Hydrogen is considered as one of the most important energy ...

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Hydrogen is considered as one of the most important energy carriers for the future not only as raw chemical material but also as the clean energy source. An integrated gasification combined cycle (IGCC) is a technology that uses a gasifier to turn coal and other carbon based fuels into syn-gas. After CO 2 capture, the effluent H 2 mixture gas will be out in the range of 25-35 atm. The recovered H 2 can be applied to hydrogen turbine (IGCC with CCGT) or integrated gasification fuel cell (IGFC) 1 - Collaboration with Dr. HW Ahn & Prof. S.Brandani (Adsorption, 2014 & 2015, Chem. Eng. J, 2014, Ind. Eng. Chem. Res, 2014, Korean J. Chem. Eng. 2014 ) - Experimental PSA (one PhD student) Simulation of Selexolwith Claus (two MS students & Engineer) - Dry sorption capture: Collaboration (2015-2018) with KIER and Prof. C.E. Snape, Univ. of Nottingham) PVSA (one PhD student ) Enthalpy flow diagram - Exergy analysis depending on the variation of coal quality in IGCC (with Prof. Min Oh; Energy 2014) - IGCC with CO 2 capture (one PhD student) Shell entrained flow gasifier Mole fraction change of gas phase in gasifier - Dynamic simulation for IGCC gasifier with membrane wall (with Prof. Min Oh; Applied Energy, 2014): 2015 PSE Model-based Innovation Prize - Gasifier efficiency with various coals (one PhD student) Pre-combustion CO 2 capture: SEWGSR (one PhD student)

Transcript of Hydrogen is considered as one of the most important energy ...

Page 1: Hydrogen is considered as one of the most important energy ...

§ Hydrogen is considered as one of the most important energy carriers for the future not only as raw chemicalmaterial but also as the clean energy source.

§ An integrated gasification combined cycle (IGCC) is a technology that uses a gasifier to turn coal and othercarbon based fuels into syn-gas.

§ After CO2 capture, the effluent H2 mixture gas will be out in the range of 25-35 atm. The recovered H2 can beapplied to hydrogen turbine (IGCC with CCGT) or integrated gasification fuel cell (IGFC)

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- Collaboration withDr. HW Ahn & Prof. S.Brandani(Adsorption, 2014 & 2015, Chem. Eng. J, 2014, Ind. Eng. Chem. Res, 2014,Korean J. Chem. Eng. 2014 )- Experimental PSA (one PhD student)

Simulation of Selexolwith Claus (two MS students & Engineer)- Dry sorption capture: Collaboration (2015-2018)

with KIER and Prof. C.E. Snape, Univ. of Nottingham)

PVSA (one PhD student)

Enthalpy flow diagram- Exergy analysis depending on the variation of coal quality in IGCC

(with Prof. Min Oh; Energy 2014)- IGCC with CO2 capture (one PhD student)

Shell entrained flow gasifier Mole fraction change of gas phase in gasifier- Dynamic simulation for IGCC gasifier with membrane wall

(with Prof. Min Oh; Applied Energy, 2014): 2015 PSE Model-based Innovation Prize- Gasifier efficiency with various coals (one PhD student)

Pre-combustion CO2 capture:SEWGSR (one PhD student)

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Convergence Technology Master Track for CCUS Connected with Policy

§ Graduate-level education program for the manpower cultivation specialized on the CCUS/energy technology and the climate change policy

- Special education program on CCUS & environmental policy- Research on CCUS technology cooperated with industry

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§ Supported by Korean Ministry of Trade, Industry and Energy§ Period: 2015.5 ~ 2020. 6 (5 yrs)§ Budget: Total 2.6 M USD (= 0.52 M USD/yr)

§ Multidisciplinary education program: Chem. Biomol. Eng. (PI) / Mater. Sci. Eng. / Inform. Ind. Eng. / Economics

§ Number of faculties engaged: 15 (dual position) § Number of students engaged: 31 (9 Ph.D. + 22 Master)§ Number of industry engaged: 7 (GS power, Daewoo Const., …)§ Special Classes: Advances in CO2 reduction / Experiment on CO2 separation and

utilization / Energy economics / Resource economics / Energy and environment

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Master Program for Integrated Engineering

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The program was developed with thegovernment, and participating companies,universities, and research centers to design the mostoptimized master courses.

One of the unique parts is to integratechemical and mechanical engineering due to theneeds in Korean industrial fields. The curriculum wasalso developed with engineering companies to buildthe efficient and optimized courses to have strongfield-implemented capability.

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Department of Chemical and Biomolecular Engineering http://web.yonsei.ac.kr/sepapuri

1. Global Campus -Residential College System-International College-International Summer University-Songdo Language Institute-Freshman Education

2. R&D Park (2nd stage)-Global Corporation R&D Center

3. Joint University Campus (2nd stage)

4. Global Academic Village

5. Other Zones- Residential- Refresh - Culture- Sports Complex

Campus  S i z e :   1 . 8 km 2 ( 4 4 5  Ac r e s )   &   0 . 9   B i l l i o n  USD  P r o j e c t

Since  1885Seoul  Campus

The Yo nse i Songdo G l oba l Ac ade m i c Com pl e x S i nc e 2012