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Featured researches published by Won Jun Jang.


Green Chemistry | 2018

Key properties of Ni–MgO–CeO2, Ni–MgO–ZrO2, and Ni–MgO–Ce(1−x)Zr(x)O2 catalysts for the reforming of methane with carbon dioxide

Won Jun Jang; Hak Min Kim; Jae Oh Shim; Seong Yeun Yoo; Kyung Won Jeon; Hyun Suk Na; Yeol Lee; Dae Woon Jeong; Jong Wook Bae; In Wook Nah; Hyun Seog Roh

CeO2, ZrO2, and CeO2–ZrO2 supported on MgO-promoted Ni catalysts are developed and applied to the reforming of methane with carbon dioxide. The catalysts are prepared by the one-step co-precipitation/aging method and characterized through various techniques such as X-ray diffraction, Brunauer–Emmet–Teller measurements, pore distribution, X-ray photoelectron spectroscopy, X-ray absorption near edge spectroscopy, extended X-ray absorption fine structure analysis, H2-temperature programmed reduction, H2-chemisorption, Raman analysis, thermogravimetry analysis, and pulse H2–CO2 reactions. Ni–MgO–CeO2 shows the smallest Ni particle size and the particle size decreases with increasing ZrO2 content. Ni–MgO–Ce0.6Zr0.4O2 exhibits the largest oxygen storage capacity among the prepared catalysts. The size of the Ni particles and the oxygen storage capacity are found to be the primary and secondary key factors that influence the catalytic performance, respectively. The turnover frequency is dependent on the size of the Ni particles, but the catalytic performance is affected by the number of Ni active sites, which is estimated from the reduction degree and Ni particle size. Overall, the Ni–MgO–Ce0.8Zr0.2O2 catalyst shows the best performance owing to the high reduction degree and small Ni particle size.


International Journal of Hydrogen Energy | 2014

Hydrogen production from low temperature WGS reaction on co-precipitated Cu–CeO2 catalysts: An optimization of Cu loading

Dae Woon Jeong; Hyun Suk Na; Jae Oh Shim; Won Jun Jang; Hyun Seog Roh; Un Ho Jung; Wang Lai Yoon


Renewable Energy | 2014

Deoxygenation of oleic acid over Ce(1–x)Zr(x)O2 catalysts in hydrogen environment

Jae Oh Shim; Dae Woon Jeong; Won Jun Jang; Kyung Won Jeon; Byong-Hun Jeon; Seung Yeon Cho; Hyun Seog Roh; Jeong Geol Na; Chang Hyun Ko; You Kwan Oh; Sang Sub Han


International Journal of Hydrogen Energy | 2015

Hydrogen production from water-gas shift reaction over Ni-Cu-CeO2 oxide catalyst: The effect of preparation methods

Ajay Jha; Dae Woon Jeong; Won Jun Jang; Yeol Lee; Hyun Seog Roh


Chemical Engineering Journal | 2015

Performance of spinel ferrite catalysts integrated with mesoporous Al2O3 in the high temperature water-gas shift reaction

Dae Woon Jeong; Ajay Jha; Won Jun Jang; Won Bi Han; Hyun Seog Roh


Chemical Engineering Journal | 2016

Effect of preparation method on the oxygen vacancy concentration of CeO2-promoted Cu/γ-Al2O3 catalysts for HTS reactions

Jae Oh Shim; Hyun Suk Na; Ajay Jha; Won Jun Jang; Dae Woon Jeong; In Wook Nah; Byong-Hun Jeon; Hyun Seog Roh


Renewable Energy | 2015

Optimization of a highly active nano-sized Pt/CeO2 catalyst via Ce(OH)CO3 for the water-gas shift reaction

Dae Woon Jeong; Won Jun Jang; Jae Oh Shim; Won Bi Han; Hak Min Kim; Yeol Lee; Jong Wook Bae; Hyun Seog Roh


Journal of Power Sources | 2017

Alkali resistant Ni-loaded yolk-shell catalysts for direct internal reforming in molten carbonate fuel cells

Won Jun Jang; Young Jun Hong; Hak Min Kim; Jae Oh Shim; Hyun Seog Roh; Yun Chan Kang


International Journal of Hydrogen Energy | 2018

Low temperature steam reforming of methane using metal oxide promoted Ni-Ce0.8Zr0.2O2 catalysts in a compact reformer

Hak Min Kim; Won Jun Jang; Seong Yeun Yoo; Jae Oh Shim; Kyung Won Jeon; Hyun Suk Na; Yeol Lee; Byong-Hun Jeon; Jong Wook Bae; Hyun Seog Roh


Applied Catalysis A-general | 2018

Effect of alkali and alkaline earth metal on Co/CeO2 catalyst for the water-gas shift reaction of waste derived synthesis gas

Yeol Lee; Ajay Jha; Won Jun Jang; Jae Oh Shim; Chandrashekhar V. Rode; Byong-Hun Jeon; Jong Wook Bae; Hyun Seog Roh

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