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Occupational Exposure and Environmental Release: The Case Study of Pouring TiO(2) and Filler Materials for Paint Production

Pulmonary exposure to micro- and nanoscaled particles has been widely linked to adverse health effects and high concentrations of respirable particles are expected to occur within and around many industrial settings. In this study, a field-measurement campaign was performed at an industrial manufact...

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Autores principales: Fonseca, Ana Sofia, Viitanen, Anna-Kaisa, Kanerva, Tomi, Säämänen, Arto, Aguerre-Chariol, Olivier, Fable, Sebastien, Dermigny, Adrien, Karoski, Nicolas, Fraboulet, Isaline, Koponen, Ismo Kalevi, Delpivo, Camilla, Vilchez Villalba, Alejandro, Vázquez-Campos, Socorro, Østerskov Jensen, Alexander Christian, Hjortkjær Nielsen, Signe, Sahlgren, Nicklas, Clausen, Per Axel, Xuan Nguyen Larsen, Bianca, Kofoed-Sørensen, Vivi, Alstrup Jensen, Keld, Koivisto, Joonas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7825781/
https://www.ncbi.nlm.nih.gov/pubmed/33430311
http://dx.doi.org/10.3390/ijerph18020418
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author Fonseca, Ana Sofia
Viitanen, Anna-Kaisa
Kanerva, Tomi
Säämänen, Arto
Aguerre-Chariol, Olivier
Fable, Sebastien
Dermigny, Adrien
Karoski, Nicolas
Fraboulet, Isaline
Koponen, Ismo Kalevi
Delpivo, Camilla
Vilchez Villalba, Alejandro
Vázquez-Campos, Socorro
Østerskov Jensen, Alexander Christian
Hjortkjær Nielsen, Signe
Sahlgren, Nicklas
Clausen, Per Axel
Xuan Nguyen Larsen, Bianca
Kofoed-Sørensen, Vivi
Alstrup Jensen, Keld
Koivisto, Joonas
author_facet Fonseca, Ana Sofia
Viitanen, Anna-Kaisa
Kanerva, Tomi
Säämänen, Arto
Aguerre-Chariol, Olivier
Fable, Sebastien
Dermigny, Adrien
Karoski, Nicolas
Fraboulet, Isaline
Koponen, Ismo Kalevi
Delpivo, Camilla
Vilchez Villalba, Alejandro
Vázquez-Campos, Socorro
Østerskov Jensen, Alexander Christian
Hjortkjær Nielsen, Signe
Sahlgren, Nicklas
Clausen, Per Axel
Xuan Nguyen Larsen, Bianca
Kofoed-Sørensen, Vivi
Alstrup Jensen, Keld
Koivisto, Joonas
author_sort Fonseca, Ana Sofia
collection PubMed
description Pulmonary exposure to micro- and nanoscaled particles has been widely linked to adverse health effects and high concentrations of respirable particles are expected to occur within and around many industrial settings. In this study, a field-measurement campaign was performed at an industrial manufacturer, during the production of paints. Spatial and personal measurements were conducted and results were used to estimate the mass flows in the facility and the airborne particle release to the outdoor environment. Airborne particle number concentration (1 × 10(3)–1.0 × 10(4) cm(−3)), respirable mass (0.06–0.6 mg m(−3)), and PM(10) (0.3–6.5 mg m(−3)) were measured during pouring activities. In overall; emissions from pouring activities were found to be dominated by coarser particles >300 nm. Even though the raw materials were not identified as nanomaterials by the manufacturers, handling of TiO(2) and clays resulted in release of nanometric particles to both workplace air and outdoor environment, which was confirmed by TEM analysis of indoor and stack emission samples. During the measurement period, none of the existing exposure limits in force were exceeded. Particle release to the outdoor environment varied from 6 to 20 g ton(−1) at concentrations between 0.6 and 9.7 mg m(−3) of total suspended dust depending on the powder. The estimated release of TiO(2) to outdoors was 0.9 kg per year. Particle release to the environment is not expected to cause any major impact due to atmospheric dilution
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spelling pubmed-78257812021-01-24 Occupational Exposure and Environmental Release: The Case Study of Pouring TiO(2) and Filler Materials for Paint Production Fonseca, Ana Sofia Viitanen, Anna-Kaisa Kanerva, Tomi Säämänen, Arto Aguerre-Chariol, Olivier Fable, Sebastien Dermigny, Adrien Karoski, Nicolas Fraboulet, Isaline Koponen, Ismo Kalevi Delpivo, Camilla Vilchez Villalba, Alejandro Vázquez-Campos, Socorro Østerskov Jensen, Alexander Christian Hjortkjær Nielsen, Signe Sahlgren, Nicklas Clausen, Per Axel Xuan Nguyen Larsen, Bianca Kofoed-Sørensen, Vivi Alstrup Jensen, Keld Koivisto, Joonas Int J Environ Res Public Health Article Pulmonary exposure to micro- and nanoscaled particles has been widely linked to adverse health effects and high concentrations of respirable particles are expected to occur within and around many industrial settings. In this study, a field-measurement campaign was performed at an industrial manufacturer, during the production of paints. Spatial and personal measurements were conducted and results were used to estimate the mass flows in the facility and the airborne particle release to the outdoor environment. Airborne particle number concentration (1 × 10(3)–1.0 × 10(4) cm(−3)), respirable mass (0.06–0.6 mg m(−3)), and PM(10) (0.3–6.5 mg m(−3)) were measured during pouring activities. In overall; emissions from pouring activities were found to be dominated by coarser particles >300 nm. Even though the raw materials were not identified as nanomaterials by the manufacturers, handling of TiO(2) and clays resulted in release of nanometric particles to both workplace air and outdoor environment, which was confirmed by TEM analysis of indoor and stack emission samples. During the measurement period, none of the existing exposure limits in force were exceeded. Particle release to the outdoor environment varied from 6 to 20 g ton(−1) at concentrations between 0.6 and 9.7 mg m(−3) of total suspended dust depending on the powder. The estimated release of TiO(2) to outdoors was 0.9 kg per year. Particle release to the environment is not expected to cause any major impact due to atmospheric dilution MDPI 2021-01-07 2021-01 /pmc/articles/PMC7825781/ /pubmed/33430311 http://dx.doi.org/10.3390/ijerph18020418 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Fonseca, Ana Sofia
Viitanen, Anna-Kaisa
Kanerva, Tomi
Säämänen, Arto
Aguerre-Chariol, Olivier
Fable, Sebastien
Dermigny, Adrien
Karoski, Nicolas
Fraboulet, Isaline
Koponen, Ismo Kalevi
Delpivo, Camilla
Vilchez Villalba, Alejandro
Vázquez-Campos, Socorro
Østerskov Jensen, Alexander Christian
Hjortkjær Nielsen, Signe
Sahlgren, Nicklas
Clausen, Per Axel
Xuan Nguyen Larsen, Bianca
Kofoed-Sørensen, Vivi
Alstrup Jensen, Keld
Koivisto, Joonas
Occupational Exposure and Environmental Release: The Case Study of Pouring TiO(2) and Filler Materials for Paint Production
title Occupational Exposure and Environmental Release: The Case Study of Pouring TiO(2) and Filler Materials for Paint Production
title_full Occupational Exposure and Environmental Release: The Case Study of Pouring TiO(2) and Filler Materials for Paint Production
title_fullStr Occupational Exposure and Environmental Release: The Case Study of Pouring TiO(2) and Filler Materials for Paint Production
title_full_unstemmed Occupational Exposure and Environmental Release: The Case Study of Pouring TiO(2) and Filler Materials for Paint Production
title_short Occupational Exposure and Environmental Release: The Case Study of Pouring TiO(2) and Filler Materials for Paint Production
title_sort occupational exposure and environmental release: the case study of pouring tio(2) and filler materials for paint production
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7825781/
https://www.ncbi.nlm.nih.gov/pubmed/33430311
http://dx.doi.org/10.3390/ijerph18020418
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