Acknowledgments We acknowledge financial support from the National Natural Science Foundation of China (41472137), the Key Research and Development Projects of The Xinjiang Uygur Autonomous Region (2017B03019-01), and the National Major Research Program for Science and Technology of China (2016ZX05043-001), and the Royal Society Edinburgh and National Natural Science Foundation China (NSFC 41711530129).Peer reviewedPostprin
The injection of carbon dioxide (CO2) or flue gas into coal layers enhances the coal bed methane pro...
Coal permeability is one of the most critical parameters affecting gas flow behavior during coalbed ...
S1 is NMR experiment result; S2 and S3 are from Material studio in MD simulaiton; S4 comes from PEFP...
Coal seams offer tremendous potential for carbon geo-sequestration with the dual benefit of enhanced...
Increasing energy demand and associated global warming are unarguably the two major challenges that ...
To better apply nuclear magnetic resonance (NMR) to evaluate the petrophysical characterization of h...
The process of carbon dioxide (CO2) sequestration in deep coal seam causes both coal seam permeabili...
Determining water occurrence in pore-fracture systems under specific water saturation is of great si...
The underground geological CO 2 storage into oil and gas reservoirs and/or saline aquifers is a prom...
On the basis of the complexity of the pore structure characteristics of a coal reservoir, coal sampl...
This paper discussed the application of nuclear magnetic resonance (NMR) logging in evaluating the p...
Acknowledgements This research was funded by the National Natural Science Fund (grant nos. 41830427,...
CO2-rock wettability is a key parameter which governs CO2 trapping capacities and containment securi...
Carbon dioxide (CO2) injection into coal layers serves the dual purpose to enhance coal bed methane ...
The microscopic pore development of most coal seams in China leads to different permeability of coal...
The injection of carbon dioxide (CO2) or flue gas into coal layers enhances the coal bed methane pro...
Coal permeability is one of the most critical parameters affecting gas flow behavior during coalbed ...
S1 is NMR experiment result; S2 and S3 are from Material studio in MD simulaiton; S4 comes from PEFP...
Coal seams offer tremendous potential for carbon geo-sequestration with the dual benefit of enhanced...
Increasing energy demand and associated global warming are unarguably the two major challenges that ...
To better apply nuclear magnetic resonance (NMR) to evaluate the petrophysical characterization of h...
The process of carbon dioxide (CO2) sequestration in deep coal seam causes both coal seam permeabili...
Determining water occurrence in pore-fracture systems under specific water saturation is of great si...
The underground geological CO 2 storage into oil and gas reservoirs and/or saline aquifers is a prom...
On the basis of the complexity of the pore structure characteristics of a coal reservoir, coal sampl...
This paper discussed the application of nuclear magnetic resonance (NMR) logging in evaluating the p...
Acknowledgements This research was funded by the National Natural Science Fund (grant nos. 41830427,...
CO2-rock wettability is a key parameter which governs CO2 trapping capacities and containment securi...
Carbon dioxide (CO2) injection into coal layers serves the dual purpose to enhance coal bed methane ...
The microscopic pore development of most coal seams in China leads to different permeability of coal...
The injection of carbon dioxide (CO2) or flue gas into coal layers enhances the coal bed methane pro...
Coal permeability is one of the most critical parameters affecting gas flow behavior during coalbed ...
S1 is NMR experiment result; S2 and S3 are from Material studio in MD simulaiton; S4 comes from PEFP...