Literature DB >> 16862716

Airborne crystalline silica concentrations at coal-fired power plants associated with coal fly ash.

Jeffrey Hicks1, Janice Yager.   

Abstract

This study presents measurements of airborne concentrations of respirable crystalline silica in the breathing zone of workers who were anticipated to encounter coal fly ash. Six plants were studied; two were fired with lignite coal, and the remaining four plants used bituminous and subbituminous coals. A total of 108 personal breathing zone respirable dust air samples were collected. Bulk samples were also collected from each plant site and subjected to crystalline silica analysis. Airborne dust particle size analysis was measured where fly ash was routinely encountered. The results from bituminous and subbituminous fired plants revealed that the highest airborne fly ash concentrations are encountered during maintenance activities: 0.008 mg/m3 to 96 mg/m3 (mean of 1.8 mg/m3). This group exceeded the threshold limit values (TLV) in 60% of the air samples. During normal production activities, airborne concentrations of crystalline silica ranged from nondetectable to 0.18 mg/m3 (mean value of 0.048 mg/m3). Air samples collected during these activities exceeded the current and proposed TLVs in approximately 54% and 65% of samples, respectively. Limited amounts of crystalline silica were detected in samples collected from lignite-fired plants, and approximately 20% of these air samples exceeded the current TLV. Particle size analysis in areas where breathing zone air samples were collected revealed mass median diameters typically between 3 microm and 8 microm. Bulk and air samples were analyzed for all of the common crystalline silica polymorphs, and only alpha quartz was detected. As compared with air samples, bulk samples from the same work areas consistently yielded lower relative amounts of quartz. Controls to limit coal fly ash exposures are indicated during some normal plant operations and during episodes of short term, but high concentrations of dust that may be encountered during maintenance activities, especially in areas where ash accumulations are present.

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Year:  2006        PMID: 16862716     DOI: 10.1080/15459620600802747

Source DB:  PubMed          Journal:  J Occup Environ Hyg        ISSN: 1545-9624            Impact factor:   2.155


  2 in total

1.  Characterizing Particle Size Distributions of Crystalline Silica in Gold Mine Dust.

Authors:  Lauren G Chubb; Emanuele G Cauda
Journal:  Aerosol Air Qual Res       Date:  2017-01       Impact factor: 3.063

Review 2.  Potential Occupational Exposures and Health Risks Associated with Biomass-Based Power Generation.

Authors:  Annette C Rohr; Sharan L Campleman; Christopher M Long; Michael K Peterson; Susan Weatherstone; Will Quick; Ari Lewis
Journal:  Int J Environ Res Public Health       Date:  2015-07-22       Impact factor: 3.390

  2 in total

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