화학공학소재연구정보센터
검색결과 : 29건
No. Article
1 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
2 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
3 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
4 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
5 Ignition hazard of non-metallic dust clouds exposed to hotspots versus electrical sparks
Bu YJ, Yuan CM, Amyotte P, Li C, Cai JZ, Li G
Journal of Hazardous Materials, 365, 895, 2019
6 Theoretical and numerical study on ignition behaviour of coal dust layers on a hot surface with corrected kinetic parameters
Wu DJ, Song ZY, Schmidt M, Zhang Q, Qian XM
Journal of Hazardous Materials, 368, 156, 2019
7 Measuring hot-surface minimum ignition temperatures of dust clouds - History, present, future
Eckhoff RK
Journal of Loss Prevention in The Process Industries, 59, 63, 2019
8 Ignition hazard of titanium powder clouds exposed to hotspots
Bu YJ, Yuan CM, Amyotte P, Li C, Cai JZ, Li G
Journal of Loss Prevention in The Process Industries, 60, 106, 2019
9 Inhibiting effect of coal fly ash on minimum ignition temperature of coal dust clouds
Yu HK, Wang C, Pang L, Cui YY, Chen DP
Journal of Loss Prevention in The Process Industries, 61, 24, 2019
10 A model for the minimum ignition energy of dust clouds
Hosseinzadeh S, Berghmans J, Degreve J, Verplaetsen F
Process Safety and Environmental Protection, 121, 43, 2019