Wang Qingguo, Zhang Yuanyuan, Li Yonghe, Pan Yong, Geng Xu, Zhu Xiaolong, Jiang Juncheng
College of Safety Science and Engineering, Nanjing Tech University, Nanjing, 210009, China.
State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei, 230026, People's Republic of China.
Environ Sci Pollut Res Int. 2023 Jan;30(4):11065-11080. doi: 10.1007/s11356-022-22969-y. Epub 2022 Sep 12.
Aqueous film-forming foam (AFFF) in firefighting foam can effectively extinguish oil fire. However, AFFF will be phased out due to the presence of persistent organic pollutants such as perfluorooctane sulfonates. It is necessary to explore environment-friendly foam extinguishing agent. Silicone surfactant is a kind of environmentally friendly surfactants with high surface activity, which can be used as a substitute for fluorocarbon surfactant. In this study, silicone surfactant and cationic surfactant were combined to adsorb nanosilica particles to form a multiphase system. The foaming property and foam stability of the multiphase system were tested by stirring method. The foam suppression effect on fuel vapor, fire extinguishing, and burn-back performance was tested by self-designed foam suppression device and foam generating device of porous glass with recyclable liquid supply. The experimental results show that foam stability is enhanced and the foaming property is slightly decreased after the addition of nanoparticles. When the component of three-phase foam reaches the optimum, its suppression effect on fuel vapor is better than that of two-phase foam. The results of fire extinguishing and burn-back performance test showed that the fire extinguishing effect of three-phase foam was slightly worse than that of AFFF, but it has extremely strong burn-back performance.
消防泡沫中的水成膜泡沫(AFFF)能有效扑灭油类火灾。然而,由于全氟辛烷磺酸等持久性有机污染物的存在,AFFF将被逐步淘汰。因此,有必要探索环境友好型泡沫灭火剂。有机硅表面活性剂是一类具有高表面活性的环境友好型表面活性剂,可作为碳氟表面活性剂的替代品。本研究将有机硅表面活性剂与阳离子表面活性剂结合,吸附纳米二氧化硅颗粒形成多相体系。采用搅拌法测试了该多相体系的发泡性能和泡沫稳定性。利用自行设计的具有可循环液体供应的泡沫抑制装置和多孔玻璃泡沫发生装置,测试了该多相体系对燃料蒸汽的泡沫抑制效果、灭火性能和复燃性能。实验结果表明,添加纳米颗粒后泡沫稳定性增强,发泡性能略有下降。当三相泡沫的组分达到最佳时,其对燃料蒸汽的抑制效果优于两相泡沫。灭火和复燃性能测试结果表明,三相泡沫的灭火效果略逊于AFFF,但具有极强的复燃性能。