Chemical Reaction Engineering
toward Carbon-Neutral Future

ISCRE29 & APCRE11
10-13 May, 2026
Republic of Korea

Program at a glance
Fundamentals Reaction Mechanism
and Kinetics
1-1 Reaction Mechanism and Kinetics - Fundamental
1-2 Reaction Mechanism and Kinetics - Polymerization
1-3 Reaction Mechanism and Kinetics - Computational
Reactor Modeling
and Design
2-1 Reactor Design - Fundamental
2-2 Reactor Design - Fluidization/Multiphase Flow Reactors
2-3 Reactor Design - Plasma
2-4 Reactor Design - Membrane reactor
2-5 Reactor Design - Electrochemical Reactors
2-6 Reactor Design - Polymerization Reactors
2-7 Reactor Design - Novel Reactors
Process Intensification 3. Process Intensification / TEA / LCA
Applications Heterogeneous/
Homogeneous
Catalysis
4-1. Heterogeneous Catalysis - Thermal
4-2. Heterogeneous Catalysis - Photochemical
4-3. Heterogeneous Catalysis - Electrochemical
4-4. Homogeneous Catalysis
Hydrogen 5-1. Hydrogen Production
5-2. Hydrogen Storage (LOHC, NH3, MeOH etc)
5-3. Hydrogen Transportation
Net-zero CO2
Technologies
6-1. Net-zero CO2 Technologies - CO2 Capture
6-2. Net-zero CO2 Technologies - CO2 Utilization
6-3. Net-zero CO2 Technologies - CO2 Storage
Environmentaly-friendly
and Sustainable
Chemicals
7-1. Sustainable Chemicals - Materials (Zeolite, MOF etc)
7-2. Sustainable Chemicals - Biomass
7-3. Sustainable Chemicals - Waste Valorization
Clean Environmental
Technologies
8. Clean Environmental Technologies