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Jin‐Woo Park

Yonsei University · Engineering

About the Lab

Professor Jin-Woo Park's research lab specializes in sustainable energy systems and advanced chemical processes, with a strong focus on optimizing energy efficiency and resource utilization. The lab investigates innovative technologies for liquefied natural gas (LNG) regasification, particularly integrating cold energy recovery for power generation and cryogenic energy storage to address dynamic energy demands. Another key research direction involves developing high-efficiency catalytic processes for green chemical production, such as continuous lactide synthesis for biodegradable polylactic acid (PLA) using novel nanocomposite catalysts. The lab emphasizes technoeconomic analysis and system integration to advance clean energy and sustainable materials technologies.

cold energy utilizationcryogenic energy storageLNG regasificationnanocatalystssustainable chemical processes

Research Overview

Papers
96
Total Citations
2,147
Papers (5y)
55
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
55total
2022
2023
2024
2025
2026
Citations per year (5y)
780total
20222023202420252026

Selected Papers

15
1
Article|121 citations·2020
Liquid air energy storage coupled with liquefied natural gas cold energy: Focus on efficiency, energy capacity, and flexibility
Jinwoo Park, Seung‐Sik Cho, Meng Qi, Wonjun Noh, Inkyu Lee, Il Moon
SJR Q1Energy
Mechanical EngineeringEngineering
2
Article|65 citations·2019
Economic Process Selection of Liquefied Natural Gas Regasification: Power Generation and Energy Storage Applications
Jinwoo Park, Inkyu Lee, Fengqi You, Il Moon
SJR Q1Industrial & Engineering Chemistry Research

Liquefied natural gas (LNG) demand has been rapidly increasing due to the global need for clean energy resources. This study analyzes and compares LNG regasification processes and technologies from the technoeconomic perspective and focuses on utilizing LNG cold energy as an economically beneficial option. The comparative technoeconomic analyses focus on the following three process: (1) a simple LNG regasification process, which wastes LNG cold energy; (2) an LNG regasification power plant (LPP)

Mechanical EngineeringEngineering
3
Article|64 citations·2022
Proposal and surrogate-based cost-optimal design of an innovative green ammonia and electricity co-production system via liquid air energy storage
Meng Qi, Minsu Kim, Dat-Nguyen Vo, Liang Yin, Yi Liu, Jinwoo Park, Il Moon
SJR Q1Applied Energy
CatalysisChemical Engineering
4
Article|64 citations·2020
Novel massive thermal energy storage system for liquefied natural gas cold energy recovery
Jinwoo Park, Fengqi You, Hyungtae Cho, Inkyu Lee, Il Moon
SJR Q1Energy
Mechanical EngineeringEngineering
5
Article|55 citations·2020
Liquefied natural gas supply chain using liquid air as a cold carrier: Novel method for energy recovery
Jinwoo Park, Fengqi You, Haneul Mun, Inkyu Lee
SJR Q1Energy Conversion and Management
Energy Engineering and Power TechnologyEnergy
6
Article|54 citations·2023
Strategies for flexible operation of power-to-X processes coupled with renewables
Meng Qi, Dat-Nguyen Vo, Haoshui Yu, Chi‐Min Shu, Chengtian Cui, Yi Liu, Jinwoo Park, Il Moon
SJR Q1Renewable and Sustainable Energy Reviews
Energy Engineering and Power TechnologyEnergy
7
Article|50 citations·2017
A Novel Design of Liquefied Natural Gas (LNG) Regasification Power Plant Integrated with Cryogenic Energy Storage System
Jinwoo Park, Inkyu Lee, Il Moon
SJR Q1Industrial & Engineering Chemistry Research

Natural gas is transported in its liquid state over long distances and thus must be gasified before use. This study focused on the alternative use of cold energy in an LNG regasification power plant integrated with a cryogenic energy storage (LPCES) system that supports variation over time. Energy demands change over time; these dynamics must be considered to improve overall energy efficiency. During off-peak times, the LNG cold energy is stored in the cryogenic energy storage (CES) system. In c

Mechanical EngineeringEngineering
8
Article|45 citations·2023
Techno-economic comparison of ammonia production processes under various carbon tax scenarios for the economic transition from grey to blue ammonia
Si-Eun Oh, Haneul Mun, Jinwoo Park, Inkyu Lee
SJR Q1Journal of Cleaner Production
CatalysisChemical Engineering
9
Article|36 citations·2018
Design of a Novel Process for Continuous Lactide Synthesis from Lactic Acid
Jinwoo Park, Hyungtae Cho, Dongwon Hwang, Seungnam Kim, Il Moon, Myungjun Kim
SJR Q1Industrial & Engineering Chemistry Research

Lactide synthesis is an energy-intensive process used to produce polylactic acid (PLA). In this study, we propose a continuous lactide synthesis process developed on the basis of a recently developed one-step reaction using a SnO2–SiO2 nanocomposite catalyst. This process enables a rapid reaction time of 40 ms for the catalyst, which achieves 94% lactide yield. To design an efficient chemical process, reaction kinetics were developed and a heterogeneous reactor model was applied to the reactor.

BiomaterialsMaterials Science
10
Article|35 citations·2024
Design and analysis of negative CO2 emission methanol synthesis process incorporating green hydrogen and blue hydrogen
Taehyun Kim, Dohee Kim, Yungeon Kim, Jinwoo Park
SJR Q1Journal of Cleaner Production
CatalysisChemical Engineering
11
Article|34 citations·2020
Exergoeconomic optimization of liquid air production by use of liquefied natural gas cold energy
Jinwoo Park, Meng Qi, Jeongdong Kim, Wonjun Noh, Inkyu Lee, Il Moon
SJR Q1Energy
Mechanical EngineeringEngineering
12
Article|33 citations·2024
Power generation system utilizing cold energy from liquid hydrogen: Integration with a liquid air storage system for peak load shaving
Haneul Mun, Yeonghyun Kim, Jinwoo Park, Inkyu Lee
SJR Q1Energy
Aerospace EngineeringEngineering
13
Article|30 citations·2022
Flexible and efficient renewable-power-to-methane concept enabled by liquid CO2 energy storage: Optimization with power allocation and storage sizing
Meng Qi, Jaewon Lee, Seokyoung Hong, Jeongdong Kim, Yi Liu, Jinwoo Park, Il Moon
SJR Q1Energy
Energy Engineering and Power TechnologyEnergy
14
Article|23 citations·2024
A novel hybrid approach to pink and turquoise hydrogen production via oxy-fuel combustion
Dohee Kim, Minkyu Shin, Jinwoo Park
SJR Q1Energy Conversion and Management
Energy Engineering and Power TechnologyEnergy
15
Article|22 citations·2024
Development of a hybrid energy storage system for heat and electricity: Application to green hydrogen production process integrated with a municipal solid waste incinerator
Yungeon Kim, Sebin Oh, Dohee Kim, Seokyoung Hong, Jinwoo Park
SJR Q1Energy Conversion and Management
Energy Engineering and Power TechnologyEnergy

Research Areas

Energy Engineering and Power TechnologyMechanical EngineeringAerospace EngineeringCatalysisMaterials ChemistryInformation Systems

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