Kyung-Won Jeon

Kyung-Won Jeon

Yonsei University

H-index: 20

Asia-South Korea

About Kyung-Won Jeon

Kyung-Won Jeon, With an exceptional h-index of 20 and a recent h-index of 20 (since 2020), a distinguished researcher at Yonsei University, specializes in the field of Environmental Engineering, Chemical Engineering, Waste to Energy, Hydrogen Production, Biofuel.

His recent articles reflect a diverse array of research interests and contributions to the field:

Review on the production of renewable biofuel: Solvent-free deoxygenation

Recent Development of Catalysts for the Nitrate Reduction Reaction: Electrochemical Solution to Produce Ammonia

Thermodynamic approach for hydrogen production from the steam reforming reaction of aromatic hydrocarbons (BTX)

Design of high-temperature shift using waste-derived synthesis gas: Thermodynamic approach and practical reaction optimization

Hydrogen production from waste-derived synthesis gas over Ni (x) Fe (3-x)-CeO2 catalyst: optimization of Ni/Fe ratio

Facile synthesis of CuFe2O4 catalyst by the electrospinning method to produce hydrogen via the water gas shift of waste-derived syngas

Ultra-stable porous yolk-shell Ni catalysts for the steam reforming of methane with alkali poisoning

Development of Co–Nb–CeO₂ Catalyst for Hydrogen Production from Waste-Derived Synthesis Gas Using Techno-Economic and Environmental Assessment

Kyung-Won Jeon Information

University

Position

___

Citations(all)

959

Citations(since 2020)

830

Cited By

404

hIndex(all)

20

hIndex(since 2020)

20

i10Index(all)

31

i10Index(since 2020)

29

Email

University Profile Page

Google Scholar

Kyung-Won Jeon Skills & Research Interests

Environmental Engineering

Chemical Engineering

Waste to Energy

Hydrogen Production

Biofuel

Top articles of Kyung-Won Jeon

Review on the production of renewable biofuel: Solvent-free deoxygenation

2024/5/1

Recent Development of Catalysts for the Nitrate Reduction Reaction: Electrochemical Solution to Produce Ammonia

2024/3/25

Kyung-Won Jeon
Kyung-Won Jeon

H-Index: 12

Thermodynamic approach for hydrogen production from the steam reforming reaction of aromatic hydrocarbons (BTX)

International Journal of Hydrogen Energy

2024/1/2

Design of high-temperature shift using waste-derived synthesis gas: Thermodynamic approach and practical reaction optimization

Energy Conversion and Management

2023/10/1

Hydrogen production from waste-derived synthesis gas over Ni (x) Fe (3-x)-CeO2 catalyst: optimization of Ni/Fe ratio

International Journal of Hydrogen Energy

2023/7/5

Facile synthesis of CuFe2O4 catalyst by the electrospinning method to produce hydrogen via the water gas shift of waste-derived syngas

Journal of Environmental Chemical Engineering

2023/6/1

Kyung-Won Jeon
Kyung-Won Jeon

H-Index: 12

Jae-Oh Shim
Jae-Oh Shim

H-Index: 23

Ultra-stable porous yolk-shell Ni catalysts for the steam reforming of methane with alkali poisoning

Chemical Engineering Journal

2023/2/15

Development of Co–Nb–CeO₂ Catalyst for Hydrogen Production from Waste-Derived Synthesis Gas Using Techno-Economic and Environmental Assessment

2022

Elucidating the effect of Ce/Zr ratio on high temperature shift activity with sulfur poisoning

Journal of Industrial and Engineering Chemistry

2022/11/25

Promotion of methanation suppression by alkali and alkaline earth metals in Ni-CeO2 catalysts for water–gas shift reaction using waste-derived synthesis gas

Fuel Processing Technology

2022/6/15

Optimization of a renewable hydrogen production system from food waste: A combination of anaerobic digestion and biogas reforming

Waste Management

2022/5/1

Development of Co–Nb–CeO2 Catalyst for Hydrogen Production from Waste-Derived Synthesis Gas Using Techno-Economic and Environmental Assessment

ACS Sustainable Chemistry & Engineering

2022/4/29

Deoxygenation of non-edible fatty acid for green diesel production: Effect of metal loading amount over Ni/MgO–Al2O3 on the catalytic performance and reaction pathway

Fuel

2022/3/1

Effects of niobium addition on active metal and support in Co–CeO2 catalyst for the high temperature water gas shift reaction

Journal of Industrial and Engineering Chemistry

2021/8/25

Synthesis gas production from carbon dioxide reforming of methane over Ni-MgO catalyst: Combined effects of titration rate during co-precipitation and CeO2 addition

Fuel Processing Technology

2021/8/1

Effect of Cu/CeO2 catalyst preparation methods on their characteristics for low temperature water− gas shift reaction: a detailed study

Catalysis Today

2020/8/1

Reducible oxide (CeO2, ZrO2, and CeO2-ZrO2) promoted Ni-MgO catalysts for carbon dioxide reforming of methane reaction

Korean Journal of Chemical Engineering

2020/7

The optimization of Nb loading amount over Cu–Nb–CeO2 catalysts for hydrogen production via the low-temperature water gas shift reaction

International Journal of Hydrogen Energy

2020/3/20

Kyung-Won Jeon
Kyung-Won Jeon

H-Index: 12

Dae-Woon Jeong
Dae-Woon Jeong

H-Index: 24

The Effect of Nb2O5 on Cu-Nb-CeO2 Catalysts for Water Gas Shift Reaction of Compact Reformer

Transactions of the Korean hydrogen and new energy society

2020

Kyung-Won Jeon
Kyung-Won Jeon

H-Index: 12

Dae-Woon Jeong
Dae-Woon Jeong

H-Index: 24

One-pot sol–gel synthesis of a CoMo catalyst for sustainable biofuel production by solvent-and hydrogen-free deoxygenation: effect of the citric acid ratio

Sustainable Energy & Fuels

2020

See List of Professors in Kyung-Won Jeon University(Yonsei University)

Co-Authors

academic-engine