CO2 hydrate properties and applications: A state of the art

S Sinehbaghizadeh, A Saptoro… - Progress in Energy and …, 2022 - Elsevier
Global warming is one of the most pressing environmental concerns which correlates
strongly with anthropogenic CO 2 emissions so that the CO 2 decreasing strategies have …

The interaction of climate change and methane hydrates

CD Ruppel, JD Kessler - Reviews of Geophysics, 2017 - Wiley Online Library
Gas hydrate, a frozen, naturally‐occurring, and highly‐concentrated form of methane,
sequesters significant carbon in the global system and is stable only over a range of low …

Pore habit of methane hydrate and its evolution in sediment matrix–Laboratory visualization with phase-contrast micro-CT

L Lei, Y Seol, JH Choi, TJ Kneafsey - Marine and Petroleum Geology, 2019 - Elsevier
Describing the pore habit of methane hydrate in sediment matrices is essential for
understanding natural distribution of methane hydrate, methane trace (transport and …

The Iġnik Sikumi Field Experiment, Alaska North Slope: Design, Operations, and Implications for CO2–CH4 Exchange in Gas Hydrate Reservoirs

R Boswell, D Schoderbek, TS Collett, S Ohtsuki… - Energy & …, 2017 - ACS Publications
The Iġnik Sikumi Gas Hydrate Exchange Field Experiment was conducted by
ConocoPhillips in partnership with the US Department of Energy, the Japan Oil, Gas and …

Permeability of hydrate-bearing sediments

X Ren, Z Guo, F Ning, S Ma - Earth-Science Reviews, 2020 - Elsevier
Natural gas hydrate is one of the most potential carbon energy resources because of its
tremendous reserves. Gas and water permeability of natural gas hydrate-bearing sediments …

Effect of clay on methane hydrate formation and dissociation in sediment: Implications for energy recovery from clayey-sandy hydrate reservoirs

Z Liu, J Zheng, Z Wang, Y Gao, B Sun, Y Liao, P Linga - Applied Energy, 2023 - Elsevier
Natural gas hydrate (NGH) is an unconventional energy source with high energy density,
huge reserves and worldwide distribution. Sand-dominated hydrate-bearing sediments …

Effects of depressurization on gas production and water performance from excess-gas and excess-water methane hydrate accumulations

L Zhang, H Dong, S Dai, Y Kuang, L Yang… - Chemical Engineering …, 2022 - Elsevier
Depressurization is considered as the most promising technique for hydrate exploitation, as
it achieves the highest energy profit ratio and is the most technologically feasible. However …

Hydrate morphology: Physical properties of sands with patchy hydrate saturation

S Dai, JC Santamarina, WF Waite… - Journal of geophysical …, 2012 - Wiley Online Library
The physical properties of gas hydrate‐bearing sediments depend on the volume fraction
and spatial distribution of the hydrate phase. The host sediment grain size and the state of …

Comprehensive effects of heat and flow on the methane hydrate dissociation in porous media

Z Zhang, T Xu, S Li, X Li, MJB Montilla, C Lu - Energy, 2023 - Elsevier
The dissociation of methane hydrate in porous media is a heat flow coupling process. In this
paper, we established a heat flow coupling algorithm for hydrate dissociation. A core-scale …

Influence of the particle size of porous media on the formation of natural gas hydrate: A review

Y Qin, Z Pan, Z Liu, L Shang, L Zhou - Energy & Fuels, 2021 - ACS Publications
As a new source of energy with great potential, natural gas hydrate (NGH) will play an
indispensable and important strategic role in the future because of its tremendous reserves …