Experimental Study of the Diffusion Combustion of Suspension of Boron Nanoparticles in Isopropanol

In this paper, temperature distribution in the diffusion flame during combustion of isopropanol or isopropanol with addition of boron nanoparticles in the amount of 0.5 wt % in oxygen was studied experimentally by using coherent anti-Stokes Raman scattering (CARS) spectroscopy. The addition of boron...

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Veröffentlicht in:Doklady. a journal of the Russian Academy of Sciences. Physics 2022-02, Vol.67 (2), p.39-43
Hauptverfasser: Barmina, E. V., Zhilnikova, M. I., Aiyyzhy, K. O., Kobtsev, V. D., Kozlov, D. N., Kostritsa, S. A., Orlov, S. N., Saveliev, A. M., Smirnov, V. V., Titova, N. S., Shafeev, G. A.
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container_issue 2
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container_title Doklady. a journal of the Russian Academy of Sciences. Physics
container_volume 67
creator Barmina, E. V.
Zhilnikova, M. I.
Aiyyzhy, K. O.
Kobtsev, V. D.
Kozlov, D. N.
Kostritsa, S. A.
Orlov, S. N.
Saveliev, A. M.
Smirnov, V. V.
Titova, N. S.
Shafeev, G. A.
description In this paper, temperature distribution in the diffusion flame during combustion of isopropanol or isopropanol with addition of boron nanoparticles in the amount of 0.5 wt % in oxygen was studied experimentally by using coherent anti-Stokes Raman scattering (CARS) spectroscopy. The addition of boron was found to result in an increase in temperature in the flame front by 150 K.
doi_str_mv 10.1134/S102833582202001X
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subjects Boron
Classical Mechanics
Coherent scattering
Combustion
Flame propagation
Isopropanol
Mathematical and Computational Physics
Nanoparticles
Physics
Physics and Astronomy
Raman spectra
Temperature distribution
Theoretical
title Experimental Study of the Diffusion Combustion of Suspension of Boron Nanoparticles in Isopropanol
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