化学
氟碳化合物
表面张力
水溶液
临界胶束浓度
碳氢化合物
化学工程
发泡剂
肺表面活性物质
吸附
胶束
有机化学
多孔性
热力学
工程类
物理
生物化学
作者
Xinhua Zhu,He Huang,Xuhong Jia,Yuqiang Zhang
摘要
Abstract Surface properties of three fluorocarbon surfactants with different carbon chain lengths were studied at low pressures of 94.6, 74.1 and 61.0 kPa, respectively. The results showed that the saturation adsorption capacity and the critical micelle concentration (CMC) decreased, while the average molecular area ( A S ) and the surface tension at CMC ( γ CMC ) of fluorocarbon surfactants increased with decreasing pressure. The surface tension ( γ ) decreased with the decrease of pressure when the concentration of fluorocarbon surfactants was low. However, γ tended to be stable and increased with the drop of pressure when the concentration of surfactants was close or reach to CMC. In addition, the foaming and spreading performance of fluorocarbon surfactants decrease with the decrease of pressure, and the combination of fluorocarbon and hydrocarbon surfactants is beneficial to the improvement of performance (mixed systems: foam expansion E >6, 25% drainage time t 25% >241 s, 1/2 defoaming time t 1/2 >851 s, spreading amount V s >223 μL, spreading time t s <2 s). Further fire extinguishing experiment found that the influence of low pressure environment on fuel combustion characteristics is the key factor to determine fire extinguishing performance, while the influence of aqueous film‐forming foam (AFFF) performance is small. And AFFF based on the environmental‐friendly surfactant C 4 F 9 SO 2 NH(CH 2 ) 2 N + (CH 3 ) 2 CH 2 BrCH 2 OH (FC‐4) is an effective fire extinguishing agent under low pressure.
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