Determination of nanoscale particles in the air of working zone at the metallurgical production
The results of studies of the air of working zone at the metallurgical production on the example of Avisma OJSC (Berezniki, the Perm Territory) for the content of nanoscale particles are specified. The maximum nanoparticles concentration in the range of 13523–28609 mln./m3 is determined at the worki...
Main Authors: | , , , |
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Format: | Article |
Language: | English |
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FBSI “Federal Scientific Center for Medical and Preventive Health Risk Management Technologies”
2015-03-01
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Series: | Analiz Riska Zdorovʹû |
Subjects: | |
Online Access: | http://journal.fcrisk.ru/eng/2015/1/10 |
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author | Т.S. Ulanova М.V. Antipyeva М.I. Zabirova М.V. Volkova |
author_facet | Т.S. Ulanova М.V. Antipyeva М.I. Zabirova М.V. Volkova |
author_sort | Т.S. Ulanova |
collection | DOAJ |
description | The results of studies of the air of working zone at the metallurgical production on the example of Avisma OJSC (Berezniki, the Perm Territory) for the content of nanoscale particles are specified. The maximum nanoparticles concentration in the range of 13523–28609 mln./m3 is determined at the working place of the titanium production smelter with the maximum size of particles of 10–15 nm. At the working place in the administrative building (reference working place) the maximum concentration is determined within the range of 524–1000 mln./m3; the maximum size of nanoparticles is 20 nm. It was established that the number concentration of nanoparticles at the reference working places (administration of Avisma OJSC) is significantly lower than at the working places of main production processes. The presented studies can be used as the additional factors in the assessment of labor conditions and occupational risk during the manufacture and use of materials containing nanoparticles as well as the production processes with the nanoparticles formation. |
first_indexed | 2024-12-19T14:23:46Z |
format | Article |
id | doaj.art-07b69419331541e8b63e536dec4badae |
institution | Directory Open Access Journal |
issn | 2308-1155 2308-1163 |
language | English |
last_indexed | 2024-12-19T14:23:46Z |
publishDate | 2015-03-01 |
publisher | FBSI “Federal Scientific Center for Medical and Preventive Health Risk Management Technologies” |
record_format | Article |
series | Analiz Riska Zdorovʹû |
spelling | doaj.art-07b69419331541e8b63e536dec4badae2022-12-21T20:17:41ZengFBSI “Federal Scientific Center for Medical and Preventive Health Risk Management Technologies”Analiz Riska Zdorovʹû2308-11552308-11632015-03-011778110.21668/health.risk/2015.1.10.engDetermination of nanoscale particles in the air of working zone at the metallurgical productionТ.S. Ulanova0М.V. Antipyeva1М.I. Zabirova2М.V. Volkova3Federal Scientific Center for Medical and Preventive Health Risk Management TechnologiesFederal Scientific Center for Medical and Preventive Health Risk Management TechnologiesFederal Scientific Center for Medical and Preventive Health Risk Management TechnologiesFederal Scientific Center for Medical and Preventive Health Risk Management TechnologiesThe results of studies of the air of working zone at the metallurgical production on the example of Avisma OJSC (Berezniki, the Perm Territory) for the content of nanoscale particles are specified. The maximum nanoparticles concentration in the range of 13523–28609 mln./m3 is determined at the working place of the titanium production smelter with the maximum size of particles of 10–15 nm. At the working place in the administrative building (reference working place) the maximum concentration is determined within the range of 524–1000 mln./m3; the maximum size of nanoparticles is 20 nm. It was established that the number concentration of nanoparticles at the reference working places (administration of Avisma OJSC) is significantly lower than at the working places of main production processes. The presented studies can be used as the additional factors in the assessment of labor conditions and occupational risk during the manufacture and use of materials containing nanoparticles as well as the production processes with the nanoparticles formation.http://journal.fcrisk.ru/eng/2015/1/10nanoparticles (< 100 nm)number concentrationnanoparticle size distribution |
spellingShingle | Т.S. Ulanova М.V. Antipyeva М.I. Zabirova М.V. Volkova Determination of nanoscale particles in the air of working zone at the metallurgical production Analiz Riska Zdorovʹû nanoparticles (< 100 nm) number concentration nanoparticle size distribution |
title | Determination of nanoscale particles in the air of working zone at the metallurgical production |
title_full | Determination of nanoscale particles in the air of working zone at the metallurgical production |
title_fullStr | Determination of nanoscale particles in the air of working zone at the metallurgical production |
title_full_unstemmed | Determination of nanoscale particles in the air of working zone at the metallurgical production |
title_short | Determination of nanoscale particles in the air of working zone at the metallurgical production |
title_sort | determination of nanoscale particles in the air of working zone at the metallurgical production |
topic | nanoparticles (< 100 nm) number concentration nanoparticle size distribution |
url | http://journal.fcrisk.ru/eng/2015/1/10 |
work_keys_str_mv | AT tsulanova determinationofnanoscaleparticlesintheairofworkingzoneatthemetallurgicalproduction AT mvantipyeva determinationofnanoscaleparticlesintheairofworkingzoneatthemetallurgicalproduction AT mizabirova determinationofnanoscaleparticlesintheairofworkingzoneatthemetallurgicalproduction AT mvvolkova determinationofnanoscaleparticlesintheairofworkingzoneatthemetallurgicalproduction |