Jonathan P. Mathews
Jonathan P. Mathews
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The molecular representations of coal–A review
JP Mathews, AL Chaffee
Fuel 96, 1-14, 2012
Combustion of an Illinois No. 6 coal char simulated using an atomistic char representation and the ReaxFF reactive force field
F Castro-Marcano, AM Kamat, MF Russo Jr, ACT van Duin, JP Mathews
Combustion and Flame 159 (3), 1272-1285, 2012
Chemical–structural properties of South African bituminous coals: Insights from wide angle XRD–carbon fraction analysis, ATR–FTIR, solid state 13C NMR, and HRTEM techniques
GN Okolo, HWJP Neomagus, RC Everson, MJ Roberts, JR Bunt, ...
Fuel 158, 779-792, 2015
Permeability evolution in fractured coal—Combining triaxial confinement with X-ray computed tomography, acoustic emission and ultrasonic techniques
Y Cai, D Liu, JP Mathews, Z Pan, D Elsworth, Y Yao, J Li, X Guo
International Journal of Coal Geology 122, 91-104, 2014
The utility of coal molecular models
JP Mathews, ACT Van Duin, AL Chaffee
Fuel Processing Technology 92 (4), 718-728, 2011
Structural characterization of vitrinite-rich and inertinite-rich Permian-aged South African bituminous coals
D Van Niekerk, RJ Pugmire, MS Solum, PC Painter, JP Mathews
International Journal of Coal Geology 76 (4), 290-300, 2008
Molecular size of asphaltene solubility fractions
H Groenzin, OC Mullins, S Eser, J Mathews, MG Yang, D Jones
Energy & Fuels 17 (2), 498-503, 2003
A comparative evaluation of coal specific surface area by CO2 and N2 adsorption and its influence on CH4 adsorption capacity at different pore sizes
J Zhao, H Xu, D Tang, JP Mathews, S Li, S Tao
Fuel 183, 420-431, 2016
Dissolution and dispersion of coal in ionic liquids
P Painter, N Pulati, R Cetiner, M Sobkowiak, G Mitchell, J Mathews
Energy & Fuels 24 (3), 1848-1853, 2010
Sorption Capacity and Sorption Kinetic Measurements of CO2 and CH4 in Confined and Unconfined Bituminous Coal
JDN Pone, PM Halleck, JP Mathews
Energy & Fuels 23 (9), 4688-4695, 2009
A molecular model for Illinois No. 6 Argonne Premium coal: Moving toward capturing the continuum structure
F Castro-Marcano, VV Lobodin, RP Rodgers, AM McKenna, AG Marshall, ...
Fuel 95, 35-49, 2012
Simulation of nanoporous carbons: a chemically constrained structure
M Acharya, MS Strano, JP Mathews, SJL Billinge, V Petkov, ...
Philosophical Magazine B 79 (10), 1499-1518, 1999
A review of the application of X-ray computed tomography to the study of coal
JP Mathews, QP Campbell, H Xu, P Halleck
Fuel 209, 10-24, 2017
Inducing fractures and increasing cleat apertures in a bituminous coal under isotropic stress via application of microwave energy
H Kumar, E Lester, S Kingman, R Bourne, C Avila, A Jones, J Robinson, ...
International Journal of Coal Geology 88 (1), 75-82, 2011
Pyrolysis of a large-scale molecular model for Illinois no. 6 coal using the ReaxFF reactive force field
F Castro-Marcano, MF Russo Jr, ACT Van Duin, JP Mathews
Journal of Analytical and Applied Pyrolysis 109, 79-89, 2014
Soot and char molecular representations generated directly from HRTEM lattice fringe images using Fringe3D
V Fernandez-Alos, JK Watson, R vander Wal, JP Mathews
Combustion and Flame 158 (9), 1807-1813, 2011
Coal seam porosity and fracture heterogeneity of macrolithotypes in the Hancheng Block, eastern margin, Ordos Basin, China
J Zhao, H Xu, D Tang, JP Mathews, S Li, S Tao
International Journal of Coal Geology 159, 18-29, 2016
The structural alignment of coal and the analogous case of Argonne Upper Freeport coal
JP Mathews, A Sharma
Fuel 95, 19-24, 2012
Molecular representations of Permian-aged vitrinite-rich and inertinite-rich South African coals
DV Niekerk, JP Mathews
Fuel 89, 2010
Influence of maceral composition on the structure, properties and behaviour of chars derived from South African coals
MJ Roberts, RC Everson, HWJP Neomagus, D Van Niekerk, JP Mathews, ...
Fuel 142, 9-20, 2015
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