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Assessment of extinguishing waters from intermediate-scale fire tests

机译:通过中等规模的火灾测试评估灭火用水

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摘要

Water is, for several reasons, by far the most widely used agent for extinguishing fires. Large quantities will turn to steam, but much will drain away with more or less ecotoxic effects on the ground and aquatic environments. Although this fire water run-off does not usually present a serious risk to the environment, it is reasonable to take precautions and to have quick in situ measures for predicting the likely consequences for, for example, a nearby mechanobiological, wastewater treatment plant. The enormous environmental damage caused by extinguishing waters in the past has focused attention on this environmental problem. From the detailed assessments of relevant parameters, it is demonstrated that product-related potency values may be capable of distinguishing between products. Some products tend to have toxic potencies that can be as much as almost four times higher than others. Risk assessments will not only reveal the routes by which major environmental damage might occur but also areas where fire precautions are inadequate. Special tasks must be allocated to the fire brigade: the earlier a fire can be tackled, the greater the chance of successfully extinguishing it and minimising the quantity of contaminated water. In this context, other active precautions such as fire detectors and sprinklers also help to minimise the ecotoxic effect of extinguishing waters. The primary fire-safety objective is to prevent any fires, rather than to deal with their consequences.
机译:出于多种原因,水是迄今为止灭火最广泛的媒介。大量将转化为蒸汽,但大部分将流失,对地面和水生环境产生或多或少的生态毒性影响。尽管这种消防水的径流通常不会对环境造成严重威胁,但采取预防措施并采取快速的现场措施来预测对附近机械生物学废水处理厂的可能后果是合理的。过去因灭火而造成的巨大环境破坏已引起人们对这一环境问题的关注。通过对相关参数的详细评估,可以证明与产品相关的效能值可以区分产品。有些产品的毒性可能会比其他产品高出将近四倍。风险评估不仅会揭示可能造成重大环境破坏的路线,还会揭示防火措施不足的区域。必须向消防队分配特殊任务:可以尽早扑灭大火,成功扑灭大火并将污染水量降至最低的机会就越大。在这方面,其他积极的预防措施,例如火灾探测器和洒水装置,也有助于最小化灭火用水的生态毒性作用。消防的主要目标是防止任何火灾,而不是处理其后果。

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  • 来源
    《Clean technologies and environmental policy》 |2005年第2期|p. 127-132|共6页
  • 作者单位

    Safety Engineering, Fire and Explosion Safety, Wuppertal University, GauBstr 20, 42097 Wuppertal, Germany;

    Safety Engineering, Fire and Explosion Safety, Wuppertal University, GauBstr 20, 42097 Wuppertal, Germany;

    Safety Engineering, Fire and Explosion Safety, Wuppertal University, GauBstr 20, 42097 Wuppertal, Germany;

    Safety Engineering, Fire and Explosion Safety, Wuppertal University, GauBstr 20, 42097 Wuppertal, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程物理学;
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