基于应用要求的超细干粉灭火剂流动性增强和性能测试研究

Fire Pub Date : 2024-04-18 DOI:10.3390/fire7040146
Guangbin Lu, Junchao Zhao, Yanting Zhou, Yangyang Fu, Song Lu, Heping Zhang
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引用次数: 0

摘要

流动性在很大程度上影响着超细干粉灭火系统的应用,而疏水性和急性吸入毒性则是灭火剂需要关注的问题。在本研究中,我们考察了疏水性气相法二氧化硅对作为基质的磷酸二氢铵的疏水性和流动性的影响。研究结果表明,加入 6 重量百分比的疏水性气相法二氧化硅可获得最佳流动性,疏水角为 126.48°。过量加入疏水性气相法二氧化硅会阻碍磷酸二氢铵颗粒内的粉末流动。此外,研究还表明,在膨润土、硬脂酸镁和珍珠岩这三种功能添加剂中加入少量膨润土(0.5 wt.%)可进一步提高粉末流动性。在灭火实验的全淹没条件(1 立方米)下,所设计的 UDPA 的最低灭火浓度仅为 41.5 克/立方米,优于公开报道的数值。此外,在 60 秒、10 分钟和 3 天的时间内分别观察小鼠在近三倍熄灭浓度下的健康状况,结果表明所设计的 UDPA 不存在急性吸入毒性。总之,所开发的超细干粉灭火剂性能良好,具有广泛的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on Flowability Enhancement and Performance Testing of Ultrafine Dry Powder Fire Extinguishing Agents Based on Application Requirements
Flowability greatly affects the application of ultrafine dry powder fire extinguishing systems, while hydrophobicity and acute inhalation toxicity are concerns for fire extinguishing agents. In the present study, we examined the impact of hydrophobic fumed silica on the hydrophobicity and flow properties of ammonium dihydrogen phosphate as the base. Our findings revealed that incorporating 6 wt.% of hydrophobic fumed silica resulted in optimal flowability, accompanied by a hydrophobicity angle of 126.48°. The excessive inclusion of hydrophobic fumed silica impeded powder flow within the ammonium dihydrogen phosphate particles. Furthermore, the investigations indicated that the incorporation of a small quantity of bentonite (0.5 wt.%) amongst the three functional additives—bentonite, magnesium stearate, and perlite—offered further enhancements in powder flowability. In fire extinguishing experiments’ total flooding conditions (1 m3), the designed UDPA exhibited a minimum required extinguishing concentration of merely 41.5 g/m3, which is better than the publicly reported value. Moreover, observations on the well-being of mice subjected to nearly three times the extinguishing concentration at 60 s, 10 min, and 3 days, respectively, demonstrated the absence of acute inhalation toxicity associated with the designed UDPA. Collectively, the developed ultrafine dry powder fire extinguishing agent displayed promising performance and possesses broad applicability.
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