Hydrothermal synthesis of Cu-Mg-Al hydrotalcite-based catalysts and effect of mixed oxide structure on catalytic activity for water gas shift and sorption-enhanced water gas shift reactions
C.H. Lee, S. Kim, C.W. Yoon, K.B. Lee
Renew. Sustain. Energy Rev., 2021
12
Improvement of cooling performance of water adsorption chiller by using aluminophosphate adsorbent
S.H. Kim, K. Cho, J.-N. Kim, H.T. Beum, H.C. Yoon, C.H. Lee
Microporous Mesoporous Mater., 2020
13
Facile synthesis of carbon-based nanoporous adsorbent exhibiting high ammonia uptake under low pressure range
K. Cho, H.C. Yoon, H.T. Beum, S.H. Kim, C.H. Lee, J.-N. Kim
Microporous Mesoporous Mater., 2020
14
Synthesis of porous carbon derived from poly(vinylidenefluoride) and its adsorption characteristics for CO2 and CH4
H.-Y. Park, C.H. Lee, D.W. Cho, C.-H. Lee, J.-H. Park
Microporous Mesoporous Mater., 2020
15
Unconventional hydrogen permeation behavior of Pd/BCC composite membrane and significance of surface reaction kinetics
C.H. Lee, Y.S. Jo, Y. Park, H. Jeong, Y. Kim, H. Sohn, C.W. Yoon, S.W. Nam, H.C. Ham, J. Han
J. Membr. Sci., 2020
16
Importance of exsolution in transition-metal (Co, Rh, and Ir)-doped LaCrO3 perovskite catalysts for boosting dry reforming of CH4 using CO2 for hydrogen production
J.H. Oh, B.W. Kwon, J. Cho, C.H. Lee, M.K. Kim, S.H. Choi, S.P. Yoon, J. Han, S.W. Nam, J.Y. Kim, S.S. Jang, K.B. Lee, H.C. Ham
Ind. Eng. Chem. Res., 2019
17
A viable membrane reactor option for sustainable hydrogen production from ammonia
Y.S. Jo, J. Cha, C.H. Lee, H. Jeong, C.W. Yoon, S.W. Nam, J. Han
J. Power Sources, 2018
18
Na2CO3-doped CaO-based high-temperature CO2 sorbent and its sorption kinetics
C.H. Lee, S.W. Choi, H.J. Yoon, H.J. Kwon, H.C. Lee, S. Kwon, S.G. Jeon, K.B. Lee
Chem. Eng. J., 2018
19
Characterization of a Pd/Ta composite membrane and its application to a large scale high-purity hydrogen separation from mixed gas
Y.S. Jo, C.H. Lee, S.Y. Kong, K.-W. Lee, C.W. Yoon, S.W. Nam, J. Han
Sep. Purif. Technol., 2018
20
Sorption-enhanced water gas shift reaction for high-purity hydrogen production: Application of a Na-Mg double salt-based sorbent and the divided section packing concept