Monitoring and Assessment of Airborne Respirable Limestone Dust and Free Silica Content in an Indian Mine

Background. Dust exposure and its related harmful effects on miners is a serious health issue. Objectives. The present study was undertaken to identify respirable dust concentrations and free silica content in 24 dust samples collected from a limestone mine during pre-monsoon and post-monsoon season...

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Main Authors: Priyanka Mankar, Bibhuti B. Mandal, Debasis Chatterjee
Format: Article
Language:English
Published: Pure Earth 2019-01-01
Series:Journal of Health and Pollution
Subjects:
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spelling doaj-d5593e3cfe204d1daec7bfe5b56f20832020-11-25T01:17:11ZengPure EarthJournal of Health and Pollution2156-96142156-96142019-01-0192311010.5696/2156-9614-9.23.1909042156-9614-9-23-190904Monitoring and Assessment of Airborne Respirable Limestone Dust and Free Silica Content in an Indian MinePriyanka Mankar0Bibhuti B. Mandal1Debasis Chatterjee2National Institute of Miners' Health, Nagpur, IndiaDepartment of Mining Engineering, Indian Institute of Technology Kharagpur, Kharagpur, IndiaNational Institute of Miners' Health, Nagpur, IndiaBackground. Dust exposure and its related harmful effects on miners is a serious health issue. Objectives. The present study was undertaken to identify respirable dust concentrations and free silica content in 24 dust samples collected from a limestone mine during pre-monsoon and post-monsoon seasons. Methods. Time-weighted average (TWA) dust concentrations were calculated for 8-hour work shifts followed by determination of free silica concentration using the Fourier transform infrared spectroscopy technique. Results. The TWA dust concentration for personal and area dust samples during September 2013 was found to be in the range of 0.32–1.04 mg/m3 and 0.25–0.54 mg/m3, respectively. For February 2014, the TWA dust concentration was between 0.62–1.23 mg/m3 for personal samples and 1.04–2.64 mg/m3 for area samples. Samples collected in February 2014 had marginally higher values of dust levels in the air of the mine compared to September 2013. The highest dust concentration was found to be 1.23 mg/m3 for a drill operator and 2.64 mg/m3 at the crusher belt conveyor junction. The average free silica percent for the samples collected in February 2014 was 1.73%, which was almost double compared to September 2013 (0.87%). Conclusions. In both seasons, personal dust samples had higher free silica content than area dust samples. Even though dust concentrations were below the permissible limit, workers had widely different exposures, hence many of them may be at risk of pneumoconiosis when exposure is prolonged. Participant Consent. Obtained Competing Interests. The authors declare no competing financial interests.respirable dustfree silicatime-weighted average (TWA)Fourier transform infrared (FTIR)open cast mineDirector General of Mines Safety (DGMS)
collection DOAJ
language English
format Article
sources DOAJ
author Priyanka Mankar
Bibhuti B. Mandal
Debasis Chatterjee
spellingShingle Priyanka Mankar
Bibhuti B. Mandal
Debasis Chatterjee
Monitoring and Assessment of Airborne Respirable Limestone Dust and Free Silica Content in an Indian Mine
Journal of Health and Pollution
respirable dust
free silica
time-weighted average (TWA)
Fourier transform infrared (FTIR)
open cast mine
Director General of Mines Safety (DGMS)
author_facet Priyanka Mankar
Bibhuti B. Mandal
Debasis Chatterjee
author_sort Priyanka Mankar
title Monitoring and Assessment of Airborne Respirable Limestone Dust and Free Silica Content in an Indian Mine
title_short Monitoring and Assessment of Airborne Respirable Limestone Dust and Free Silica Content in an Indian Mine
title_full Monitoring and Assessment of Airborne Respirable Limestone Dust and Free Silica Content in an Indian Mine
title_fullStr Monitoring and Assessment of Airborne Respirable Limestone Dust and Free Silica Content in an Indian Mine
title_full_unstemmed Monitoring and Assessment of Airborne Respirable Limestone Dust and Free Silica Content in an Indian Mine
title_sort monitoring and assessment of airborne respirable limestone dust and free silica content in an indian mine
publisher Pure Earth
series Journal of Health and Pollution
issn 2156-9614
2156-9614
publishDate 2019-01-01
description Background. Dust exposure and its related harmful effects on miners is a serious health issue. Objectives. The present study was undertaken to identify respirable dust concentrations and free silica content in 24 dust samples collected from a limestone mine during pre-monsoon and post-monsoon seasons. Methods. Time-weighted average (TWA) dust concentrations were calculated for 8-hour work shifts followed by determination of free silica concentration using the Fourier transform infrared spectroscopy technique. Results. The TWA dust concentration for personal and area dust samples during September 2013 was found to be in the range of 0.32–1.04 mg/m3 and 0.25–0.54 mg/m3, respectively. For February 2014, the TWA dust concentration was between 0.62–1.23 mg/m3 for personal samples and 1.04–2.64 mg/m3 for area samples. Samples collected in February 2014 had marginally higher values of dust levels in the air of the mine compared to September 2013. The highest dust concentration was found to be 1.23 mg/m3 for a drill operator and 2.64 mg/m3 at the crusher belt conveyor junction. The average free silica percent for the samples collected in February 2014 was 1.73%, which was almost double compared to September 2013 (0.87%). Conclusions. In both seasons, personal dust samples had higher free silica content than area dust samples. Even though dust concentrations were below the permissible limit, workers had widely different exposures, hence many of them may be at risk of pneumoconiosis when exposure is prolonged. Participant Consent. Obtained Competing Interests. The authors declare no competing financial interests.
topic respirable dust
free silica
time-weighted average (TWA)
Fourier transform infrared (FTIR)
open cast mine
Director General of Mines Safety (DGMS)
work_keys_str_mv AT priyankamankar monitoringandassessmentofairbornerespirablelimestonedustandfreesilicacontentinanindianmine
AT bibhutibmandal monitoringandassessmentofairbornerespirablelimestonedustandfreesilicacontentinanindianmine
AT debasischatterjee monitoringandassessmentofairbornerespirablelimestonedustandfreesilicacontentinanindianmine
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