김지용 교수
Ji Yong Kim
성균관대학교 화학공학부 · 화학공학
연구실 소개
김지용 교수의 연구실은 고성능 분석 기술과 물리적 시스템의 수치 모델링을 기반으로 한 혁신적 연구를 수행하고 있습니다. 특히, 어류 조직 내 산화성 물질을 정밀 분석하기 위한 HPLC 기반 반응 조건 최적화, 유용한 금속 이온의 전기화학적 분離 및 전송 메커니즘 해석, 그리고 복잡한 기하 구조를 가진 물리 시스템을 위한 점군 기반 신뢰도 높은 확산 모델링 기술 개발에 주력하고 있습니다. 이는 환경 모니터링, 청정 에너지 기술, 그리고 고도화된 센서 데이터 처리에 응용 가능합니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
8The reaction conditions of 1,3-diethyl-2-thiobarbituric acid (DETBA)-malonaldehyde (MA) adduct formation were examined in order to analyze MA in fish tissue by high-performance liquid chromatography. A reaction mixture containing 4 mM butyl hydroxytoluene was heated at 100 degrees C for 150 min and the DETBA-MA adduct formed was separated by a Inertsil ODS column for 20 min. The detection limit was 5 pmol.
In the present work, an electrowinning process in the LiCl-KCl/Cd system is considered to model and analyze the electrotransport of the actinide and rare-earth elements. A simple dynamic modeling of this process was performed by taking into account the material balances and diffusion-controlled electrochemical reactions in a diffusion boundary layer at an electrode interface between the molten salt electrolyte and liquid cadmium cathode. The proposed modeling approach was based on the half-cell
This study introduces a novel point-wise diffusion model that processes spatio-temporal points independently to efficiently predict complex physical systems with shape variations. This methodological contribution lies in applying forward and backward diffusion processes at individual spatio-temporal points, coupled with a point-wise diffusion transformer architecture for denoising. Unlike conventional image-based diffusion models that operate on structured data representations, this framework en
The airborne LiDAR which was introduced in the early 2000's provides the point data. The new methods for the verification of LiDAR materials with high accuracy which is different from the existing airborne survey are needed. In accordance with the rules of airborne laser survey which were enacted in 2009, the verifications by three methods of Unmeasured Rate and point accuracy, point density have been executed, and Unmeasured Rate is to evaluate the rate for the presence of points within uniform
As the world seeks effective solutions to mitigate climate change, various carbon mitigation technologies have gained attention for their potential to reduce industrial emissions. Among these, carbon capture and utilization (CCU) has emerged as a promising technology for achieving net-zero emissions and is being developed and implemented globally. CCU captures CO2 from numerous sources and reuses it in processes such as industrial chemical production. Among industrial sectors, the refinery secto
대표 연구 분야
김지용 교수의 연구를 Nubint에서 더 깊이 살펴보세요
이 연구실의 논문을 앱에서 열어 AI와 함께 읽고, 핵심을 요약하고, 내 글에 인용하세요.