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參考文獻

[1] R.K.Eckhoff.Understanding Dust Explosions.The Role of Powder Science and Technology[J].Journal of Loss Prevention in the Process Industries,2009,22(1):105-116.

[2] 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.

[3] R.K.Eckhoff.Dust Explosions:Fundamentals[M]//P.R.Amyotte,F.I.Khan.Methods in Chemical Process Safety:vol.3.Holand:Elsevier,2019.

[4] W.Gao,X.Y.Zhang,D.W.Zhang,et al.Flame Propagation Behaviours in Nano-Metal Dust Explosions[J].Powder Technology,2017,321:154-162.

[5] 孫金華.火焰精細結構及其傳播動力學[M].北京:科學出版社,2011.

[6] J.L.Yu,X.Y.Zhang,Q.Zhang,et al.Combustion Behaviors and Flame Microstructures of Micro-and Nano-Titanium Dust Explosions[J].Fuel,2016,181:785-792.

[7] C.T.Cloney,P.R.Amyotte.Development of An Organizational Framework for Studying Dust Explosion Phenomena[J].Journal of Loss Prevention in the Process Industries,2014,30:228-235.

[8] 中華人民共和國應急管理部.粉塵防爆安全規程:GB 15577—2018[S].2018.

[9] P.C.Martin,C.Luc,H.Marc,et al.Dust Explosions:Safety Measure[M]//P.R.Amyotte,F.I.Khan.Methods in Chemical Process Safety:vol.3.Holand:Elsevier,2019.

[10] P.Holbrow.Dust Explosion Venting of Small Vessels and Flameless Venting[J].Process Safety and Environmental Protection,2013,91(3):183-190.

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