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TVT, 2016, Volume 54, Issue 5, Pages 655–662 (Mi tvt7968)  

This article is cited in 5 scientific papers (total in 5 papers)

Plasma Investigations

Efficiency of the plasma-chemical method of preparation of silicon from quartz in an argon-hydrogen flow

Yu. M. Grishin, N. P. Kozlov, A. S. Skryabin

Bauman Moscow State Technical University

Abstract: A kinetic model of nonequilibrium chemical processes in gas mixtures of $ Si$, $\rm O$, $\rm H$, and $\rm Ar$ and a model of the calculation of the main parameters of plasma facilities for the implementation of the plasmachemical method of the direct preparation of silicon from quartz in argon–hydrogen gas-plasma flows have been formulated. The criteria and general conditions at which the maximal yield of silicon is achieved were determined. The main mode and construction parameters of plasma facilities were determined. It is shown that at the consumed electrical power of a stationary plasmatron of $100$ kW the calculated efficiency of the facility (over vapor $\rm Si$) could be on the order of $10^{2}$ g/s.

Funding Agency Grant Number
Ministry of Education and Science of the Russian Federation 13.2573.2014/
This work was supported in part by the Ministry of Education and Science of the Russian Federation (task no. 13.2573.2014/k).


DOI: https://doi.org/10.7868/S0040364416040086

Full text: PDF file (414 kB)
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English version:
High Temperature, 2016, 54:5, 619–626

Bibliographic databases:

UDC: 533.92:544.557
Received: 12.12.2014
Accepted:10.03.2015

Citation: Yu. M. Grishin, N. P. Kozlov, A. S. Skryabin, “Efficiency of the plasma-chemical method of preparation of silicon from quartz in an argon-hydrogen flow”, TVT, 54:5 (2016), 655–662; High Temperature, 54:5 (2016), 619–626

Citation in format AMSBIB
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\paper Efficiency of the plasma-chemical method of preparation of silicon from quartz in an argon-hydrogen flow
\jour TVT
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\vol 54
\issue 5
\pages 655--662
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\crossref{https://doi.org/10.7868/S0040364416040086}
\elib{http://elibrary.ru/item.asp?id=26665110}
\transl
\jour High Temperature
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\crossref{https://doi.org/10.1134/S0018151X16040088}
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    Citing articles on Google Scholar: Russian citations, English citations
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    This publication is cited in the following articles:
    1. A. V. Dyrenkov, B. M. Smirnov, D. V. Tereshonok, “Generation of a metal porous film by arc discharge”, High Temperature, 55:6 (2017), 841–843  mathnet  crossref  crossref  isi  elib
    2. Yu. M. Grishin, L. Miao, “Numerical study of heating and evaporation processes of quartz particles in RF inductively coupled plasma”, 5th International Congress on Energy Fluxes and Radiation Effects 2016, Journal of Physics Conference Series, 830, IOP Publishing Ltd, 2017, UNSP 012069  crossref  isi  scopus
    3. Yu. M. Grishin, M. Long, “Numerical simulation of the argon-hydrogen plasma flow in the channel of RF inductively coupled plasma torch”, International Conference Problems of Thermal Physics and Power Engineering (PTPPE-2017), Journal of Physics Conference Series, 891, IOP Publishing Ltd, 2017, UNSP 012302  crossref  isi  scopus
    4. V. V. Kuzenov, “Some aspects of modeling of the target compression and heating in a magnetic field”, International Conference Problems of Thermal Physics and Power Engineering (PTPPE-2017), Journal of Physics Conference Series, 891, IOP Publishing Ltd, 2017, UNSP 012300  crossref  isi  scopus
    5. V. I. Pavlenko, N. I. Cherkashina, L. N. Demkina, “Influence of hydrothermal treatment on crystalline form of SiO$_2$ synthesized by sol-gel method”, International Conference on Mechanical Engineering, Automation and Control Systems 2017, IOP Conference Series-Materials Science and Engineering, 327, IOP Publishing Ltd, 2018, UNSP 052026  crossref  isi  scopus
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