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CCUS

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11건의 게시물이 있습니다.

There are a total of 11 posts.

REACT (Redox and electrochemsitry advancing clean technologies) LAB

  • 지도교수김귀용

주요연구

    • 다양한 대상 물질에 대한 전기화학적 분리 기술 개발 / Electrochemical separations
    • 전기화학적 폐수/대기 오염 정화기술 개발 / Electrochemical water/air purification
    • 자원(금속자원, 영양염류) 회수 / Resource (metal, nutrient) recovery

Enzyme and Protein Engineering Lab

  • 지도교수김용환

주요연구

    • 구조기반 효소 재설계
    • CO2, CO 전환 효소 재설계 및 효소 이용 공정 설계
    • 리그닌 분해효소 재설계 및 효소 이용 리그닌 분해 공정 설계
    • 효소 이용 화장품 원료 생산 기술 개발
    • C1 gas (CO2, CO) enzymatic conversion Production of formate from CO and CO2 using enzymes
    • Lignin refinery Lignin de-polymerization enzyme development and production of value added aromatics from lignin
    • Application of enzymes for cosmetics Whitening cosmetics using melanin decolorizing enzyme

Biochemical Engineering Lab

  • 지도교수박성훈

주요연구

    • Bioenergy production
    • Biochemical production
    • Fundamental research
  • 지도교수배효관

주요연구

    • Energy-Neutral Wastewater Treatment
    • Machine Learning-based Process Modeling
    • Biological Carbon Capture
    • Environmental Genomics

Advanced Clean Energy (ACE) Lab.

  • 지도교수서용원

주요연구

    • 가스 하이드레이트(Gas hydrates)
    • 이산화탄소 포집 및 저장(Carbon dioxide capture and storage)
    • 온실 가스(Greenhouse gas)
    • 청정 에너지(Clean energy)
    • 유동안정성 확보(Flow assurance)

Advanced Nanocatalysis Lab

  • 지도교수안광진

주요연구

    • Nanocatalysis: Size and Shape Effects, Strong Metal Support Interaction, Single-Atom Catalyst, In situ Characterizations
    • Carbon Neutrality: CO Oxidation, CO2 Conversion (GTL, Fischer-Tropsch), CH4- Conversion (to HCHO, DRM..), CH4 to H2 and Carbon (CNT synthesis)
    • Biomass Conversion: Lignin Valorization, Green Plastics, H2-Fee Hydrodeoxygenation
    • Plastic Up-cycling : Hydrogenolysis of PE and PP, PET glycolysis, Pyrolysis
    • Hydrogen Technology : Liquid Organic Hydrogen Carrier (LOHC), Hydrogen Production via Methane Reforming, Ammonia Decomposition
    • Petrochemical process: Production of Linear Alpha-Olefins, Reductive Hydroformylation, Heavy Oil Upgrading

AI Powered Process Engineering & Automation Lab

  • 지도교수오태훈

주요연구

    • 공정 시스템(Process System)
    • 자동화(Automation)
    • 인공지능(Artificial Intelligence)
    • 거대언어모델(LLM)
    • 수소(Hydrogen)

Organometallic Catalysis Lab

  • 지도교수유창호

주요연구

    Organometallic Catalysis Lab is dedicated to developing greener and sustainable catalysis with inorganic and organometallic principles. Our approaches are based on employing modern concepts of coordination chemistry such as metal-ligand cooperation, second coordination sphere interaction and metal-metal bonding.


    • Homogeneous catalysis employing modern concepts of coordination chemistry
    • Development of novel multi-metallic systems for catalysis
    • Carboxylation of organic molecules using CO2
    • Transformation of bioolefins into value-added chemicals

Applied Biotechnology Lab for Environment (ABLE)

  • 지도교수이창수

주요연구

    • 바이오가스(메탄, 수소)(Biogas (CH4, H2))
    • 생물전기화학시스템(Bioelectrochemical systems)
    • 영양염류 제거(Nutrient removal)
    • 자원 회수(Resource recovery)
    • 환경미생물 군집(Microbial ecophysiology)

Biomimetic Inorganic-Organic Coordination Chemistry

  • 지도교수조재흥

주요연구

    The goal of Biomimetic Inorganic-Organic Coordination Chemistry (BIOCC) Laboratory is to clarify the 'Biological Process' in the reactions of metalloenzymes through the biomimetic system and utilize the biomimetic techniques in medical and environmental applications.


    • Design of model complexes of metalloenzymes
    • Characterization and reactivity studies for biomimetic materials
    • Application for medical (e.g., anti-cancer drug, vasodilation) & environmental materials (e.g., catalyst)