Research of safety parameters and reaction mechanism for explosive materials mixed with monoammonium phosphate

碩士 === 中臺科技大學 === 安全與防災科技研究所 === 101 === Runaway reaction caused by organic peroxides in the past years, which have induced fire or explosion accidents due to its instability characteristics in many countries. 1,1,-Di(tert-butylperoxy) cyclohexane (CH70) and 1,1,-Di-tert-butylperoxy-3,3,5-trimethylc...

Full description

Bibliographic Details
Main Authors: Huang, Sheng-Tien, 黃聖點
Other Authors: Tseng, Jo-Ming
Format: Others
Language:zh-TW
Published: 2013
Online Access:http://ndltd.ncl.edu.tw/handle/40435059191609974618
Description
Summary:碩士 === 中臺科技大學 === 安全與防災科技研究所 === 101 === Runaway reaction caused by organic peroxides in the past years, which have induced fire or explosion accidents due to its instability characteristics in many countries. 1,1,-Di(tert-butylperoxy) cyclohexane (CH70) and 1,1,-Di-tert-butylperoxy-3,3,5-trimethylcyclohexane (TMCH) were two kinds of explosive materials applied in this study. CH70 and TMCH were extensively employed in relevent chemical industries for the polymerization of styrene and rubber, applied as the agent in the process of polymerization. In addition, we also applied the monoammonium phosphate (MAP) to mixed with the above-mentioned materials to test the extinguishing efficiency. In this study, thermal analysis was used to realize the explosive materials exothermic and endothermic phenomenon and decomposition process by differential scanning calorimetry (DSC). Results by this study indicated that reaction heat of CH70 and TMCH were high than 1,300 J/g and 1,200 J/g, separately. Inhibition reaction was very significantly, while CH70 mixed with MAP. Kinetic and safety parameters can be used in the manufacturing process for preventing the accident.