Experimental insights into the adsorption-desorption of CH4/N2 and induced strain for medium-rank coals
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Xuehai Fu | Jienan Pan | Q. Niu | Zhenzhi Wang | He Zhou | Guofu Li | Ming Hao
[1] Binwei Xia,et al. Evaluation of liquid CO2 phase change fracturing effect on coal using fractal theory , 2020 .
[2] Dazhao Song,et al. Variations in surface fractal characteristics of coal subjected to liquid CO2 phase change fracturing , 2020, International Journal of Energy Research.
[3] C. Deng,et al. Numerical study on enhancing coalbed methane recovery by injecting N2/CO2 mixtures and its geological significance , 2020, Energy Science & Engineering.
[4] T. Ren,et al. Cyclic N2 injection for enhanced coal seam gas recovery: A laboratory study , 2019 .
[5] Yunpeng Wang,et al. Adsorption pore structure and its fractal characteristics of coals by N2 adsorption/desorption and FESEM image analyses , 2019 .
[6] D. Elsworth,et al. Modelling and optimization of enhanced coalbed methane recovery using CO2/N2 mixtures , 2019, Fuel.
[7] Lie-hui Zhang,et al. Competitive Adsorption and Selective Diffusion of CH4 and the Intruding Gases in Coal Vitrinite , 2019, Energy & Fuels.
[8] Timing Fang,et al. Enhanced oil recovery with CO2/N2 slug in low permeability reservoir: Molecular dynamics simulation , 2019, Chemical Engineering Science.
[9] Jiang Bo,et al. Competitive adsorption of CO2/N2/CH4 onto coal vitrinite macromolecular: Effects of electrostatic interactions and oxygen functionalities , 2019, Fuel.
[10] A. Wahid,et al. Enhanced coal bed methane (ECBM) recovery: optimization of CBM production using different injected gas composition and rate for south sumatra CBM field, Indonesia , 2018 .
[11] Yang Wang,et al. Molecular structure controls on micropore evolution in coal vitrinite during coalification , 2018, International Journal of Coal Geology.
[12] Xuehai Fu,et al. Experimental study of changes in fractures and permeability during nitrogen injection and sealing of low-rank coal , 2018, Journal of Natural Gas Science and Engineering.
[13] Ting Ren,et al. Simulation investigation of N2-injection enhanced gas drainage: Model development and identification of critical parameters , 2018, Journal of Natural Gas Science and Engineering.
[14] M. Sayyafzadeh,et al. Low permeability coal seam gas productivity enhancement by cyclic nitrogen injection technique (an adsorption simulation study) , 2018 .
[15] Jiang Bo,et al. Molecular Dynamic Simulation of Self- and Transport Diffusion for CO2/CH4/N2 in Low-Rank Coal Vitrinite , 2018 .
[16] Shuxun Sang,et al. Anisotropic Adsorption Swelling and Permeability Characteristics with Injecting CO2 in Coal , 2017 .
[17] Yangsheng Zhao,et al. Experimental study of meso-structural deformation of coal during methane adsorption-desorption cycles , 2017 .
[18] K. Zarębska,et al. Application of the stretched exponential equation to sorption of mine gases and sorption induced swelling of bituminous coal , 2017 .
[19] C. Spiers,et al. Coupling of swelling, internal stress evolution, and diffusion in coal matrix material during exposure to methane , 2017 .
[20] Yi Wang,et al. Anisotropy characteristics of coal shrinkage/swelling and its impact on coal permeability evolution with CO2 injection , 2016 .
[21] R. Bustin,et al. Learnings from a failed nitrogen enhanced coalbed methane pilot: Piceance Basin, Colorado , 2016 .
[22] A. Ćwik,et al. Kinetics of methane and carbon dioxide sorption and sorption–induced expansion of coal – kinetic equations assessment , 2016 .
[23] Xuehai Fu,et al. Changes in coal pore structure and permeability during N2 injection , 2015 .
[24] J. P. Olivier,et al. Physisorption of gases, with special reference to the evaluation of surface area and pore size distribution (IUPAC Technical Report) , 2015 .
[25] B. Nie,et al. Experimental study of deformation rules during the process of gas adsorption and desorption in briquette coal , 2014 .
[26] Kyuro Sasaki,et al. The effect of megascopic texture on swelling of a low rank coal in supercritical carbon dioxide , 2014 .
[27] Y. Cinar,et al. Injecting pure N2 and CO2 to coal for enhanced coalbed methane: Experimental observations and numerical simulation , 2013 .
[28] J. Wilcox,et al. Molecular simulation of methane adsorption in micro- and mesoporous carbons with applications to coal and gas shale systems , 2013 .
[29] Derek Elsworth,et al. Permeability evolution during progressive deformation of intact coal and implications for instability in underground coal seams , 2013 .
[30] T. Moore,et al. Coalbed methane: A review , 2012 .
[31] Luke D. Connell,et al. Modelling of anisotropic coal swelling and its impact on permeability behaviour for primary and enhanced coalbed methane recovery , 2011 .
[32] Katarzyna Czerw. Methane and carbon dioxide sorption/desorption on bituminous coal—Experiments on cubicoid sample cut from the primal coal lump , 2011 .
[33] J. Ziętek,et al. Swelling of coal induced by cyclic sorption/desorption of gas: Experimental observations indicating changes in coal structure due to sorption of CO2 and CH4 , 2010 .
[34] C. Spiers,et al. Strain development in unconfined coals exposed to CO2, CH4 and Ar : Effect of moisture , 2009 .
[35] Marco Mazzotti,et al. Measuring and modeling the competitive adsorption of CO2, CH4, and N2 on a dry coal. , 2008, Langmuir : the ACS journal of surfaces and colloids.
[36] Stuart Day,et al. Swelling of Australian coals in supercritical CO2 , 2008 .
[37] Jerzy Ziętek,et al. Changes of acoustic emission and strain in hard coal during gas sorption–desorption cycles , 2007 .
[38] L. Connell,et al. A theoretical model for gas adsorption-induced coal swelling , 2007 .
[39] Khaled A. M. Gasem,et al. Adsorption of methane, nitrogen, carbon dioxide and their mixtures on wet Tiffany coal , 2005 .
[40] R. Marc Bustin,et al. Selective transport of CO2, CH4, and N2 in coals: insights from modeling of experimental gas adsorption data , 2004 .
[41] C. Rodrigues,et al. The measurement of coal porosity with different gases , 2002 .
[42] M. Knudsen. Die Gesetze der Molekularstrmung und der inneren Reibungsstrmung der Gase durch Rhren , 1909 .