Department of Chemical Engineering

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1 Department of Chemical Engineering Faculty Professors Kim, Woo-Sik Ph.D.(Yonsei Univ.,) Drug Delivery Systems Lee, Tae Hee Ph.D.(Univ. of Utah,) Transport Phenomena and Fuel Cells Joe, Yung-Il Ph.D.(Yonsei Univ.,) Biochemical Engineering Min, Byoung Ryul Ph.D.(State Univ. of New York) Membrane Separation Technology Shul, Yong Gun Ph.D.(Univ. of Tokyo) Inorganic Materials Synthesis Kim, Jung Hyun Ph.D.(Lehigh Univ.) Polymer Science and Engineering Han, Haksoo Ph.D.(Columbia Univ.) Electronic Materials and Process Moon, Il Ph.D.(Carnegie Mellon Univ.) Process Systems Engineering Park, Jin Won Ph.D.(Tokyo Ins. of Tech.) Environmental Engineering Lee, Chang-Ha Ph.D.(Univ. of Pittsburgh) Separation and Purification Associate Professors Haam, Seungjoo Ph.D.(Ohio State Univ.) Particle Dynamics and Microfluidics Ahn, Ik-Sung Ph.D.(Cornell Univ.) Environmental Biotechnology Kim, EunKyoung Ph.D. (Univ. of Houston. 1950) Polymer Chemistry Assistant Professors Lee, Tai-Gyu Ph.D.(Univ. of Cincinnati) Eco-/Nano- Technology Lee, Kangtaek Ph.D.(Univ. of Minnesota) Molecular Design of Materials Introduction The 21th century will ask for a wider variety of material sources and energy generation to attain the desirable level of health, welfare and the survival of mankind. Graduate program in Chemical Engineering at Yonsei University is a discipline that aims to improve the quality of human life: it develops the transformation systems of materials and energy from sophisticated applications of physical and chemical principles; moreover, it extends to the development of chemical processes that coordinates the environment and bio-life with the transformation systems. Graduate program in Chemical Engineering at Yonsei University will significantly contribute to various areas of the Korea's leading industries, i.e., precision & petroleum chemistry, materials & polymer engineering, energy generation. Furthermore, it will play a leading role in the development of new chemical processes and clean technologies including new energy, new materials, environmental-, life- and molecular engineering. In sum, the graduate program in Chemical Engineering at Yonsei University will be a fore-runner within the College of Engineering in near future. Department Regulations 1. The students must complete a minimum of 2/3 of the required s by taking courses in Chemical Engineering. Upon permission of his/her thesis advisor or the director of graduate program, the students may take the courses provided by other graduate programs. 2. The students must take the courses (including courses by other graduate programs) recommended by his/her thesis advisor or the director of graduate 279

2 program. 3. Once the admission is granted, a student must decide his/her thesis advisor within six months. Once the thesis advisor is decided, the student must present a monthly progress report to the director of graduate program. 4. The students must attend a weekly departmental seminar, and his/her performance will be evaluated in "Chemical Engineering Laboratory" course. The students taking "Directed Research" must register for "Chemical Engineering Laboratory". 5. In order to submit a dissertation, the Ph.D. degree candidates must have a minimum of two oral presentations in a conference and one peer-reviewed journal publication. 6. Admission of the integrated Master and Ph.D. program will be granted based on the document evaluation and the academic ability. Courses DA503 Advanced Fluid Dynamics I 3 Advanced analysis of fluid flow, control and measurement of fluid. Characterization and advanced design of the various fluid systems. DA504 Advanced Thermodynamics I 3 Advanced application of thermodynamic laws in various engineering systems. Thermodynamic characterization of fluids, expansion, compression, and refrigeration, phase equilibrium, chemical equilibrium, and so on. DA505 Advanced Heat Transfer 3 Advanced discussions on conduction, convection, and radiation of heat. Analysis of basic/advanced principles of heat transfer and their applications. DA514 Boundary Layer Theory 3 Analysis of Navier-Stokes equations for momentum, heat, and mass transfer. Emphasis on the transport phenomena inside the boundary layer. DA515 Electrochemical Industry 3 Theories and process analysis and design of electrochemical industry. Theories on the electrolysis and the interfacial electrochemistry. DA516 Environmental Systems Engineering 3 Biological and physiochemical phenomena in natural environments. Treatment technology of environmental contaminations. DA521 Advanced Chemical Engineering Mathematics II 3 Manipulation of matrices, linear programming, eigen value problem, ordinary and partial differential equations and their applications in chemical engineering. DA524 Advanced Polymer Engineering 3 Advanced topics on the structure, synthesis, properties, and characterization of polymers. DA528 Chemical Plant Design 3 Preparation of flow-sheet, economical considerations in chemical plant design. Case study on chemical plant design. DA532 Advanced Electronic Polymer 3 Discussions on the synthesis and 280 YONSEI UNIVERSITY

3 characterization of polymeric electronic materials in semi-conductor processing. DA534 Mixing Engineering 3 Discussions on the fluidization, viscosity change, and heat/mass transfer inside reactors caused by mixing. DA535 Statistical Thermodynamics 3 Development of statistical thermodynamics using the probability theory and statistical mechanics. DA536 Fludization 3 Analysis and industrial application of gas/liquid, gas/solid, and gas/liquid/solid fluidization. DA537 Advanced Organic Synthesis 3 Advanced theory on the chemical synthesis of organic species. DA539 Rheology 3 Theories of viscous flow, viscoelasticity, and non-newtonian fluids. Applications in polymer processing. DA541 Solar Energy Engineering I Discussions of collection, storage, and utilization of solar energy. DA543 Advanced Inorganic Industrial Chemistry 3 Synthetic theory, reactions, and analysis of process in inorganic material synthesis and processing in industry. DA545 Advanced Particle Dynamics 3 Characteristics and analysis of particulate systems. Synthesis of fine particles. Study of dynamic properties of particles in various systems. DA547 Process Automation Methods 3 Hardware, software, and classification of start-up, normal shutdown, emergency shutdown in chemical process automation. DA602 Advanced Chemical Reaction Engineering 3 Stoichiometry in chemical reactions, design of ideal/nonideal reactors, and formulation of mass and energy balance. Analysis of reaction kinetics, etc. DA603 Advanced Process Dynamics 3 Advanced topics on the process control of chemical process. Process analysis and reactions in unsteady state processes. DA604 Advanced Mass Transfer 3 Advanced discussions on the diffusion, distillation, absorption, extraction, humidification, drying, mass transfer equipment, and their applications. DA613 Advanced Organic Industrial Chemistry I 3 Discussions on the mechanism and kinetics of organics reactions. Synthesis of organic products in petroleum industry. DA616 Chemical Process Design 3 Analysis and synthesis of chemical process. Application of computer in chemical process design. DA618 Advanced Petrochemical Engineering 3 Advanced topics on the material synthesis, process, and equipment in petrochemical industry. 281

4 DA622 Acid and Alkali Industries 3 Topics on the synthesis, process, and equipment in acid and alkali industries. DA625 Adsorption 3 Understanding of adsorption phenomena and its applications; adsorption equilibrium, surface physical-chemistry, interpretation of adsorbed substances transfer, chromatographic theory, ion exchange. DA643 Biomedical Engineering 3 Topics on the applications of chemical engineering principles in bio-materials. DA643 Environmental Engineering 3 Discussions on the physical, chemical, and biological aspects of environmental systems. Mass and energy transport in ecological system. Treatment of pollutants. DA638 Materials Engineering 3 Chemical engineering approach to synthesis and processing of materials. Emphasis on the sol-gel materials. DA642 Advanced Biochemical Engineering 3 Discussions on the chemical processes using enzymes and microbials, enzyme reaction kinetics, analysis of microbial growth, theory of biochemical reactions, etc. DA644 Catalytic Reaction Kinetics 3 Reaction mechanism, surface reaction, adsorption kinetics, and diffusion in catalytic reactions. DA646 Inorganic Materials Engineering 3 Topics on the functional inorganic materials and semi-conductor materials and their applications. DA652 Surface Characterization 3 Discussions on the surface characterization technique and its applications; manufacturing of polymer, catalyst, and new materials. DA653 Design of Functional Materials 3 Discussions on the functional materials, environmentally benign materials, semiconductor materials, sensing materials, and conducting materials. DA660, 661, 662 Individual Study I, II, III 2 /ea. DA699 Directed Research I 1 Guidance by thesis advisor on the research progress in the last semester of Masters program. DA702 Gas Dynamics 3 Analysis of steady and unsteady flow of compressible fluids. DA703 Multicomponent Thermodynamics 3 Thermodynamics, phase equilibria, and chemical reaction equilibria in multicomponent solution. DA705 Mass Transfer Operations 3 Discussions on the theory, analysis, and methods of mass transfer operations. DA711 Fertilizer Industries 3 Discussions on the properties, reactants, synthesis, composition, and reactions of fertilizer. DA712 Boundary Value Problems 3 Setting up and solving partial differential equations for chemical engineering problems. Orthogonal functions, Fourier 282 YONSEI UNIVERSITY

5 series, Bessel functions, Legendre polynomials. DA714 Non-linear System Analysis 3 Setup and solution of ordinary and partial differential equations in non-linear systems. DA715 Optimization 3 Discussions on the optimization of chemical processes. DA716 Combustion Engineering 3 Chemical equilibrium, Arrhenius Law, chemistry and physics of combustion, diffusion flame, premixed flame, thermal explosion, ignition/extinction, combustion efficiency, and emission. DA721 Computational Methods in Chemical Engineering 3 Utilization of computers on the chemical engineering calculations DA726 Nuclear Chemical Engineering 3 Discussions on the chemical engineering approach to nuclear energy. Current trends in nuclear energy research and applications. DA731 Non-Newtonian Fluid Dynamics 3 Derivation of governing equations for non- Newtonian fluids. Heat and mass transfer in non-newtonian fluids. DA734 Turbulence 3 Phenomenological and statistical analysis of turbulence. Turbulence models of heat and mass transfers and their applications. DA739 Biocatalysis 3 Properties and applications of biocatalysts such as enzymes and microorganisms. Design of biocatalytic reactor. DA742 Catalyst Engineering 3 Characterization and synthesis of catalyst/support. Poisoning and kinetics of catalytic reactions, etc. DA744 Adsorption Process Engineering 3 Discussions on the unit operations in adsorption process. DA747 Irreversible Thermodynamics 3 Stability in thermodynamic equilibrium, fluid dynamics, and chemical reaction. Applications in environmental and biological engineering. DA749 Membrane Separation Technology 3 Definition, classification, structural study of various membrane types. Design, principles, and manufacture of membrane separation systems. DA801 Process Modeling and Simulation 3 Dynamic property analysis of valve, mixer, heat exchanger, distillation tower and determination of stability. DA803 Thermodynamics of Chemical Reaction 3 Discussions on the thermodynamics of chemical reaction in gas, liquid, and solid phases. DA804 Multicomponent Separation Techniques 3 Mass transfer, chemical reactions between gas/liquid/solid phases. Unit operations in multicomponent systems and the consequent changes in their physical/chemical characteristics. DA812 Interfacial Phenomena 3 Topics on the fluid dynamics and heat/mass 283

6 transfer at interface. Selection of mathematical models and their applications. DA815 Organic Chemicals Industry 3 Discussions on the synthesis of organic fine chemicals. DA816 Environmental Policy 3 Investigation of environmental problems arise from industrialization and urbanization. Discussions on the new approaches to the nation's land development and urban planning to achieve the harmony between mankind and nature. DA817 Reactor Analysis and Design 3 Chemical reaction kinetics in heterogeneous systems, non-ideal reactor analysis, and fluid mixing. DA818 Electrothermal Industries 3 Discussions on the industries using physical and chemical changes from electric heat. DA822 Safety and Reliability Analysis 3 Topics on the analysis of stability and reliability in chemical processes such as fault tree analysis, failure modes and effects analysis. DA824 Topics in Process Systems Engineering 3 Discussions on the systematic design and operation of chemical process. DA826 Advanced Energy Engineering 3 Characteristics, utilization, saving of energy resources. Development of alternative energy. DA827 Chemical Technology of Coal 3 Topics on the characteristics, decomposition, and gasification of coals. DA833 Water Pollution Control Engineering 3 Discussions on the water pollution sources, phenomena, and control technologies; design, operation, and analysis of various waste water treatment devices/processes. DA834 Air Pollution Control Engineering 3 Discussions on the air pollution sources, phenomena, and control technologies; gas and particulate control devices and their principles. DA835 Solid Waste Treatment Technology 3 Discussions on the solid waste sources, phenomena, treatment, and recycle technologies. DA837 Properties of Polymer 3 Discussions on the relation between the structure and physical and mechanical properties of polymers. DA838 Colloid Engineering 3 Characteristics, stability, and synthesis of various types of colloids. Discussions on the applications of colloids to the bio, ceramic, emulsion, surface engineering. DA842 Catalytic Reactor Design 3 Analysis and design of catalytic reactor design based on kinetics and heat/mass transfer. DA843 Semiconductor Processes and Materials 3 Understanding the thin film synthesis and unit operations in semiconductor and 284 YONSEI UNIVERSITY

7 electronic device fabrication. DA845 Ecological Engineering 3 Basic principles of ecology and its applications on the technology, industry, environment, and economics. DA860, 861, 862 Individual Study IV, V, and VI 2 /ea. DA Chemical Engineering Laboratory I-IV 3 /ea. Topics of research planning, thesis writing, and presentation skills in lecture and seminar and advanced laboratory. DA899 Directed Research 1 Guidance by the director of graduate program on the research progress for Ph.D. students. 285

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