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Eunhyea Chung

Seoul National University · 工学

研究室紹介

Professor Eunhyea Chung's research lab specializes in advanced materials and environmental remediation, focusing on sustainable solutions for energy and water challenges. Key research directions include the development of selective adsorbents for lithium recovery from hypersaline produced water in shale gas operations, the design of functional nanomaterials for electrochemical energy storage, and the fundamental understanding of interfacial forces in microbial spore adhesion. The lab integrates experimental and theoretical approaches, combining techniques such as atomic force microscopy, surface characterization, and hydrothermal synthesis to address real-world environmental and energy applications.

lithium recoverynanomaterialssupercapacitorsproduced water treatmentinterfacial forces

Research Overview

Papers
63
Total Citations
1,947
Papers (5y)
25
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
25total
2022
2023
2024
2025
2026
Citations per year (5y)
935total
20222023202420252026

Selected Papers

15
1
Article|565 citations·2022
Hydrogen production through renewable and non-renewable energy processes and their impact on climate change
Muhammad Amin, Hamad Hussain Shah, Anaiz Gul Fareed, Wasim Ullah Khan, Eunhyea Chung, Adeel Zia, Zia Ur Rahman Farooqi, Chaehyeon Lee
SJR Q1International Journal of Hydrogen Energy
Energy Engineering and Power TechnologyEnergy
2
Article|73 citations·2018
Adsorption of Lithium from Shale Gas Produced Water Using Titanium Based Adsorbent
Yunjai Jang, Eunhyea Chung
SJR Q1Industrial & Engineering Chemistry Research

Lithium is a valuable metal that has been recovered from synthetic shale gas produced water using the titanium-based adsorbent H2TiO3 in this study. The maximum adsorptive capacity of lithium obtained was 2.58 mmol/g after adsorption–desorption tests, and the recovery rate of Li+ was much higher than those of the other cations in the produced water when used with a pH buffer. To enhance the adsorptive capacity and selectivity of lithium, the precipitation process using sodium carbonate was appli

Mechanical EngineeringEngineering
3
Article|69 citations·2021
Direct electrochemical lithium recovery from acidic lithium-ion battery leachate using intercalation electrodes
Yunjai Jang, Chia‐Hung Hou, Sanghyuk Park, Kyungjung Kwon, Eunhyea Chung
SJR Q1Resources Conservation and Recycling
Mechanical EngineeringEngineering
4
Article|69 citations·2017
Lithium recovery from shale gas produced water using solvent extraction
Eunyoung Jang, Yunjai Jang, Eunhyea Chung
SJR Q1Applied Geochemistry
Mechanical EngineeringEngineering
5
Article|63 citations·2015
Chemical behavior of different species of phosphorus in coagulation
Taejun Park, Vanvimol Ampunan, Sang‐Hyup Lee, Eunhyea Chung
SJR Q1Chemosphere
Industrial and Manufacturing EngineeringEnvironmental Science
6
Article|55 citations·2016
Application of steel slag coated with sodium hydroxide to enhance precipitation-coagulation for phosphorus removal
Taejun Park, Vanvimol Ampunan, Sung-Kyu Maeng, Eunhyea Chung
SJR Q1Chemosphere
Industrial and Manufacturing EngineeringEnvironmental Science
7
Article|34 citations·2016
Application of three different water treatment technologies to shale gas produced water
Eunyoung Jang, Seongpil Jeong, Eunhyea Chung
SJR Q3Geosystem Engineering

Shale gas produced water is a hypersaline wastewater that is generated during the shale gas development process called as a hydraulic fracturing. The produced water contains many substances including inorganic salts, organic compounds, and particulates. The treatment process of the produced water is mainly composed of four parts: oil and water separation, removal of suspended solids, removal of organics, and salts removal. This study focuses on the total dissolved salts removal through applying

Global and Planetary ChangeEnvironmental Science
8
Article|34 citations·2010
The Role of the Electrostatic Force in Spore Adhesion
Eunhyea Chung, Sotira Yiacoumi, Ida Lee, Costas Tsouris
SJR Q1Environmental Science & Technology

Electrostatic force is investigated as one of the components of the adhesion force between Bacillus thuringiensis (Bt) spores and planar surfaces. The surface potentials of a Bt spore and a mica surface are experimentally obtained using a combined atomic force microscopy (AFM)-scanning surface potential microscopy technique. On the basis of experimental information, the surface charge density of the spores is estimated at 0.03 microC/cm(2) at 20% relative humidity and decreases with increasing h

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
9
Article|33 citations·2020
Lithium recovery by solvent extraction from simulated shale gas produced water – Impact of organic compounds
Junbeum Lee, Eunhyea Chung
SJR Q1Applied Geochemistry
Mechanical EngineeringEngineering
10
Article|30 citations·2019
Influence of Alkanes on Lithium Adsorption and Desorption of a H2TiO3 Ion Sieve Adsorbent in Synthetic Shale Gas-Produced Water
Yunjai Jang, Eunhyea Chung
SJR Q1Industrial & Engineering Chemistry Research

The lithium adsorbent H2TiO3 was used for lithium adsorption from shale gas-produced water. Produced water contains large concentrations of various organic compounds, but mostly n-alkanes. In this study, the influence of alkanes on lithium adsorption from shale gas-produced water was observed. The precipitation–adsorption–desorption method was used for selective lithium adsorption. Increasing n-hexane concentrations were found to decrease the amount of recovered lithium. To observe the character

Mechanical EngineeringEngineering
11
Article|30 citations·2019
Lithium adsorptive properties of H2TiO3 adsorbent from shale gas produced water containing organic compounds
Yunjai Jang, Eunhyea Chung
SJR Q1Chemosphere
Mechanical EngineeringEngineering
12
Article|28 citations·2023
Carbon nanofiber-supported elongated square bipyramid-like MnWO4 composite electrodes for high-performance battery-type supercapacitors: Enhanced electrochemical performance via synergistic effect
Nipa Roy, Ramanadha Mangiri, Guddeti Phaneendra Reddy, Guddeti Phaneendra Reddy, Ala Manohar, Eunhyea Chung, B. Deva Prasad Raju, Gutturu Rajasekhara Reddy, Gutturu Rajasekhara Reddy, Sang Woo Joo
SJR Q1Journal of Electroanalytical Chemistry
Electronic, Optical and Magnetic MaterialsMaterials Science
13
Article|26 citations·2023
Selective recovery of lithium and ammonium from spent lithium-ion batteries using intercalation electrodes
Yunjai Jang, Chia‐Hung Hou, Kyungjung Kwon, Jin Soo Kang, Eunhyea Chung
SJR Q1Chemosphere
Mechanical EngineeringEngineering
14
Article|23 citations·2025
Hydrometallurgical process of spent lithium-ion battery recycling Part. 1 Chemical leaching of valuable metals from cathode active materials: Review and case study
Chaehyeon Lee, Dwira Satria Arby, Chanmin Kim, Junghyun Lim, Kyungjung Kwon, Eunhyea Chung
SJR Q1Hydrometallurgy
Mechanical EngineeringEngineering
15
Article|23 citations·2009
Adhesion of Spores of Bacillus thuringiensis on a Planar Surface
Eunhyea Chung, Hyojin Kweon, Sotira Yiacoumi, Ida Lee, David C. Joy, Anthony V. Palumbo, Costas Tsouris
SJR Q1Environmental Science & Technology

Adhesion of spores of Bacillus thuringiensis (Bt) and spherical silica particles on surfaces was experimentally and theoretically investigated in this study. Topography analysis via atomic force microscopy (AFM) and electron microscopy indicates that Bt spores are rod shaped, approximately 1.3 mum in length and approximately 0.8 mum in diameter. The adhesion force of Bt spores and silica particles on gold-coated glass was measured at various relative humidity (RH) levels by AFM. It was expected

GeneticsBiochemistry, Genetics and Molecular Biology

Research Areas

Mechanical EngineeringRenewable Energy, Sustainability and the EnvironmentBiomedical EngineeringGeneticsIndustrial and Manufacturing EngineeringAtomic and Molecular Physics, and Optics

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