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Fuel effects on aqueous film formation and foam degradation and their impact on fire suppression by foams containing fluorosurfactants

机译:对含水膜形成和泡沫劣化的燃料效应及其对含氟表面活性剂的泡沫对火抑制的影响

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摘要

Spreading coefficient, foam degradation, fuel transport through a foam layer, foam spread, and fire extinction time were collected by varying fuels for a given fluorosurfactant formulation. Varying fuel structure systematically enabled variation of foam-fuel interactions, and spreading coefficients, which affected aqueous film formation. A wide range of spreading coefficients were studied using two foam formulations. Surfactant formulations with near-zero or negative spreading coefficients (-1.2, -0.12 mN/m) suppressed the fires within the same time or faster than those with positive spreading coefficients (1.77, 3.28 mN/m). Both foams extinguished an iso-octane and methylcyclohexane pool fire despite negative spreading coefficients on iso-octane and positive spreading coefficients on methylcyclohexane. The fire extinction times collected relate more closely to foam degradation than to film formation. Foam degradation results showed a roughly 20% variation in lifetime between the two foams and the three fuels, consistent with fire extinction times. To understand the relationship between foam degradation and solution properties, a single lamella experiment was designed that monitors lamella thickness and lifetime. This experiment, relating solution to foam properties, will aid in the development of environmentally friendly surfactant replacements in firefighting foams.
机译:通过改变给定的含氟表面活性剂制剂,通过不同的燃料收集通过泡沫层,泡沫涂布和灭火时间来收集通过泡沫层,泡沫涂布和灭火时间的扩散系数,泡沫劣化,燃料输送。改变燃料结构系统地实现了泡沫燃料相互作用的变化,以及影响水性膜的膨胀系数。使用两种泡沫制剂研究了各种扩散系数。具有接近零或负展开系数的表面活性剂配方(-1.2,-0.12mN / m)在同一时间内抑制火灾或比具有正扩散系数的速度(1.77,3.28mN / m)的捕发物。尽管在甲基环己烷上的异辛烷和正扩散系数上消极展开系数,但两种泡沫熄灭了异辛烷和甲基环己烷池火焰。收集的火消灭时间更接近泡沫降解而不是膜形成。泡沫劣化结果显示了两种泡沫和三个燃料之间的寿命大约20%的变化,与火灾灭绝次数一致。为了了解泡沫降解和溶液性能之间的关系,设计了单个薄片实验,以监测薄片厚度和寿命。该实验将解决方案与泡沫特性相关,将有助于开发在消防泡沫中的环保表面活性剂替代品。

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  • 来源
    《Fire and materials》 |2021年第6期|833-841|共9页
  • 作者单位

    US Naval Res Lab Chem Div Washington DC 20375 USA;

    George Washington Univ Washington DC USA;

    US Naval Res Lab Chem Div Washington DC 20375 USA;

    US Naval Res Lab Chem Div Washington DC 20375 USA;

    US Naval Res Lab Chem Div Washington DC 20375 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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