参考文献
[1] 李运芝,袁俊明,王保民.粉尘爆炸研究进展[J].太原师范学院学报(自然科学版),2004,3(2):79-82.
[2] 张二强,张礼敬,陶刚,等.粉尘爆炸特征和预防措施探讨[J].中国安全生产科学技术,2012,8(2):88-92.
[3] X.Q.Yan,J.L.Yu.Dust Explosion Incidents in China[J].Process Safety Progress,2012,31(2):187-189.
[4] 魏吴晋.铝纳米粉尘爆炸及其抑制技术研究[D].徐州:中国矿业大学,2010.
[5] Q.Z.Li,B.Q.Lin,W.X.Li,et al.Explosion Characteristics of Nano-Aluminum Powder-Air Mixtures in 201 Spherical Vessels[J].Powder Technology,2011,212(2):303-309.
[6] A.Krietsch,M.Scheid,M.Schmidt,et al.Explosion Behaviour of Metallic Nano Powders[J].Journal of Loss Prevention in the Process Industries,2015,36:237-243.
[7] A.Azhagurajan,N.Selvakumar,M.Mohammed Yasin.Minimum Ignition Energy for Micro and Nano Flash Powders[J].Process Safety Progress,2012,31(1):19-23.
[8] J.Bouillard,A.Vignes,O.Dufaud,et al.Ignition and Explosion Risks of Nanopowders[J].Journal of Hazardous Materials,2010,181(1-3):873-880.
[9] O.Dufaud,A.Vignes,F.Henry,et al.Ignition and Explosion of Nanopowders:Something New under the Dust[J].Journal of Physics:Conference Series,2011,304:1-10.
[10] A.Vignes,F.Muñoz,J.Bouillard,et al.Risk Assessment of the Ignitability and Explosivity of Aluminum Nanopowders[J].Process Safety and Environmental Protection,2012,90(4):304-310.
[11] H.C.Wu,H.J.Ou,D.J.Peng,et al.Dust Explosion Characteristics of Agglomerated 35nm and 100nm Aluminum Particles[J].International Journal of Chemical Engineering,2010,2010:1-6.
[12] H.C.Wu,R.C.Chang,H.C.Hsiao.Research of Minimum Ignition Energy for Nano Titanium Powder and Nano Iron Powder[J].Journal of Loss Prevention in the Process Industries,2009,22(1):21-24.
[13] C.M.Yuan,P.R.Amyotte,M.N.Hossain,et al.Minimum Ignition Energy of Nano and Micro Ti Powder in the Presence of Inert Nano TiO2 Powder[J].Journal of Hazardous Materials,2014,274:322-330.
[14] C.M.Yuan,P.R.Amyotte,M.N.Hossain,et al.Minimum Ignition Temperature of Nano and Micro Ti Powder Clouds in the Presence of Inert Nano TiO2 Powder[J].Journal of Hazardous Materials,2014,275:1-9.
[15] S.P.Boilard,P.R.Amyotte,F.I.Khan,et al.Explosibility of Micron-and Nano-Size Titanium Powders[J].Journal of Loss Prevention in the Process Industries,2013,26(6):1646-1654.
[16] M.Mittal.Explosion Characteristics of Micron-and Nano-Size Magnesium Powders[J].Journal of Loss Prevention in the Process Industries,2014,27:55-64.
[17] B.Y.Jiang,B.Q.Lin,S.L.Shi,et al.Explosive Characteristics of Nanometer and Micrometer Aluminum-Powder[J].Mining Science and Technology(China),2011,21(5):661-666.
[18] R.Dobashi.Risk of Dust Explosions of Combustible Nanomaterials[J].Journal of Physics:Conference Series,2009,170:1-6.
[19] R.K.Eckhoff.Are Enhanced Dust Explosion Hazards to Be Foreseen in Production,Processing and Handling of Powders Consisting of Nano-Size Particles?[J].Journal of Physics:Conference Series,2011,304(1):12-75.
[20] R.K.Eckhoff.Does the Dust Explosion Risk Increase When Moving fromμm-Particle Powders to Powders of nmParticles?[J].Journal of Loss Prevention in the Process Industries,2012,25(3):448-459.
[21] R.K.Eckhoff.Influence of Dispersibility and Coagulation on the Dust Explosion Risk Presented by Powders Consisting of nm-Particles[J].Powder Technology,2013,239:223-230.
[22] P.E.Bocanegra,V.Sarou Kanian,D.Davidenko,et al.Studies on the Burning of Micro-and Nanoaluminum Particle Clouds in Air[J].Progress in Propulsion Physics,2009,1:47-62.
[23] P.E.Bocanegra,D.Davidenko,V.Sarou Kanian,et al.Experimental and Numerical Studies on the Burning of Aluminum Micro and Nanoparticle Clouds in Air[J].Experimental Thermal and Fluid Science,2010,34(3):299-307.
[24] D.S.Sundaram,P.Puri,V.Yang.A General Theory of Ignition and Combustion of Nano-and Micron-Sized Aluminum Particles[J].Combustion and Flame,2016,169:94-109.
[25] Y.Tang,C.D.Kong,Y.C.Zong,et al.Combustion of Aluminum Nanoparticle Agglomerates:From Mild Oxidation to Microexplosion[J].Proceedings of the Combustion Institute,2017,36(2):2325-2332.
[26] Y.Huang,G.A.Risha,V.Yang,et al.Combustion of Bimodal Nano/Micron-Sized Aluminum Particle Dust in Air[J].Proceedings of the Combustion Institute,2007,31(2):2001-2009.
[27] Y.Huang,G.A.Risha,V.Yang,et al.Effect of Particle Size on Combustion of Aluminum Particle Dust in Air[J].Combustion and Flame,2009,156(1):5-13.