Zobrazeno 1 - 10
of 64
pro vyhledávání: '"Youngjoon Shin"'
Publikováno v:
Journal of The Korean Association of Artificial Intelligence Education. 2:1-12
Autor:
Youngjoon Shin, Gwisik Kim
Publikováno v:
Journal of The Korean Association of Artificial Intelligence Education. 2:1-19
Autor:
Juyoung Mun, Youngjoon Shin
Publikováno v:
Journal of Science Education. 42:214-229
Autor:
Youngjoon Shin, Yoonhyeong Lee, Hyojeong Han, Mi Jeom Kim, Yong-Jin Kim, YunHee Choi, Jae Sik Min, Dong Yup Lee
Publikováno v:
Korean Association For Learner-Centered Curriculum And Instruction. 18:33-60
Autor:
Youngjoon Shin
Publikováno v:
Jounral of Energy and Climate Change Education. 7:133-142
Publikováno v:
Applied Energy. 204:390-402
Based on our previous study on the experimental performance tests of the catalyst-packed type HI thermal decomposer and bayonet type H 2 SO 4 thermal decomposer for a 50 NL-H 2 /h SI test facility, which were directly heated using electrical heating
Publikováno v:
Applied Energy. 173:460-469
A 50 NL-H2/h hydrogen production scale sulfur-iodine (SI) thermochemical process test facility to be operated under a pressurized environment has been constructed in Korea. This study focused on the catalyst-packed type HI thermal decomposer and bayo
Autor:
Ki-Young Lee, Jaehyuk Choi, Jong-Ho Kim, Youngjoon Shin, Seok-Hun Yoon, Yong-Suk Choi, Tae Hoon Lee, Se-Hyun Jang
Publikováno v:
Journal of the Korean Society of Marine Engineering. 40:157-164
In this study, researchers performed preliminary design and numerical analysis for a pilot-scale helium heating system in- tended to support full-scale construction for a sulfur-iodine (SI) cycle. The helium heat exchanger used a liquefied petroleum
Autor:
Youngjoon Shin, Ji-hoon Ha
Publikováno v:
Journal of Korean Elementary Science Education. 35:65-77
Publikováno v:
International Journal of Hydrogen Energy. 40:13264-13271
The sulfur-iodine (SI) cycle to produce hydrogen from water requires a HIx multistage distillation column to obtain hyperazeotropic hydriodic acid vapor as a top product that can be afterward decomposed into hydrogen and iodine. To design a HIx multi