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Experimental assessment on LPG fire extinguishing properties of three chemical powders before and after milling action

机译:碾磨作用前后三种化学粉末LPG灭火特性的实验评估

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The extinguishing performance of three dry chemical powders (DCPs) was investigated through a lab-scale suppression system for liquefied petroleum gas (LPG) fire. The magnesium hydroxide (Mg(OH)(2)), sodium bicarbonate (NaHCO3), and commercial ABC - MAP powders are used to prepare two groups of samples: raw samples and milled samples. The effect of milling action on the properties of DCPs, such as the bulk density, microstructure, particle size, thermal decomposition, and the extinguishing performance, is analyzed. The density test revealed that the bulk density increased after milling, and the Mg(OH)(2) had a lower density than the other powders. The microstructure analysis showed that the milled powders had a smaller particle size and more regular shapes than raw powders. The thermal analysis demonstrated that the powder decomposition process was somewhat similar with a slight difference in initial decomposition temperature and degradation rate. The fire tests proved that the extinguishing efficacy greatly improved after the samples were milled. Moreover, the experiments indicated that the milled Mg(OH)(2) was superior in fire extinguishing to the other samples with shorter extinction time and less agent quantity consumed. Based on the results, it can be inferred that the milling action has a significant influence in enhancing the extinguishing mechanisms' efficiency of DCPs.
机译:通过用于液化石油气(LPG)火灾的实验室抑制系统研究了三种干化学粉末(DCP)的灭火性能。使用氢氧化镁(Mg(OH)(2)),碳酸氢钠(NaHCO 3)和商业ABC-MAP粉末制备两组样品:原料样品和研磨样品。分析了研磨作用对DCP的性能的影响,例如堆积密度,微观结构,粒度,热分解和灭火性能。密度试验显示铣削后堆积密度增加,并且Mg(OH)(2)的密度低于其他粉末。微观结构分析表明,研磨粉末具有比原料粉末更小的粒径和更规则的形状。热分析证明粉末分解过程与初始分解温度和降解速率的轻微差异有些类似。火灾试验证明,在研磨样品后灭火疗效大大提高。此外,实验表明,研磨的Mg(OH)(2)优异地灭火到其他样品,其消耗较短的消耗时间和较少的药物量。基于结果,可以推断出铣削作用对提高DCPS灭火机制的效率具有显着影响。

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