Theoretical Prerequisites for Creating a Fire-Extinguishing Solution Based on Water-Absorbing Polymer Ecoflocf-07 for Extinguishing Fires in Ecosystems

Author:

Kodrik Anatolii1,Titenko Oleksandr1,Zhartovskyi Sergiy1,Borisov Andriy1,Shvydenko Andriy2

Affiliation:

1. Institute of Public Administration and Research in Civil Protection

2. National University of Civil Protection of Ukraine

Abstract

Extinguishing fires in ecosystems has features compared to extinguishing fires in residential and industrial buildings, due to the composition and structure of combustible materials, which can form many foci of smoldering and have the ability to re-ignite, have a relatively low fire load compared to man-made ones. All this leads to high costs of water for extinguishing, carrying out operations for additional extinguishing of fires that occur after the main extinguishing and sets special requirements for aqueous extinguishing agents for their extinguishing.The paper analyzes the current state of the availability and trends of development in the world and domestic practice of effective water extinguishing agents and technologies for their use. Possible ways to improve recipes and increase the efficiency of fire extinguishing substances are outlined, taking into account, first of all, the criteria of efficiency, economy and environmental friendliness.It is noted that the main direction of increasing the fire extinguishing capacity of water is to create combined fire extinguishing solutions that can combine several methods of extinguishing in one technological operation: cooling, isolation and inhibition, which, other things being equal, reduces fire extinguishing consumption and extinguishing efficiency. An integrated direction of increasing the fire-extinguishing capacity of water can be considered to increase the coefficient of active use of water by reducing the surface tension of the fire-extinguishing solution, increasing the wettability and viscosity of water by introducing appropriate additives, obtaining optimal droplet dispersion.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference19 articles.

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3. S.V. Zhartovskyi, Detection of the influence of the chemical composition of aqueous fire extinguishing substances on the basis of Na2SiO3 and K2CO3 on their fire-extinguishing efficiency during extinguishing of class A fires. Teoriia i praktyka hasinnia pozhezh ta likvidatsii nadzvychainykh sytuatsii. (2016) 46–49 [in Ukrainian].

4. A.I. Kodrik, S.M. Shakhov, S.A. Vinogradov, O.M. Titenko, O.V. Parkhomchyk, Mathematical modeling of gas-liquid flow in compressed air foam generation systems. Technology audit and production reserves. 4/3(54) (2020) 29–35.

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