Quality metrics for elaborated aqueous fire extinguishing substance on base of copper(ii) chloride

Auteurs-es

  • Borys Mykhalichko Department of burning processes and General Chemistry L’viv state university of life safety Kleparivs’ka Str 35, L’viv, Ukraine, 79007, Ukraine
  • Olga Scherbina Department of burning processes and General Chemistry L’viv state university of life safety Kleparivs’ka Str 35, L’viv, Ukraine, 79007, Ukraine
  • Oleg Mykhalichko Chemical analysis laboratory “FUCHS MASTYLA UKRAINA” LLC Shevchenka Str 327-A, L’viv, Ukraine, 79069, Ukraine
  • Vitalii Petrovskii Testing laboratory of fire safety L’viv state university of life safety Kleparivs’ka Str 35, L’viv, Ukraine, 79007, Ukraine

DOI :

https://doi.org/10.15587/2313-8416.2015.46150

Mots-clés :

inhibitors of burning, copper(II) salts, aqueous fire extinguishing substance, fire-extinguishing aerosol, quality indices

Résumé

Research results relating to the measurement of kinematic viscosity, surface tension, density, acidity and other quality metrics (consistence, freezing point, etc.) for recently elaborated aqueous fire extinguishing substance (AFES) made up of 40% aqueous solution of copper(II) chloride with added different amounts of surface-active substance are presented in this article.

Bibliographies de l'auteur-e

Borys Mykhalichko, Department of burning processes and General Chemistry L’viv state university of life safety Kleparivs’ka Str 35, L’viv, Ukraine, 79007

Doctor of Science (chemistry), Professor

Olga Scherbina, Department of burning processes and General Chemistry L’viv state university of life safety Kleparivs’ka Str 35, L’viv, Ukraine, 79007

Philosophy doctor (pharmaceutics), Docent

Oleg Mykhalichko, Chemical analysis laboratory “FUCHS MASTYLA UKRAINA” LLC Shevchenka Str 327-A, L’viv, Ukraine, 79069

Philosophy doctor (chemistry), Chemist Analyst

Vitalii Petrovskii, Testing laboratory of fire safety L’viv state university of life safety Kleparivs’ka Str 35, L’viv, Ukraine, 79007

Without scientific degree, Senior researcher

Références

Mykhalitchko, B. M., Kovalyshyn, V. V., Godovanets, N. M. (2013). The water-based fire-extinguishing agent «WGHM-ІІ». Patent UA No 102757 C2, Bulletin, 15.

Godovanets, N. M., Mykhalitchko, B. M., Petrovskii, V. L., Scherbina, O. N. (2013). Fire testing of aqueous fire-extinguishing agent on base of copper(II) chloride. Fire safety problems, 33, 38–44.

Mykhalitchko, B. M., Scherbina, O. N., Godovanets, N. M., Petrovskii, V. L. (2013). Experimental determination technique of extinguishing efficiency of aqueous solutions of mineral salts. Fire safety, 22, 183–187.

Kopylov, N., Chibisov, A., Dushkin, A., Kudriavcev, E. (2008). Study of mechanism of a quenching of the model centers of a fire by the finely sprayed water. Fire Safety, 4, 45–58.

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Turchin, A., Antonov, A. (2008). Theoretical and experimental aspects of application technologies for fine spraying of water-based fire extinguishing substances. Science Bull. UkrSRIFS, 17 (1), 138–145.

Turchin, A. І., Borovikov, V. O., Antonov, A. V., Koziar, N. M. (2008). The investigation for determination of quality coefficient of some water-based fire-extinguishing agents Science Bull. UkrSRIFS, 18 (2), 110–115.

Antonov, A. V., Kovalyshyn, V. V., Turchin, A. І., Koziar, N. M. (2009). The water-based fire-extinguishing agent for fire extinguishing of “A” and “B” types by sprayed jets in compliance with all-Union State Standard 27331-87 by using of –30 to +50°С. Patent UA No 52969 U, Bulletin, 18.

Antonov, A. V., Kovalyshyn, V. V., Turchin, A. І., Vaisman, M. N., Koziar, N. M. (2011). The water-based fire-extinguishing agent for fire-extinguishing of “A” and “B” types by sprayed jets in compliance with all-Union State Standard 27331-87. Patent UA No 96797 С2, Bulletin, 23.

Korobeinichev, O. P., Shmakov, A. G., Chernov, A. A., Bol’shova, T. A., Shvartsberg, V. M., Kutsenogii, K. P., Makarov, V. I. (2010). Fire suppression by aqueous solutions salts aerosols. Comb. Expl. Shock Waves, 46 (1), 16–20.

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Publié-e

2015-07-26

Numéro

Rubrique

Technical Sciences