Area of research
Environmental Chemistry · Aerospace Engineering
Research interest
Research interests include Clathrate hydrate, Hydrate, Chemistry, Methane, Carbon dioxide, and Environmental science.
Experimental study on CO2 hydrate formation in clay-rich sediments for sub-seafloor CO2 sequestration
Gas storage via clathrate hydrates: Advances, challenges, and prospects
Coupling amino acid injection and slow depressurization with hydrate swapping exploitation: An effective strategy to enhance in-situ CO2 storage in hydrate-bearing sediment
Effect of clay on methane hydrate formation and dissociation in sediment: Implications for energy recovery from clayey-sandy hydrate reservoirs
Kinetic evaluation of hydrate-based coalbed methane recovery process promoted by structure II thermodynamic promoters and amino acids
Development of novel natural gas hydrate inhibitor and the synergistic inhibition mechanism with NaCl: Experiments and molecular dynamics simulation
Modeling and characterizing the thermal and kinetic behavior of methane hydrate dissociation in sandy porous media
Semi-clathrate hydrate slurry as a cold energy storage and transport medium: Rheological study, energy analysis and enhancement by amino acid
Hydrates for cold energy storage and transport: A review
Laboratory demonstration of the stability of CO2 hydrates in deep-oceanic sediments
Coal mine gas separation of methane via clathrate hydrate process aided by tetrahydrofuran and amino acids
Hydrogen storage as clathrate hydrates in the presence of 1,3-dioxolane as a dual-function promoter
Carbon Dioxide Sequestration via Gas Hydrates: A Potential Pathway toward Decarbonization
Effect of <scp>l</scp>-Tryptophan in Promoting the Kinetics of Carbon Dioxide Hydrate Formation
New insights on water-gas flow and hydrate decomposition behaviors in natural gas hydrates deposits with various saturations
Clathrate hydrate formation of CO2/CH4 mixture at room temperature: Application to direct transport of CO2-containing natural gas
LNG cold energy utilization: Prospects and challenges
Semiclathrate based CO2 capture from fuel gas mixture at ambient temperature: Effect of concentrations of tetra-n-butylammonium fluoride (TBAF) and kinetic additives
Kinetic Evaluation of Cyclopentane as a Promoter for CO<sub>2</sub> Capture via a Clathrate Process Employing Different Contact Modes
Semiclathrate hydrate process for pre-combustion capture of CO2 at near ambient temperatures