1 |
High-temperature synthesis in activated powder mixtures under conditions of linear heating: Ni-Al system Filimonov VY, Prokof'ev VG Combustion and Flame, 223, 88, 2021 |
2 |
Modelling of the minimum ignition temperature (MIT) of corn dust using statistical analysis and artificial neural networks based on the synergistic effect of concentration and dispersion pressure Arshad U, Taqvi SAA, Buang A Process Safety and Environmental Protection, 147, 742, 2021 |
3 |
Modes of mild ignition in shock tubes: Origins and classification Kiverin AD, Minaev KO, Yakovenko IS Combustion and Flame, 221, 420, 2020 |
4 |
Suppression of polyethylene dust explosion by sodium bicarbonate Wang Y, Lin CD, Qi YQ, Pei B, Wang LY, Ji WT Powder Technology, 367, 206, 2020 |
5 |
Effect of admixed silica on dispersibility of combustible dust clouds in a Godbert-Greenwald furnace Bu YJ, Yuan YX, Xue SQ, Amyotte P, Li C, Yuan WB, Ma ZP, Yuan CM, Li G Powder Technology, 374, 496, 2020 |
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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 |
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Ignition of CH4 intensely diluted with CO2 versus hot O-2/CO2 with high oxygen concentration in a counterflow jets Jia HQ, Zou C, Lu LX, Qian X, Yao H Energy, 177, 412, 2019 |
8 |
The investigation of co-combustion characteristics of tobacco stalk and low rank coal using a macro-TGA Cong KL, Han F, Zhang YG, Li QH Fuel, 237, 126, 2019 |
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The effect of water phase content in coal-water fuel on regularities of the fuel ignition and combustion Pinchuk VA, Sharabura TA, Kuzmin AV Fuel Processing Technology, 191, 129, 2019 |
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Ignition sensitivity and flame propagation of zirconium powder clouds Cao Y, Su H, Ge LF, Li YY, Wang YX, Xie LF, Li B Journal of Hazardous Materials, 365, 413, 2019 |