YU Li-fu, LI Gang, PAN Chao, YUAN Chun-miao. Experimental Research on China’s Oil Shale Dust Explosibility[J]. Journal of Northeastern University Natural Science, 2016, 37(8): 1203-1206.
[1]Sweis F K.The effect of admixed material on the ignition temperature of dust layers in hot environments[J].Hazardous Materials,1998,63(1):25-35. [2]Eckoff R K.Dust explosions in the process industries[M].2nd ed.Oxford:Butterworth Heineman,1997. [3]Hamdan M A,Qubbaj A.Inhibition effect of inert compounds on oil shale dust explosion[J].Applied Thermal Engineering,1998,18(5):221-227. [4]Hamdan M A,Sakhrieh A.Dust explosion of oil shale and olive cake solid fuels:a comparison study[J].International Journal of Energy Research,2005,29(10):872-878. [5]Sweis F K.The effect of admixed material on the minimum explosible concentration of oil shale[J]. Journal of Loss Prevention in the Process Industries,2006,19(6):702-704. [6]Jiang X M,Han X X,Cui Z G.Progress and recent utilization trends in combustion of Chinese oil shale[J].Progress in Energy and Combustion Science,2007,33(6):552-579. [7]Going J E,Chatrathi K,Cashdollar K L.Flammability limit measurements for dusts in 20 L and 1 m3 vessels[J].Journal of Loss Prevention in the Process Industries,2000,13(3/4/5):209-219. [8]Yuan C M,Li C,Li G,et al.Ignition temperature of magnesium powder clouds:a theoretical model[J].Journal of Hazardous Materials,2012,239/240:294-301.