Surfactant-based promotion to gas hydrate formation for energy storage

Y He, MT Sun, C Chen, GD Zhang, K Chao… - Journal of Materials …, 2019 - pubs.rsc.org
Gas hydrates have been endowed with great potential for natural gas storage and
transportation; achieving the rapid hydrate formation and high storage capacity are critical to …

Liquid air as an emerging energy vector towards carbon neutrality: A multi-scale systems perspective

M Qi, J Park, I Lee, I Moon - Renewable and sustainable energy reviews, 2022 - Elsevier
Liquid air has recently emerged as a new energy vector that has the ability to reserve
considerable amounts of renewable energy as both cold and power. Liquid air used for …

[HTML][HTML] Impacts of battery energy storage technologies and renewable integration on the energy transition in the New York State

WC Huang, Q Zhang, F You - Advances in Applied Energy, 2023 - Elsevier
In light of current energy policies responding to rapid climate change, much attention has
been directed to develo** feasible approaches for transitioning energy production from …

Systems design and techno-economic analysis of a novel cryogenic carbon capture process integrated with an air separation unit for autothermal reforming blue …

W Noh, S Park, Y Kim, J Lee, J Kim, I Lee - Journal of Cleaner Production, 2024 - Elsevier
In the transition of the global energy paradigm toward decarbonization, hydrogen is
expected to play a crucial role as an energy vector. To enhance the sustainability of …

Advanced integration of LNG regasification power plant with liquid air energy storage: Enhancements in flexibility, safety, and power generation

M Qi, J Park, J Kim, I Lee, I Moon - Applied energy, 2020 - Elsevier
Power plants for regasification of liquefied natural gas (LNG), integrated with liquid air
energy storage (LAES), have benefits in terms of power generation flexibility to match the …

Design and thermodynamic analysis of an advanced liquid air energy storage system coupled with LNG cold energy, ORCs and natural resources

Y Lu, J Xu, X Chen, Y Tian, H Zhang - Energy, 2023 - Elsevier
Liquid air energy storage (LAES) is a kind of cryogenic energy storage technology that offers
the advantages of relatively sizeable volumetric energy density and ease of storage, which …

Liquid air energy storage coupled with liquefied natural gas cold energy: focus on efficiency, energy capacity, and flexibility

J Park, S Cho, M Qi, W Noh, I Lee, I Moon - Energy, 2021 - Elsevier
A novel power-management-system design coupling liquid air energy storage (LAES) with
liquefied natural gas (LNG) regasification is proposed that combines flexibility in responding …

Liquid hydrogen cold energy recovery to enhance sustainability: optimal design of dual-stage power generation cycles

H Mun, S Park, I Lee - Energy, 2023 - Elsevier
Liquid hydrogen (LH 2) is a promising hydrogen carrier because of its high density.
However, liquefying hydrogen requires considerable energy and expenses. To enhance the …

A novel boil-off gas reliquefaction system using liquid air for intercontinental liquefied natural gas transportation

H Mun, H Kim, J Park, I Lee - Energy Conversion and Management, 2022 - Elsevier
The boil-off gas (BOG) reliquefaction of cryogenic liquefied natural gas (LNG) for its
intercontinental transport is challenging. This paper proposes a novel BOG reliquefaction …

Comparative design, thermodynamic and techno‐economic analysis of utilizing liquefied natural gas cold energy for hydrogen liquefaction processes

W Noh, S Park, J Kim, I Lee - International Journal of Energy …, 2022 - Wiley Online Library
This study mainly focuses on determining the optimal configuration that efficiently utilizes
liquefied natural gas (LNG) cold energy in hydrogen precooling for liquid hydrogen …