1 |
Acid-pretreated red mud for selective catalytic reduction of NOx with NH3: Insights into inhibition mechanism of binders Wang B, Ma J, Wang D, Gong ZQ, Shi QL, Gao CA, Lu CM, Crittenden J Catalysis Today, 376, 247, 2021 |
2 |
Effects of Graphene Oxide on the Mechanical and Microscopic Characteristics of Cement-Based Plugging Material for Preventing Spontaneous Combustion of Coal Xi X, Shi QL, Jiang SG, Wang K, Wu ZY, Shao H Energy & Fuels, 34(5), 6346, 2020 |
3 |
Study on the effect of ionic liquids on coal spontaneous combustion characteristic by microstructure and thermodynamic Xi X, Shi QL, Jiang SG, Zhang WQ, Wang K, Wu ZY Process Safety and Environmental Protection, 140, 190, 2020 |
4 |
Multiple strategies to decrease ignition temperature for soot combustion on ultrathin MnO2-x nanosheet array Shi QL, Liu TZ, Li Q, Xin Y, Lu XX, Tang WX, Zhang ZL, Gao PX, Anderson JA Applied Catalysis B: Environmental, 246, 312, 2019 |
5 |
Fly ash suspensions stabilized by hydroxypropyl guar gum and xanthan gum for retarding spontaneous combustion of coal Shi QL, Qin BT, Bi Q, Qu B Combustion Science and Technology, 190(12), 2097, 2018 |
6 |
Changes in the Surface Structure of Coal Caused by Igneous Intrusions and Their Effect on the Wettability Shi QL, Qin BT, Bi Q, Qu B Energy & Fuels, 32(9), 9371, 2018 |
7 |
Effects of igneous intrusions on the structure and spontaneous combustion propensity of coal: A case study of bituminous coal in Daxing Mine, China Shi QL, Qin BT, Liang HJ, Gao Y, Bi Q, Qu B Fuel, 216, 181, 2018 |
8 |
An experimental study on the effect of igneous intrusions on chemical structure and combustion characteristics of coal in Daxing Mine, China Shi QL, Qin BT, Bi Q, Qu B Fuel, 226, 307, 2018 |
9 |
Ag filament induced nonvolatile resistive switching memory behaviour in hexagonal MoSe2 nanosheets Han PD, Sun B, Li J, Li TJ, Shi QL, Jiao BX, Wu QS, Zhang XJ Journal of Colloid and Interface Science, 505, 148, 2017 |
10 |
Strongly coupled hybrid ZnCo2O4 quantum dots/reduced graphene oxide with high-performance lithium storage capability Yao W, Dai Y, Ge K, Luo JH, Shi QL, Xu JG Electrochimica Acta, 210, 783, 2016 |