Zobrazeno 1 - 10
of 54
pro vyhledávání: '"Hwimin Seo"'
Autor:
Jong Hyeak Choe, Jeoung Ryul Park, Yun Seok Chae, Dae Won Kim, Doo San Choi, Hyojin Kim, Minjung Kang, Hwimin Seo, Yong-Ki Park, Chang Seop Hong
Publikováno v:
Communications Materials, Vol 2, Iss 1, Pp 1-8 (2021)
Metal organic frameworks (MOFs) are promising for CO2 capture. Here, the Mg2(dobpdc) MOF is synthesized as micron-sized beads with a silane coating resulting in > 11 wt% CO2 absorption, which is retained after three days in a humid environment at 140
Externí odkaz:
https://doaj.org/article/5c97115ee21744ca86f7a693f690470c
Autor:
Woosung Choi, Kyungmin Min, Chaehoon Kim, Young Soo Ko, Jae Wan Jeon, Hwimin Seo, Yong-Ki Park, Minkee Choi
Publikováno v:
Nature Communications, Vol 7, Iss 1, Pp 1-8 (2016)
Carbon dioxide capture technologies have been implemented as a strategy to alleviate the environmental costs of CO2 emissions. Here, the authors synthesize a functionalized-polyethyleneimine/silica adsorbent for post-combustion CO2 capture that exhib
Externí odkaz:
https://doaj.org/article/1d5fffe819b34e7b973eddd07405c3e8
Autor:
Yong-Ki Park, Abdelghafour Zaabout, Hwimin Seo, Chaitanya Dhoke, Shahriar Amini, Schalk Cloete, Leyne Demoulin
Publikováno v:
Industrial & Engineering Chemistry Research. 59:22281-22291
This paper reports the experimental demonstration of the novel swing adsorption reactor cluster (SARC) concept in a multistage fluidized bed reactor with inbuilt heat-transfer surfaces for postcomb...
Autor:
Ki Hyuk Kang, Pill Won Seo, Chul Wee Lee, Min-Chul Chung, Seung Ju Han, Hwimin Seo, Narae Kang, Gyoo Tae Kim, Sunyoung Park, Ngoc Thuy Nguyen
Publikováno v:
Journal of Catalysis. 384:106-121
A practical approach to enhancing the performance of dispersed catalysts during slurry-phase hydrocracking is the modification of the ligand structure of the catalyst precursor. An oil-soluble Mo precursor with triphenylphosphine ligands (Mo-TPP) was
Publikováno v:
Journal of Industrial and Engineering Chemistry. 76:1-16
MoS2 is known as core material for the hydroconversion of heavy oil in petroleum refinery due to its superior coke suppression and desulfurization activities. With the recent interest in applying MoS2 to slurry-bed reactors, it has become important t
Autor:
Schalk Cloete, Richard Blom, Ignacio Luz, Shreenath Krishnamurthy, Shahriar Amini, Yong-Ki Park, Hwimin Seo, Chaitanya Dhoke, Abdelghafour Zaabout, Mustapha Soukri
Publikováno v:
Chemical Engineering Journal
Adsorption-based post-combustion CO2 capture is enjoying significant research attention due to its potential for significant reductions in energy penalty, cost and environmental impact. Recent sorbent development work has focussed on polyethyleneimin
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::a9b87fb615727c1d5979e9beb1682953
https://hdl.handle.net/11250/2685238
https://hdl.handle.net/11250/2685238
Publikováno v:
Industrial & Engineering Chemistry Research. 57:10591-10600
A uniform nanoplate-like MgO-based sorbents were prepared with eitelite and hydromagnesite intergrowing each other, and their CO2 capture capacity was evaluated for fast CO2 absorption in the therm...
Autor:
In Kyu Song, Na Young Kang, Jongyoon Bae, Gong Sujin, Sunyoung Park, Deuk Soo Park, Ung Gi Hong, Won Choon Choi, Yong-Ki Park, Jongwoo Kim, Seohyun Sim, Hwimin Seo
Publikováno v:
Molecular Catalysis. 436:164-173
Propane dehydrogenation in oxygen free environment over alumina-supported chromium oxide catalysts with different chromium loading was studied within short time-on-stream range for the fluidized moving bed applications. For this purpose, a series of
Autor:
Hye-Mi Kim, Yong-Ki Park, Kiwoong Kim, Daejin Kim, Na Young Kang, Da Young Min, Won Choon Choi, Hwimin Seo, Sunyoung Park
Publikováno v:
Energy Procedia. 114:2410-2420
A multi-stage fluidized bed process for CO 2 capture is a novel process for reducing regeneration energy. This process is consist of low-, mid-, and high-temperature stage. Each stage has an absorber and a regenerator. Solid absorbents circulating in