Innovative technologies combating with dust emission releasing into the atmosphere
An examination of various approaches, methods, and technologies recommended as optimal for safeguarding atmospheric air against dust pollution has led to the identification of the distinct advantages associated with vortex inertial dust collectors utilizing swirling currents. These collectors, refer...
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Format: | Article |
Language: | English |
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EDP Sciences
2024-01-01
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Series: | E3S Web of Conferences |
Online Access: | https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/27/e3sconf_icecae2024_03045.pdf |
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author | Rashidov Rikhsitilla Turgunov Abdulkhashim Nazarbekov Makhmudbek Tursunova Iroda Rakhimov Khusniddin Obidov Shoyunus |
author_facet | Rashidov Rikhsitilla Turgunov Abdulkhashim Nazarbekov Makhmudbek Tursunova Iroda Rakhimov Khusniddin Obidov Shoyunus |
author_sort | Rashidov Rikhsitilla |
collection | DOAJ |
description | An examination of various approaches, methods, and technologies recommended as optimal for safeguarding atmospheric air against dust pollution has led to the identification of the distinct advantages associated with vortex inertial dust collectors utilizing swirling currents. These collectors, referred to as Cyclone Separation Fans (CSF), have been determined to serve as primary and auxiliary equipment in dust removal systems within the production of building materials and other industries. Traditionally employed circuit designs for dust collection systems were also subject to analysis, revealing two prevalent types: open and partially closed air circulation systems. In the latter, a portion of the cleaned airflow is reintroduced into the system, representing a key feature of the design. This assessment underscores the significance of vortex inertial dust collectors, specifically CSFs, as instrumental components in dust removal systems across various industrial sectors. Their effectiveness in mitigating dust pollution, coupled with their versatility as both primary and supplementary equipment, positions them as recommended technologies for atmospheric air protection in the production of building materials and other related industries. The recognition of open and partially closed air circulation systems in traditional dust collection circuit designs further contributes to refining and optimizing dust removal processes for enhanced environmental protection. |
first_indexed | 2024-04-25T01:40:19Z |
format | Article |
id | doaj.art-b0492fd4f36b4d33bc5fc0d41aa19256 |
institution | Directory Open Access Journal |
issn | 2267-1242 |
language | English |
last_indexed | 2024-04-25T01:40:19Z |
publishDate | 2024-01-01 |
publisher | EDP Sciences |
record_format | Article |
series | E3S Web of Conferences |
spelling | doaj.art-b0492fd4f36b4d33bc5fc0d41aa192562024-03-08T07:48:03ZengEDP SciencesE3S Web of Conferences2267-12422024-01-014970304510.1051/e3sconf/202449703045e3sconf_icecae2024_03045Innovative technologies combating with dust emission releasing into the atmosphereRashidov Rikhsitilla0Turgunov Abdulkhashim1Nazarbekov Makhmudbek2Tursunova Iroda3Rakhimov Khusniddin4Obidov Shoyunus5Tashkent State Technical UniversityTashkent State Technical UniversityTashkent State Technical UniversityNavai State Mining and Technological UniversityTashkent Institute of Chemical TechnologyTashkent Institute of Chemical TechnologyAn examination of various approaches, methods, and technologies recommended as optimal for safeguarding atmospheric air against dust pollution has led to the identification of the distinct advantages associated with vortex inertial dust collectors utilizing swirling currents. These collectors, referred to as Cyclone Separation Fans (CSF), have been determined to serve as primary and auxiliary equipment in dust removal systems within the production of building materials and other industries. Traditionally employed circuit designs for dust collection systems were also subject to analysis, revealing two prevalent types: open and partially closed air circulation systems. In the latter, a portion of the cleaned airflow is reintroduced into the system, representing a key feature of the design. This assessment underscores the significance of vortex inertial dust collectors, specifically CSFs, as instrumental components in dust removal systems across various industrial sectors. Their effectiveness in mitigating dust pollution, coupled with their versatility as both primary and supplementary equipment, positions them as recommended technologies for atmospheric air protection in the production of building materials and other related industries. The recognition of open and partially closed air circulation systems in traditional dust collection circuit designs further contributes to refining and optimizing dust removal processes for enhanced environmental protection.https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/27/e3sconf_icecae2024_03045.pdf |
spellingShingle | Rashidov Rikhsitilla Turgunov Abdulkhashim Nazarbekov Makhmudbek Tursunova Iroda Rakhimov Khusniddin Obidov Shoyunus Innovative technologies combating with dust emission releasing into the atmosphere E3S Web of Conferences |
title | Innovative technologies combating with dust emission releasing into the atmosphere |
title_full | Innovative technologies combating with dust emission releasing into the atmosphere |
title_fullStr | Innovative technologies combating with dust emission releasing into the atmosphere |
title_full_unstemmed | Innovative technologies combating with dust emission releasing into the atmosphere |
title_short | Innovative technologies combating with dust emission releasing into the atmosphere |
title_sort | innovative technologies combating with dust emission releasing into the atmosphere |
url | https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/27/e3sconf_icecae2024_03045.pdf |
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