1 |
The factors on metallic iron crystallization from slag of direct coal liquefaction residue SiO2-Al2O3-Fe2O3-CaO-MgO-TiO2-Na2O-K2O system in the entrained flow gasification condition Li XM, Zhi LF, He C, Kong LX, Bai J, Guhl S, Meyer B, Li W Fuel, 246, 417, 2019 |
2 |
Interactions during co-pyrolysis of direct coal liquefaction residue with lignite and the kinetic analysis Xu JL, Bai ZQ, Li Z, Guo ZX, Hao P, Bai J, Li W Fuel, 215, 438, 2018 |
3 |
Optimization of direct coal liquefaction residue extraction Wang YG, Niu ZS, Shen J, Niu YX, Liu G, Sheng QT Energy Sources Part A-recovery Utilization and Environmental Effects, 39(1), 83, 2017 |
4 |
Physico-chemical structure and combustion properties of chars derived from co-pyrolysis of lignite with direct coal liquefaction residue Xu JL, Bai ZQ, Bai J, Kong LX, Lv DM, Han YN, Dai X, Li W Fuel, 187, 103, 2017 |
5 |
Product distribution and interactive mechanism during co-pyrolysis of a subbituminous coal and its direct liquefaction residue Li XH, Li LL, Li BF, Feng J, Li WY Fuel, 199, 372, 2017 |
6 |
Extraction of direct coal liquefaction residue using dipropylamine as a CO2-triggered switchable solvent Wang YG, Niu ZS, Shen J, Bai L, Niu YX, Wei XY, Li RF, Zhang J, Zou WY Fuel Processing Technology, 159, 27, 2017 |
7 |
Properties of direct coal liquefaction residue water slurry: Effect of treatment by low temperature pyrolysis Lv DM, Bai ZQ, Wei YC, Bai J, Kong LX, Guo ZX, Li X, Xu J, Li W Fuel, 179, 135, 2016 |
8 |
An approach for utilization of direct coal liquefaction residue: Blending with low-rank coal to prepare slurries for gasification Lv DM, Yuchi W, Bai ZQ, Bai J, Kong LX, Guo ZX, Yan JC, Li W Fuel, 145, 143, 2015 |
9 |
Pyrolysis characteristics and kinetics of residue from China Shenhua industrial direct coal liquefaction plant Xu L, Tang MC, Duan L, Liu BL, Ma XX, Zhang YL, Argyle MD, Fan MH Thermochimica Acta, 589, 1, 2014 |
10 |
Efficiently trapping asphaltene-type materials from direct coal liquefaction residue using alkylsulfate-based ionic liquids Bai L, Nie Y, Huang JC, Li Y, Dong HF, Zhang XP Fuel, 112, 289, 2013 |