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Study on the influence of material thermal characteristics on dust explosion parameters of three long-chain monobasic alcohols
Authors:Wei Gao  Shengjun Zhong  Toshio Mogi  Hongyang Liu  Jianzhong Rong  Ritsu Dobashi
Institution:1. Department of Chemical System Engineering, School of Engineering, The University of Tokyo, Hongo 7-3-1, Bunkyo-ku, Tokyo 113-8656, Japan;2. Industrial Explosion Protection Institute, Northeastern University, Shenyang, Liaoning 110006, PR China;3. Sichuan Fire Research Institute of Ministry of Public Security, Chengdu, Sichuan 610036, PR China
Abstract:Sensitivity and severity parameters are critical for risk assessment and safety management of dust explosions. In this paper, to reveal the effects of material thermal characteristics on dust explosions parameters during monobasic alcohols dust explosions, three long chain monobasic alcohols, being solid at room temperature and similar in physical–chemical properties, were chosen to carry out experiments in different functional test apparatus according to the internationally accepted ASTM standards. As a result, it was found that the material thermal characteristics strongly affected these basic explosive parameters. On the one hand, for the sensitivity parameters, Minimum Ignition Temperature, Minimum Ignition Energy and Electrical Resistivity were the highest in the Eicosanol dust cloud, while Minimum Explosible Concentration in this cloud was the lowest. On the other hand, for severity parameters, Maximum Explosion Pressure in Eicosanol dust cloud always maintained the highest values as varying the dust concentrations. In contrast, Deflagration Index showed a complex trend.
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