SIMULATION STUDY ON THE INDOOR SPATIAL DISPERSION DISTANCE, DENSITY AND PARTICLE SIZE OF CELLULOSE NANOFIBER IN THE AEROSOL ABOVE PM10 WITHIN THE WORKER’S BREATHING ZONE

Inhalation of respirable and inhalable particles has been known to cause occupational lung disease such as pneumoconiosis and asbestosis. The study investigates the dispersion behaviour, density and particle size of aerosols mist bigger than 10 µm (PM10) consist of distilled water (control) or CNF 2...

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Published in:Journal of Health and Translational Medicine
Main Author: Sabri N.; Bin Kamaldin J.; Hamzah N.A.; Leo B.F.
Format: Article
Language:English
Published: Faculty of Medicine, University of Malaya 2022
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85146291921&doi=10.22452%2fjummec.sp2022no1.5&partnerID=40&md5=57040044e173e01ecee04b62ac14ed2c
id 2-s2.0-85146291921
spelling 2-s2.0-85146291921
Sabri N.; Bin Kamaldin J.; Hamzah N.A.; Leo B.F.
SIMULATION STUDY ON THE INDOOR SPATIAL DISPERSION DISTANCE, DENSITY AND PARTICLE SIZE OF CELLULOSE NANOFIBER IN THE AEROSOL ABOVE PM10 WITHIN THE WORKER’S BREATHING ZONE
2022
Journal of Health and Translational Medicine
25
Special Issue 1
10.22452/jummec.sp2022no1.5
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85146291921&doi=10.22452%2fjummec.sp2022no1.5&partnerID=40&md5=57040044e173e01ecee04b62ac14ed2c
Inhalation of respirable and inhalable particles has been known to cause occupational lung disease such as pneumoconiosis and asbestosis. The study investigates the dispersion behaviour, density and particle size of aerosols mist bigger than 10 µm (PM10) consist of distilled water (control) or CNF 2 %w/v aqueous suspension by simulating a benchtop personal breathing zone of 60 x 60 x 60 cm. The magnesium oxide (MgO) coated slide was used to determine the dispersion and size of the water droplet. Non-coated glass slide was used to collect CNF from the water droplets for the examination under FESEM to verify the nano-morphology and nano-size. The examination of the MgO coated slides showed the distilled water with or without CNF were capable to disperse up to 30 cm radius horizontally within 5 minutes when the aerosol was vertically discharged upward approx. 30 cm height at the rate of 1 ml/min. The distilled water and CNF aqueous suspension produced aerosol mist that contained water droplet with size above PM10 varying between 11 to 35 µm at the radius distance of 10, 20 and 30 cm. The examination under FESEM found the nanofibrous morphology and nano dimension of approximately 12 nm in both specimens of the plain glass slide and CNF 2 %w/v aqueous suspension. The size of the water droplet with CNF is still categorized as the inhalable particulate matter, thus there is a need to determine whether the CNF could be deposited in the respiratory system and cause damage. © 2022, Faculty of Medicine, University of Malaya. All rights reserved.
Faculty of Medicine, University of Malaya
18237339
English
Article

author Sabri N.; Bin Kamaldin J.; Hamzah N.A.; Leo B.F.
spellingShingle Sabri N.; Bin Kamaldin J.; Hamzah N.A.; Leo B.F.
SIMULATION STUDY ON THE INDOOR SPATIAL DISPERSION DISTANCE, DENSITY AND PARTICLE SIZE OF CELLULOSE NANOFIBER IN THE AEROSOL ABOVE PM10 WITHIN THE WORKER’S BREATHING ZONE
author_facet Sabri N.; Bin Kamaldin J.; Hamzah N.A.; Leo B.F.
author_sort Sabri N.; Bin Kamaldin J.; Hamzah N.A.; Leo B.F.
title SIMULATION STUDY ON THE INDOOR SPATIAL DISPERSION DISTANCE, DENSITY AND PARTICLE SIZE OF CELLULOSE NANOFIBER IN THE AEROSOL ABOVE PM10 WITHIN THE WORKER’S BREATHING ZONE
title_short SIMULATION STUDY ON THE INDOOR SPATIAL DISPERSION DISTANCE, DENSITY AND PARTICLE SIZE OF CELLULOSE NANOFIBER IN THE AEROSOL ABOVE PM10 WITHIN THE WORKER’S BREATHING ZONE
title_full SIMULATION STUDY ON THE INDOOR SPATIAL DISPERSION DISTANCE, DENSITY AND PARTICLE SIZE OF CELLULOSE NANOFIBER IN THE AEROSOL ABOVE PM10 WITHIN THE WORKER’S BREATHING ZONE
title_fullStr SIMULATION STUDY ON THE INDOOR SPATIAL DISPERSION DISTANCE, DENSITY AND PARTICLE SIZE OF CELLULOSE NANOFIBER IN THE AEROSOL ABOVE PM10 WITHIN THE WORKER’S BREATHING ZONE
title_full_unstemmed SIMULATION STUDY ON THE INDOOR SPATIAL DISPERSION DISTANCE, DENSITY AND PARTICLE SIZE OF CELLULOSE NANOFIBER IN THE AEROSOL ABOVE PM10 WITHIN THE WORKER’S BREATHING ZONE
title_sort SIMULATION STUDY ON THE INDOOR SPATIAL DISPERSION DISTANCE, DENSITY AND PARTICLE SIZE OF CELLULOSE NANOFIBER IN THE AEROSOL ABOVE PM10 WITHIN THE WORKER’S BREATHING ZONE
publishDate 2022
container_title Journal of Health and Translational Medicine
container_volume 25
container_issue Special Issue 1
doi_str_mv 10.22452/jummec.sp2022no1.5
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85146291921&doi=10.22452%2fjummec.sp2022no1.5&partnerID=40&md5=57040044e173e01ecee04b62ac14ed2c
description Inhalation of respirable and inhalable particles has been known to cause occupational lung disease such as pneumoconiosis and asbestosis. The study investigates the dispersion behaviour, density and particle size of aerosols mist bigger than 10 µm (PM10) consist of distilled water (control) or CNF 2 %w/v aqueous suspension by simulating a benchtop personal breathing zone of 60 x 60 x 60 cm. The magnesium oxide (MgO) coated slide was used to determine the dispersion and size of the water droplet. Non-coated glass slide was used to collect CNF from the water droplets for the examination under FESEM to verify the nano-morphology and nano-size. The examination of the MgO coated slides showed the distilled water with or without CNF were capable to disperse up to 30 cm radius horizontally within 5 minutes when the aerosol was vertically discharged upward approx. 30 cm height at the rate of 1 ml/min. The distilled water and CNF aqueous suspension produced aerosol mist that contained water droplet with size above PM10 varying between 11 to 35 µm at the radius distance of 10, 20 and 30 cm. The examination under FESEM found the nanofibrous morphology and nano dimension of approximately 12 nm in both specimens of the plain glass slide and CNF 2 %w/v aqueous suspension. The size of the water droplet with CNF is still categorized as the inhalable particulate matter, thus there is a need to determine whether the CNF could be deposited in the respiratory system and cause damage. © 2022, Faculty of Medicine, University of Malaya. All rights reserved.
publisher Faculty of Medicine, University of Malaya
issn 18237339
language English
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