Seongbin Jo

Seongbin Jo

University of California, Riverside

H-index: 9

North America-United States

About Seongbin Jo

Seongbin Jo, With an exceptional h-index of 9 and a recent h-index of 9 (since 2020), a distinguished researcher at University of California, Riverside, specializes in the field of Heterogeneous Catalysis, CO2 capture and utilization, Hydrogen production, Fischer-Tropsch Synthesis.

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

Zr-Modified Ni/CaO Dual Function Materials (DFMs) for Direct Methanation in an Integrated CO2 Capture and Utilization Process

Co-Exsolution of Ni-Based Alloy Catalysts for the Valorization of Carbon Dioxide and Methane

Ru/K2CO3–MgO catalytic sorbent for integrated CO2 capture and methanation at low temperatures

Effect of the Ni-to-CaO Ratio on Integrated CO2 Capture and Direct Methanation

Improving the Stability of Ru-Doped Ni-Based Catalysts for Steam Methane Reforming during Daily Startup and Shutdown Operation

Perspective on sorption enhanced bifunctional catalysts to produce hydrocarbons

Coke-Promoted Ni/CaO As Multifunctional Materials for an Integrated CO 2 Capture and Utilization

Influence of the sorption pressure and K2CO3 loading of a MgO-based sorbent for application to the SEWGS process

Seongbin Jo Information

University

Position

Ph.D. student

Citations(all)

309

Citations(since 2020)

303

Cited By

58

hIndex(all)

9

hIndex(since 2020)

9

i10Index(all)

9

i10Index(since 2020)

9

Email

University Profile Page

Google Scholar

Seongbin Jo Skills & Research Interests

Heterogeneous Catalysis

CO2 capture and utilization

Hydrogen production

Fischer-Tropsch Synthesis

Top articles of Seongbin Jo

Zr-Modified Ni/CaO Dual Function Materials (DFMs) for Direct Methanation in an Integrated CO2 Capture and Utilization Process

Energy & Fuels

2023/12/7

Co-Exsolution of Ni-Based Alloy Catalysts for the Valorization of Carbon Dioxide and Methane

2023/11/8

Seongbin Jo
Seongbin Jo

H-Index: 5

Ru/K2CO3–MgO catalytic sorbent for integrated CO2 capture and methanation at low temperatures

Chemical Engineering Journal

2023/8/1

Seongbin Jo
Seongbin Jo

H-Index: 5

Effect of the Ni-to-CaO Ratio on Integrated CO2 Capture and Direct Methanation

Catalysts

2023/7/31

Seongbin Jo
Seongbin Jo

H-Index: 5

Improving the Stability of Ru-Doped Ni-Based Catalysts for Steam Methane Reforming during Daily Startup and Shutdown Operation

Catalysts

2023/5/30

Seongbin Jo
Seongbin Jo

H-Index: 5

Perspective on sorption enhanced bifunctional catalysts to produce hydrocarbons

ACS Catalysis

2022/6/9

Coke-Promoted Ni/CaO As Multifunctional Materials for an Integrated CO 2 Capture and Utilization

The 27th North American Catalysis Society Meeting

2022/5/24

Seongbin Jo
Seongbin Jo

H-Index: 5

Influence of the sorption pressure and K2CO3 loading of a MgO-based sorbent for application to the SEWGS process

Korean Journal of Chemical Engineering

2022/4

Seongbin Jo
Seongbin Jo

H-Index: 5

CO2 Sorption and Regeneration Properties of K2CO3/Al2O3-Based Sorbent at High Pressure and Moderate Temperature

Applied Sciences

2022/3/15

Seongbin Jo
Seongbin Jo

H-Index: 5

A fundamental study of CO2 capture and CH4 production in a rapid cyclic system using nickel-lithium-silicate as a catal-sorbent

Fuel

2022/3/1

Seongbin Jo
Seongbin Jo

H-Index: 5

Tae Young Kim
Tae Young Kim

H-Index: 96

Coke-promoted Ni/CaO catal-sorbents in the production of cyclic CO and syngas

Sustainable Energy & Fuels

2022

Seongbin Jo
Seongbin Jo

H-Index: 5

Preparation of Eggshell-Type Ru/Al2O3 Catalysts for Hydrogen Production Using Steam-Methane Reforming on PEMFC

Catalysts

2021/8/9

Influence of Ni on Fe and Co-Fe based catalysts for high-calorific synthetic natural gas

Catalysts

2021/5/31

Seongbin Jo
Seongbin Jo

H-Index: 5

Yeji Lee
Yeji Lee

H-Index: 2

Investigation of Co–Fe–Al catalysts for high-calorific synthetic natural gas production: pilot-scale synthesis of catalysts

Catalysts

2021/1/13

Thermally stable amine-functionalized silica sorbents using one-pot synthesis method for CO2 capture at low temperature

Korean Journal of Chemical Engineering

2020/12

Deactivation of Ni–Al-Based Catalysts for Autothermal Reforming of Diesel Surrogate Fuel in the Presence of an Aromatic Hydrocarbon

Journal of Nanoscience and Nanotechnology

2020/11/1

Effects of thin-film thickness on sensing properties of SnO2-based gas sensors for the detection of H2S gas at ppm levels

Journal of Nanoscience and Nanotechnology

2020/11/1

Effect of reducibility on the performance of Co-based catalysts for the production of high-calorie synthetic natural gas

Korean Journal of Chemical Engineering

2020/10

Catalytic technologies for CO hydrogenation for the production of light hydrocarbons and middle distillates

2020/1/9

CO2 green technologies in CO2 capture and direct utilization processes: methanation, reverse water-gas shift, and dry reforming of methane

Sustainable Energy & Fuels

2020

See List of Professors in Seongbin Jo University(University of California, Riverside)

Co-Authors

academic-engine