1 |
Molecular structure characterization of middle-high rank coal via XRD, Raman and FTIR spectroscopy: Implications for coalification Jiang JY, Yang WH, Cheng YP, Liu ZD, Zhang Q, Zhao K Fuel, 239, 559, 2019 |
2 |
Nanopore structure of deep-burial coals explored by AFM Liu XF, Song DZ, He XQ, Wang ZP, Zeng MR, Deng K Fuel, 246, 9, 2019 |
3 |
Mechanolysis mechanisms of the fused aromatic rings of anthracite coal under shear stress Wang J, Guo GJ, Han YZ, Hou QL, Geng M, Zhang ZC Fuel, 253, 1247, 2019 |
4 |
Notes on the mechanisms of coal metamorphism in the Pennsylvania Anthracite Fields Hower JC, Rimmer SM, Mastalerz M, Wagner NJ International Journal of Coal Geology, 202, 161, 2019 |
5 |
Distribution of methane contents and coal rank in the profiles of deep boreholes in the Upper Silesian Coal Basin, Poland Kedzior S International Journal of Coal Geology, 202, 190, 2019 |
6 |
Pore structure evolution of low-rank coal in China Xin FD, Xu H, Tang DZ, Yang JS, Chen YP, Cao LK, Qu HX International Journal of Coal Geology, 205, 126, 2019 |
7 |
Pore structure characterization of coal particles via MIP, N-2 and CO2 adsorption: Effect of coalification on nanopores evolution Jiang JY, Yang WH, Cheng YP, Zhao K, Zheng SJ Powder Technology, 354, 136, 2019 |
8 |
Material composition, pore structure and adsorption capacity of low-rank coals around the first coalification jump: A case of eastern Junggar Basin, China Tao S, Chen SD, Tang DZ, Zhao X, Xu H, Li S Fuel, 211, 804, 2018 |
9 |
Coal macromolecular structural characteristic and its influence on coalbed methane adsorption Liu XF, Song DZ, He XQ, Nie BS, Wang Q, Sun R, Sun DL Fuel, 222, 687, 2018 |
10 |
Impact of hydrothermal carbonization conditions on the formation of hydrochars and secondary chars from the organic fraction of municipal solid waste Lucian M, Volpe M, Gao LH, Piro G, Goldfarb JL, Fiori L Fuel, 233, 257, 2018 |