1 |
Dual Compressibility Characteristics of Lignite, Subbituminous, and High-Volatile Bituminous Coals: A New Insight into Permeability Zhou SD, Liu DM, Karpyn ZT, Cai YD, Yao YB Transport in Porous Media, 136(1), 295, 2021 |
2 |
In situ monitoring of pore structure of magnesium oxysulfate cement paste: Effect of MgSO4/H2O ratio Tang SW, Wei C, Cai R, Huang J, Chen E, Yuan J Journal of Industrial and Engineering Chemistry, 83, 387, 2020 |
3 |
Evolution of pore characteristics in oil shale during pyrolysis under convection and conduction heating modes Wang L, Yang D, Zhao YS, Wang GY Oil Shale, 37(3), 224, 2020 |
4 |
Experimental analysis of the pore structure and fractal characteristics of different metamorphic coal based on mercury intrusion-nitrogen adsorption porosimetry Han WB, Zhou G, Gao DH, Zhang ZX, Wei ZY, Wang HT, Yang HQ Powder Technology, 362, 386, 2020 |
5 |
Joint analysis of pores in low, intermediate, and high rank coals using mercury intrusion, nitrogen adsorption, and nuclear magnetic resonance Qin L, Li SG, Zhai C, Lin HF, Zhao PX, Yan M, Ding Y, Shi Y Powder Technology, 362, 615, 2020 |
6 |
Improved Model for Characterization of Fractal Features of the Pore Structure in a High-Rank Coalbed Methane Formation Jiang JX, Du JG, Wang YQ, Wang FL, Feng K, Leng CP Chemistry and Technology of Fuels and Oils, 55(3), 319, 2019 |
7 |
Damage characteristics of coal microstructure with liquid CO2 freezing-thawing Wen H, Wei GM, Ma L, Li ZB, Lei CK, Hao JC Fuel, 249, 169, 2019 |
8 |
A comprehensive pore structure study of the Bakken Shale with SANS, N-2 adsorption and mercury intrusion Liu KQ, Ostadhassan M, Sun LW, Zou J, Yuan YJ, Gentzis T, Zhang YX, Carvajal-Ortiz H, Rezaee R Fuel, 245, 274, 2019 |
9 |
Fractal and Multifractal Characteristics of Pore Throats in the Bakken Shale Liu KQ, Ostadhassan M, Kong LY Transport in Porous Media, 126(3), 579, 2019 |
10 |
Fractal Characteristics of Pore Structures in GGBFS-based Cement Pastes Kim J, Choi YC, Choi S Applied Surface Science, 428, 304, 2018 |