Elaboration of New Types, Environmentally Safe Fire- Extinguishing Powders and Establish the Conditions of Extinguish Optimum and Effective Use of Such Powders

L. Gurchumelia, M. Tsarakhov, T. Machaladze, Salome Tkemaladze, F. Bejanov, O. Chudakova
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引用次数: 3

Abstract

The aim of the presented investigation is the development of technology for production of novel, halogen-free, environmentally safe, highly efficient fire-extinguishing powders based on local mineral raw materials, which does not require modification with expensive, halogen-inclusive, hydrofobizing additives, providing low-cost production of fire-extinguishing powders in comparison with imported analogues. The optimal dispersity was selected in such way, that caking capacity be minimal and a homogeneous action of combustion products on the flame as well as a heterogeneous inhibition of combustion process must take place. The evaluation of powder efficiency is carried out with consideration of the both effects. Experimental data confirm that the developed fire-extinguishing powders are characterized with high performance characteristics, as well as high fire-extinguishing capacity. At the same time, it should be noted, that the efficiency of the obtained powders is practically the same as of standard imported powders, but do not contain any halogens, is environmentally safe and 1.5-2 times cheaper than the imported analogues. For obtained powders, the conditions of extinguish optimum and effective use of powder are stated. Optimum extinguishing condition means the selection of optimum intensity of powder supply into seat of fire when minimum consumption of powder provides fire extinguishing in minimum time. Thus, in order to determine optimum conditions of extinguishing it is necessary to study the dependence of powder specific consumption and extinguishing time to supply intensity. For our powders optimum condition of extinguish is: powder supply intensity I-0.6-1.0 kg/m2sec to fire center when powder specific consumption does not exceed G=0.8-1.2 kg/m2. Therefore, we can assume that the use of fire-extinguishing powders of our preparation is possible at extinguishing all types of fires over ground, as well as, underground constructions and does not need additional antiseptic measures.
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新型、环境安全的灭火粉的研制,并建立这种灭火粉的最佳和有效使用条件
本研究的目的是开发基于当地矿物原料的新型、无卤、环保安全、高效灭火粉的生产技术,这种灭火粉不需要使用昂贵的含卤、氢化添加剂进行改性,与进口类似物相比,可以提供低成本的灭火粉生产。最佳分散性的选择是这样的,即结块能力最小,燃烧产物对火焰的均匀作用以及燃烧过程的非均匀抑制必须发生。考虑了这两种影响,对粉体效率进行了评价。实验数据证实,所研制的灭火粉具有高性能、高灭火能力的特点。同时,需要注意的是,所获得的粉末的效率实际上与标准进口粉末相同,但不含任何卤素,环保安全,比进口类似物便宜1.5-2倍。对得到的粉末,阐述了灭火的最佳条件和粉末的有效利用。最优灭火条件是指在最小的粉末消耗量和最短的灭火时间内,选择最优的火源供粉强度。因此,为了确定最佳灭火条件,有必要研究粉末比消耗量和灭火时间与供应强度的关系。对于我们的粉末,灭火的最佳条件是:当粉末比消耗量不超过G=0.8-1.2 kg/m2时,向火场中心的供粉强度为I-0.6-1.0 kg/m2。因此,我们可以假设使用我们制备的灭火粉可以扑灭地面上以及地下建筑上的所有类型的火灾,并且不需要额外的防腐措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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