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Individual Labs

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Energy and Environmental Engineering Lab.

Professor

  • Professor Daewoon Jeong

Available Equipment

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No. 1
Auto Chem
Location
  • Room 205, Building 50 (Engineering Laboratory 1)
Specifications
  • Temperature control range: room temperature to 1100°C; equipped with TCD detector; capable of supplying various gases.
Description
  • Catalyst characterization equipment
Applications
  • Physicochemical characterization of catalysts (e.g., TPR, TPO, TPD, OSC) and evaluation of surface reaction activity.
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No. 2
ASAP 2020 Plus
Location
  • Room 205, Building 50 (Engineering Laboratory 1)
Specifications
  • Capable of BET surface area analysis, pore analysis, and adsorption/desorption isotherm measurements.
Description
  • Catalyst characterization equipment
Applications
  • Analysis of surface area and pore structure characteristics of catalysts and adsorbents.
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No. 3
Lab-scale catalytic reactor
Location
  • Room 205, Building 50 (Engineering Laboratory 1)
Specifications
  • Capable of high-temperature and high-pressure reactions, equipped with temperature, pressure, and flow control systems.
Description
  • Reactor for reforming pyrolysis oil from waste plastics.
Applications
  • Hydrogen production reaction experiments, catalyst performance evaluation, reforming reaction studies.
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No. 4
WGS/reforming 반응기
Location
  • Room 205, Building 50 (Engineering Laboratory 1)
Specifications
  • Capable of high-temperature and high-pressure reactions; equipped with temperature, pressure, and flow control systems.
Description
  • Catalytic reactor for hydrogen production.
Applications
  • Hydrogen production reaction experiments, catalyst performance evaluation, and reforming reaction research.
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No. 5
Syringe pump
Location
  • Room 205, Building 50 (Engineering Laboratory 1)
Specifications
  • Enables precise flow rate control and injection of various solvents.
Description
  • Syringe pump for consistent reactant injection during catalytic reactions.
Applications
  • Precise liquid sample injection and stable supply control during reaction experiments.
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No. 6
Agilent Micro GC 990
Location
  • Room 205, Building 50 (Engineering Laboratory 1)
Specifications
  • Multi-column system enabling rapid gas analysis, equipped with a μ-TCD detector.
Description
  • Analysis of quench gas generated after catalytic reactions.
Applications
  • Analysis of reaction gas composition, hydrogen concentration measurement, and monitoring of experimental results.
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No. 7
Sintering furnace
Location
  • Room 205, Building 50 (Engineering Laboratory 1)
Specifications
  • Capable of heating above 1200°C; includes atmospheric gas control functionality.
Description
  • Sintering equipment used for impurity removal during catalyst manufacturing stages.
Applications
  • Used for catalyst pretreatment and sintering, heat treatment processes, and catalyst activation.

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