Bioaerosol levels and the indoor air quality of laboratories in Bangkok metropolis

被引:0
作者
Kraiwuth Kallawicha
H. Jasmine Chao
Natkrita Kotchasatan
机构
[1] Chulabhorn Royal Academy,Environmental Toxicology Program, Chulabhorn Graduate Institute
[2] Center of Excellence on Environmental Health and Toxicology (EHT),School of Public Health
[3] Office of Higher Education Commission,undefined
[4] Ministry of Education,undefined
[5] Taipei Medical University,undefined
来源
Aerobiologia | 2019年 / 35卷
关键词
Bioaerosols; Indoor air quality; Laboratory; Fungi; Bacteria; Fungal spore;
D O I
暂无
中图分类号
学科分类号
摘要
Bioaerosols are major air pollutants commonly found both indoors and outdoors. High exposure levels may result in various adverse health outcomes. Laboratories, which are indoor environments carefully designed for specific purposes, may contain high levels of bioaerosols, which may threaten worker’s health, and contaminate experimental results. This study investigated the levels of bioaerosols (i.e., culturable fungi and bacteria, and fungal spores) in laboratories in the Bangkok metropolitan area. Air samples were collected from 14 Class I and one Class II laboratories by using a single-stage impactor and a VersaTrap spore trap cassette. Colonies were counted after 72 h and 48 h of incubation for culturable fungi and bacteria, respectively. Culturable fungi and fungal spores were identified based on their morphological characteristics. Associations between bioaerosols and indoor air parameters and laboratory characteristics were evaluated. The concentrations (mean ± SD) of culturable bacteria, culturable fungi, and fungal spores were 87.0 ± 97.8 CFU/m3, 294.9 ± 376.1 CFU/m3, and 771.8 ± 545.3 spores/m3, respectively. Aspergillus/Penicillium, ascospores, and Cladosporium were common fungal spore taxa in the laboratories. Culturable fungi significantly increased with the number of staff and visible molds, whereas water leaks and culturable fungi significantly increased fungal spore concentrations. Culturable bacteria were positively associated with the numbers of trash bins and − 80 °C freezers. Although bioaerosol concentrations were considerably lower in the studied laboratories, proper indoor air management is still suggested in order to reduce emissions and exposure. This can help workers avoid adverse health outcomes and reduce the chance of experimental contamination.
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页码:1 / 14
页数:13
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