Jiangsu Key Laboratory of Hazardous Chemicals Safety and Control, College of Safety Science and Engineering, Nanjing Tech University, Mail Box 13, No. 200 North Zhongshan Rd., Nanjing, 210009, China.
Jiangsu Key Laboratory of Hazardous Chemicals Safety and Control, College of Safety Science and Engineering, Nanjing Tech University, Mail Box 13, No. 200 North Zhongshan Rd., Nanjing, 210009, China.
J Hazard Mater. 2018 Feb 15;344:558-565. doi: 10.1016/j.jhazmat.2017.10.060. Epub 2017 Oct 31.
The inerting effect of crystalline II type Ammonium Polyphosphate (APP-II) on explosion characteristics of micron-size Acrylates Copolymer (ACR) powders was experimentally studied. The inerting mechanism was analysed by combining thermogravimetry (TG) and differential scanning calorimetry (DSC) tests. The results indicated that the maximum explosion pressure (P) and explosion index (K) was 10.4bar and 416bar m/s, respectively for ACR powders. The minimum explosion concentration (MEC) of ACR powders ranged from 20 to 30g/m, and the experimental minimum ignition energy (MIE) of the ACR dust cloud was 10mJ. Therefore, ACR dust was determined to be severely combustible dust. There existed a minimum inerting concentration (MIC), and the explosion of ACR powders can be inerted completely by 80wt% APP-II. Furthermore, 30 and 40wt% APP-II had a significant inerting effect on the MIE of ACR dust. According to TG and DSC tests, thermal stability of ACR would be augmented by the introduction of APP-II. The addition of APP-II triggered lower maximum mass loss rate (MMLR), higher temperature corresponding to mass loss of 90% (T), chars yield, and endothermic peaks. Consequently, the ACR dust explosion was inerted by the chemical interaction of ACR/APP-II mixtures and endothermic decomposition of APP-II.
实验研究了晶Ⅱ型聚磷酸铵(APP-II)对微米级丙烯酸酯共聚物(ACR)粉末爆炸特性的惰化效果。通过热重(TG)和差示扫描量热(DSC)测试相结合,分析了惰化机理。结果表明,ACR 粉末的最大爆炸压力(P)和爆炸指数(K)分别为 10.4bar 和 416bar·m/s。ACR 粉末的最小爆炸浓度(MEC)范围为 20 至 30g/m,ACR 粉尘云的实验最小点火能(MIE)为 10mJ。因此,ACR 粉尘被确定为严重可燃粉尘。存在最小惰化浓度(MIC),80wt%的 APP-II 可完全惰化 ACR 粉末的爆炸。此外,30wt%和 40wt%的 APP-II 对 ACR 粉尘的 MIE 具有显著的惰化作用。根据 TG 和 DSC 测试,APP-II 的引入提高了 ACR 的热稳定性。APP-II 的添加导致最大质量损失率(MMLR)降低,90%质量损失对应的温度(T)升高,炭产率和吸热峰升高。因此,ACR 粉尘的爆炸是通过 ACR/APP-II 混合物的化学相互作用和 APP-II 的吸热分解来惰化的。