Analytical estimation of particle shape formation parameters in a plasma-chemical reactor

Analytical estimation of particle shape formation parameters in a plasma-chemical reactor implementing the process of thermochemical decomposition of liquid droplet agents (precursors) in the flow of a high-temperature gaseous heat-transfer medium was obtained. The basic factor which determines the...

Full description

Bibliographic Details
Main Authors: Zhukov Ilya A., Bondarchuk Sergei S., Zhukov Alexander S., Bondarchuk Ivan S., Borisov Boris V., Ayeshina Tatiana N.
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/201792010039
id doaj-9387a906099247ad9b8078b0ecaa7a89
record_format Article
spelling doaj-9387a906099247ad9b8078b0ecaa7a892021-02-02T08:17:43ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-01920103910.1051/matecconf/201792010039matecconf_tibet2017_01039Analytical estimation of particle shape formation parameters in a plasma-chemical reactorZhukov Ilya A.0Bondarchuk Sergei S.Zhukov Alexander S.1Bondarchuk Ivan S.2Borisov Boris V.3Ayeshina Tatiana N.4National Research Tomsk State UniversityNational Research Tomsk State UniversityNational Research Tomsk State UniversityNational Research Tomsk Polytechnic UniversityNational Research Tomsk Polytechnic UniversityAnalytical estimation of particle shape formation parameters in a plasma-chemical reactor implementing the process of thermochemical decomposition of liquid droplet agents (precursors) in the flow of a high-temperature gaseous heat-transfer medium was obtained. The basic factor which determines the process is the increase of concentration of a dissolved salt precursor component at the surface of a liquid particle due to solvent evaporation. According to the physical concept of the method of integral balance the diffusion process of concentration change is divided into two stages: the first stage is when the size of gradient layer does not reach the center of a spherical droplet and the second stage when the concentration at the center of a liquid droplet begins to change. The solutions for concentration fields were found for each stage using the method of integral balance taking into account the formation of salt precipitate when the concentration at the surface of the droplet reaches certain equilibrium value. The results of estimation of the influence of various reactor operation parameters and characteristics of initial solution (precursor) on the morphology of particles formed – mass fraction and localization of salt precipitate for various levels of evaporation.http://dx.doi.org/10.1051/matecconf/201792010039
collection DOAJ
language English
format Article
sources DOAJ
author Zhukov Ilya A.
Bondarchuk Sergei S.
Zhukov Alexander S.
Bondarchuk Ivan S.
Borisov Boris V.
Ayeshina Tatiana N.
spellingShingle Zhukov Ilya A.
Bondarchuk Sergei S.
Zhukov Alexander S.
Bondarchuk Ivan S.
Borisov Boris V.
Ayeshina Tatiana N.
Analytical estimation of particle shape formation parameters in a plasma-chemical reactor
MATEC Web of Conferences
author_facet Zhukov Ilya A.
Bondarchuk Sergei S.
Zhukov Alexander S.
Bondarchuk Ivan S.
Borisov Boris V.
Ayeshina Tatiana N.
author_sort Zhukov Ilya A.
title Analytical estimation of particle shape formation parameters in a plasma-chemical reactor
title_short Analytical estimation of particle shape formation parameters in a plasma-chemical reactor
title_full Analytical estimation of particle shape formation parameters in a plasma-chemical reactor
title_fullStr Analytical estimation of particle shape formation parameters in a plasma-chemical reactor
title_full_unstemmed Analytical estimation of particle shape formation parameters in a plasma-chemical reactor
title_sort analytical estimation of particle shape formation parameters in a plasma-chemical reactor
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2017-01-01
description Analytical estimation of particle shape formation parameters in a plasma-chemical reactor implementing the process of thermochemical decomposition of liquid droplet agents (precursors) in the flow of a high-temperature gaseous heat-transfer medium was obtained. The basic factor which determines the process is the increase of concentration of a dissolved salt precursor component at the surface of a liquid particle due to solvent evaporation. According to the physical concept of the method of integral balance the diffusion process of concentration change is divided into two stages: the first stage is when the size of gradient layer does not reach the center of a spherical droplet and the second stage when the concentration at the center of a liquid droplet begins to change. The solutions for concentration fields were found for each stage using the method of integral balance taking into account the formation of salt precipitate when the concentration at the surface of the droplet reaches certain equilibrium value. The results of estimation of the influence of various reactor operation parameters and characteristics of initial solution (precursor) on the morphology of particles formed – mass fraction and localization of salt precipitate for various levels of evaporation.
url http://dx.doi.org/10.1051/matecconf/201792010039
work_keys_str_mv AT zhukovilyaa analyticalestimationofparticleshapeformationparametersinaplasmachemicalreactor
AT bondarchuksergeis analyticalestimationofparticleshapeformationparametersinaplasmachemicalreactor
AT zhukovalexanders analyticalestimationofparticleshapeformationparametersinaplasmachemicalreactor
AT bondarchukivans analyticalestimationofparticleshapeformationparametersinaplasmachemicalreactor
AT borisovborisv analyticalestimationofparticleshapeformationparametersinaplasmachemicalreactor
AT ayeshinatatianan analyticalestimationofparticleshapeformationparametersinaplasmachemicalreactor
_version_ 1724297498194870272