Parameters of a gas discharge with a liquid electrode in the process of gasification of hydrocarbon-containing waste

A plasma generator with a liquid cathode has been developed and investigated, which makes it possible to create a plasma flow from electrolyte vapors with a temperature of up to 1800°C with a mass flow rate of up to 3.0 g/s for the gasification of carbon-containing waste. An electrolyte in the form...

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Main Authors: Tazmeev Bulat, Tazmeeva Ramilya, Pogosyan Vladimir
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/61/e3sconf_abr2021_08007.pdf
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author Tazmeev Bulat
Tazmeeva Ramilya
Pogosyan Vladimir
author_facet Tazmeev Bulat
Tazmeeva Ramilya
Pogosyan Vladimir
author_sort Tazmeev Bulat
collection DOAJ
description A plasma generator with a liquid cathode has been developed and investigated, which makes it possible to create a plasma flow from electrolyte vapors with a temperature of up to 1800°C with a mass flow rate of up to 3.0 g/s for the gasification of carbon-containing waste. An electrolyte in the form of a solution of Glauber salt in distilled water with a concentration of 0.5-1.0 kg/m3 by weight was used. The current-voltage characteristics of the discharge are constructed. The optimal electrical and thermal parameters of the plasma flow are determined experimentally.
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spelling doaj.art-99114b6d8943436bb2c0ee0a89aad4722022-12-21T22:53:55ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012850800710.1051/e3sconf/202128508007e3sconf_abr2021_08007Parameters of a gas discharge with a liquid electrode in the process of gasification of hydrocarbon-containing wasteTazmeev Bulat0Tazmeeva Ramilya1Pogosyan Vladimir2Kuban State Agrarian University named after I.T. TrubilinKazan Federal University, Naberezhnye Chelny InstituteKuban State Agrarian University named after I.T. TrubilinA plasma generator with a liquid cathode has been developed and investigated, which makes it possible to create a plasma flow from electrolyte vapors with a temperature of up to 1800°C with a mass flow rate of up to 3.0 g/s for the gasification of carbon-containing waste. An electrolyte in the form of a solution of Glauber salt in distilled water with a concentration of 0.5-1.0 kg/m3 by weight was used. The current-voltage characteristics of the discharge are constructed. The optimal electrical and thermal parameters of the plasma flow are determined experimentally.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/61/e3sconf_abr2021_08007.pdf
spellingShingle Tazmeev Bulat
Tazmeeva Ramilya
Pogosyan Vladimir
Parameters of a gas discharge with a liquid electrode in the process of gasification of hydrocarbon-containing waste
E3S Web of Conferences
title Parameters of a gas discharge with a liquid electrode in the process of gasification of hydrocarbon-containing waste
title_full Parameters of a gas discharge with a liquid electrode in the process of gasification of hydrocarbon-containing waste
title_fullStr Parameters of a gas discharge with a liquid electrode in the process of gasification of hydrocarbon-containing waste
title_full_unstemmed Parameters of a gas discharge with a liquid electrode in the process of gasification of hydrocarbon-containing waste
title_short Parameters of a gas discharge with a liquid electrode in the process of gasification of hydrocarbon-containing waste
title_sort parameters of a gas discharge with a liquid electrode in the process of gasification of hydrocarbon containing waste
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/61/e3sconf_abr2021_08007.pdf
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