusion
Hae Gu Park's contributions to carbon dioxide conversion technologies exemplify the importance of innovation in addressing environmental challenges. His patents reflect a commitment to enhancing energy efficiency and sustainability in chemical processes.