Environmental efficiency investigation of a gas turbine unit

A method for purifying the gas-air mixture of a gas turbine unit and a waste-heat boiler is considered [1-3]. This work describes the principle of a gas-turbine plant and a waste-heat boiler operation using a catalytic afterburner, with the help of which a more complete process of carbon dioxide and...

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Main Authors: Legkii Alexander, Karapuzova Natalya, Kudashev Alexei, Zlobin Vladimir, Vlasova Oksana
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/2021/57/e3sconf_catpid2021_09017.pdf
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spelling doaj-a39d73fbd5674f4b96cbfe141cf319052021-07-07T11:35:13ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012810901710.1051/e3sconf/202128109017e3sconf_catpid2021_09017Environmental efficiency investigation of a gas turbine unitLegkii AlexanderKarapuzova NatalyaKudashev AlexeiZlobin VladimirVlasova OksanaA method for purifying the gas-air mixture of a gas turbine unit and a waste-heat boiler is considered [1-3]. This work describes the principle of a gas-turbine plant and a waste-heat boiler operation using a catalytic afterburner, with the help of which a more complete process of carbon dioxide and nitrogenous compounds release occurs. Also, as a result of the exhaust gas-air mixture deeper cleaning process, there is a decrease in emissions within the maximum admissible concentrations (MAC), namely, by the amount of nitrogen and carbon oxides [4–7]. That allows to reduce the number of harmful substances, oxides of nitrogenous and carbon compounds, emitted into the environment. A scheme for cleaning a catalytic afterburner using rotary mesh devices, followed by disposal of carbon deposits and soot substances from the cleaning chamber is shown. This makes it possible to perform a stable ion exchange process, reducing the exhaust gases combustion products amount. It is proposed in this article to use mesh devices in the afterburner, treated with active substances by the method of ion implantation, as one of the most promising methods for modifying mesh surfaces. These processes occurring when the gas-air mixture passes through the afterburner, can reduce MAC emissions for various options for utilizing the discharge fuel mixture of a gas turbine unit (GTU) and heat supply to the waste heat boiler.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/57/e3sconf_catpid2021_09017.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Legkii Alexander
Karapuzova Natalya
Kudashev Alexei
Zlobin Vladimir
Vlasova Oksana
spellingShingle Legkii Alexander
Karapuzova Natalya
Kudashev Alexei
Zlobin Vladimir
Vlasova Oksana
Environmental efficiency investigation of a gas turbine unit
E3S Web of Conferences
author_facet Legkii Alexander
Karapuzova Natalya
Kudashev Alexei
Zlobin Vladimir
Vlasova Oksana
author_sort Legkii Alexander
title Environmental efficiency investigation of a gas turbine unit
title_short Environmental efficiency investigation of a gas turbine unit
title_full Environmental efficiency investigation of a gas turbine unit
title_fullStr Environmental efficiency investigation of a gas turbine unit
title_full_unstemmed Environmental efficiency investigation of a gas turbine unit
title_sort environmental efficiency investigation of a gas turbine unit
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description A method for purifying the gas-air mixture of a gas turbine unit and a waste-heat boiler is considered [1-3]. This work describes the principle of a gas-turbine plant and a waste-heat boiler operation using a catalytic afterburner, with the help of which a more complete process of carbon dioxide and nitrogenous compounds release occurs. Also, as a result of the exhaust gas-air mixture deeper cleaning process, there is a decrease in emissions within the maximum admissible concentrations (MAC), namely, by the amount of nitrogen and carbon oxides [4–7]. That allows to reduce the number of harmful substances, oxides of nitrogenous and carbon compounds, emitted into the environment. A scheme for cleaning a catalytic afterburner using rotary mesh devices, followed by disposal of carbon deposits and soot substances from the cleaning chamber is shown. This makes it possible to perform a stable ion exchange process, reducing the exhaust gases combustion products amount. It is proposed in this article to use mesh devices in the afterburner, treated with active substances by the method of ion implantation, as one of the most promising methods for modifying mesh surfaces. These processes occurring when the gas-air mixture passes through the afterburner, can reduce MAC emissions for various options for utilizing the discharge fuel mixture of a gas turbine unit (GTU) and heat supply to the waste heat boiler.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/57/e3sconf_catpid2021_09017.pdf
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AT zlobinvladimir environmentalefficiencyinvestigationofagasturbineunit
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