参考文献/References:
[1]BOBASHI R. Studies on accidental gas and dust explosions[J].Fire Safety Journal,2017,91(7):21-27.
[2]MARMOA L, RICCIOB D,DANZIA E.Explosibility of metallic waste dusts[J].Process Safety and Environmental Protection,2017,107(4):69-80.
[3]FUMAGALLIA A,DERUDIA M,ROTA R,et al.Prediction of the deflagration index for organic dusts as a function of the mean particle diameter[J].Journal of Loss Prevention in the Process Industries,2017,50(10):67-74.
[4]TENG F,CHEN Q,ZHANG J X,et al.Flame propagation and dust transient movement in a dust cloud explosion process[J].Journal of Loss Prevention in the Process Industries,2017,49(9):572-581.
[5]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.
[6]黎世静, 马军德, 刘跃华. 粉尘浓度传感器在粮食系统中的应用[J]. 电子世界, 2017(8):129.
[7]刘 炜. 煤矿工作场所空气中粉尘浓度检测[J]. 煤炭与化工, 2017, 40(3): 154-156.
[8]LI G, YANG H X, YUAN C M, et al. A catastrophic aluminium-alloy dust explosion in China[J]. Journal of Loss Prevention in the Process Industries, 2016, 39:121-130.
[9]LIU Q, LI X D, BAI C H.Deflagration to detonation transition in aluminum dust-air mixture under weak ignition condition[J]. Combustion and Flame, 2009, 156:914-921.
[10]KOWHAKUL W, SHIBAHARA H, MASAMOTO H, et al. Dust explosion characteristics of cellulose ethers and cellulose acetates with various degrees of acetylation[J]. Journal of Loss Prevention in the Process Industries, 2016, 44:544-550.
[11]刘银, 廖志鑫, 贺良茂,等. 基于单片机的粉尘检测系统的设计[J]. 煤矿机械, 2011, 32(7):240-243.
[12]田军委, 邓晓荣, 程洪涛,等. 智能粉尘浓度检测系统设计[J]. 科技创新导报, 2015(32):24-25.
[13]曾世清, 龚本龙, 王南. 粉尘浓度在线检测的探讨[J]. 中国科技信息, 2017(1):69.
[14]唐娟. 粉尘浓度在线监测技术的现状及发展趋势[J]. 矿业安全与环保, 2009, 36(5):69-71.
[15]PALTRINIERI N, KHAN F, AMYOTTE P, et al. Dynamic approach to risk management: application to the hoeganaes metal dust accidents[J]. Process Safety and Environmental Protection, 2014, 92:669-679.
[16]郭少嘉, 张明明, 周学富,等. 工作环境粉尘检测与职业病关系[J]. 中国医学工程, 2011(8):90-91.
[17]周凯红, 李成, 王聪毅,等. 基于CAN总线的车间粉尘检测系统设计[J]. 仪表技术与传感器, 2016(11):81-84.
[18]马凤英. 模式分类与修补反演算法在光电粉尘检测中的应用[J]. 仪器仪表学报, 2006, 27(z1):359-360.