Diffusion of Supercritical Fluids through Single-Layer Nanoporous Solids: Theory and Molecular Simulations

被引:7
作者
Oulebsir, Fouad [1 ]
Vermorel, Romain [1 ]
Galliero, Guillaume [1 ]
机构
[1] Univ Pau & Pays Adour, CNRS, TOTAL,UMR5150, Lab Fluides Complexes & Leurs Reservoirs IPRA,E2S, F-64000 Pau, France
关键词
POROUS GRAPHENE; PORE ACCESSIBILITY; CARBON MEMBRANES; GAS SEPARATION; PERMEATION; TRANSPORT; DYNAMICS; HYDRODYNAMICS; HYDROCARBONS; MECHANISMS;
D O I
10.1021/acs.langmuir.7b03486
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
With the advent of graphene material, membranes based on single-layer nanoporous solids appear as promising devices for fluid separation, be it liquid or gaseous mixtures. The design of such architectured porous materials would greatly benefit from accurate models that can predict their transport and separation properties. More specifically, there is no universal understanding of how parameters such as temperature, fluid loading conditions, or the ratio of the pore size to the fluid molecular diameter influence the permeation process. In this study, we address the problem of pure supercritical fluids diffusing through simplified models of single-layer porous materials. Basically, we investigate a toy model that consists of a single-layer lattice of Lennard-Jones interaction sites with a slit gap of controllable width. We performed extensive equilibrium and biased molecular dynamics simulations to document the physical mechanisms involved at the molecular scale. We propose a general constitutive equation for the diffusional transport coefficient derived from classical statistical mechanics and kinetic theory, which can be further simplified in the ideal gas limit. This transport coefficient relates the molecular flux to the fluid density jump across the single-layer membrane. It is found to be proportional to the accessible surface porosity of the single-layer porous solid and to a thermodynamic factor accounting for the inhomogeneity of the fluid close to the pore entrance. Both quantities directly depend on the potential of mean force that results from molecular interactions between solid and fluid atoms. Comparisons with the simulations data show that the kinetic model captures how narrowing the pore size below the fluid molecular diameter lowers dramatically the value of the transport coefficient. Furthermore, we demonstrate that our general constitutive equation allows for a consistent interpretation of the intricate effects of temperature and fluid loading conditions on the permeation process.
引用
收藏
页码:561 / 571
页数:11
相关论文
共 50 条
[31]   Grand canonical-like molecular dynamics simulations: Application to anisotropic mass diffusion in a nanoporous medium [J].
Hoang, Hai ;
Galliero, Guillaume .
JOURNAL OF CHEMICAL PHYSICS, 2012, 136 (18)
[32]   Molecular Simulations of CH4 and CO2 Diffusion in Rigid Nanoporous Amorphous Materials [J].
Thyagarajan, Raghuram ;
Sholl, David S. .
JOURNAL OF PHYSICAL CHEMISTRY C, 2022, 126 (19) :8530-8538
[33]   Molecular Dynamics Calculation of the Thermal Conductivity Coefficient of Single-Layer and Multilayer Graphene Sheets [J].
Selezenev, A. A. ;
Aleinikov, A. Yu. ;
Ganchuk, N. S. ;
Ganchuk, S. N. ;
Jones, R. E. ;
Zimmerman, J. A. .
PHYSICS OF THE SOLID STATE, 2013, 55 (04) :889-894
[34]   Tensile and compressive behaviors of prestrained single-layer black phosphorus: a molecular dynamics study [J].
Li, Lili ;
Feng, Chuang ;
Yang, Jie .
NANOSCALE, 2017, 9 (10) :3609-3619
[35]   Directional mechanical and thermal properties of single-layer black phosphorus by classical molecular dynamics [J].
Maryam, Afira ;
Abbas, Ghulam ;
Rashid, Muhammad ;
Sattar, Atif .
CHINESE PHYSICS B, 2018, 27 (01)
[36]   Selective Ionic Transport through Tunable Subnanometer Pores in Single-Layer Graphene Membranes [J].
O'Hern, Sean C. ;
Boutilier, Michael S. H. ;
Idrobo, Juan-Carlos ;
Song, Yi ;
Kong, Jing ;
Laoui, Tahar ;
Atieh, Muataz ;
Karnik, Rohit .
NANO LETTERS, 2014, 14 (03) :1234-1241
[37]   Molecular simulations and hydrodynamic theory of nonlocal shear-stress correlations in supercooled fluids [J].
Steffen, David ;
Schneider, Ludwig ;
Mueller, Marcus ;
Rottler, Joerg .
JOURNAL OF CHEMICAL PHYSICS, 2022, 157 (06)
[38]   Power generation by reverse electrodialysis in a single-layer nanoporous membrane made from core-rim polycyclic aromatic hydrocarbons [J].
Liu, Xue ;
He, Meng ;
Calvani, Dario ;
Qi, Haoyuan ;
Gupta, Karthick B. Sai Sankar ;
de Groot, Huub J. M. ;
Sevink, G. J. Agur ;
Buda, Francesco ;
Kaiser, Ute ;
Schneider, Gregory F. .
NATURE NANOTECHNOLOGY, 2020, 15 (04) :307-+
[39]   Templating effect of single-layer graphene supported by an insulating substrate on the molecular orientation of lead phthalocyanine [J].
Madhuri, K. Priya ;
Sagade, Abhay A. ;
Santra, Pralay K. ;
John, Neena S. .
BEILSTEIN JOURNAL OF NANOTECHNOLOGY, 2020, 11 :814-820
[40]   Quasi-static buckling simulation of single-layer graphene sheets by the molecular mechanics method [J].
Korobeynikov, S. N. ;
Alyokhin, V. V. ;
Annin, B. D. ;
Babichev, A. V. .
MATHEMATICS AND MECHANICS OF SOLIDS, 2015, 20 (07) :836-870