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Sampling of High Amounts of Bioaerosols Using a High-Volume Electrostatic Field Sampler

机译:使用大容量静电场采样器对大量生物气溶胶进行采样

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摘要

For studies of the biological effects of bioaerosols, large samples are necessary. To be able to sample enough material and to cover the variations in aerosol content during and between working days, a long sampling time is necessary. Recently, a high-volume transportable electrostatic field sampler for collection of fine particles has been described. The aim of this study was to investigate whether this sampler can be used for collection of high amounts of authentic bioaerosols that can subsequently be used for biological analysis. The investigation was carried out at a biofuel plant in a straw storage room and in a boiler room over two seasons. The sampled dust was quantified in terms of mass and characterized regarding microbial components and compared with dust sampled by Gravikon and GSP samplers. For the electrostatic field sampler, a prefilter was used to remove large objects. The prefilter was characterized for particle penetration and this testing indicated that the prefilter did not remove particles up to 10 μm, and therefore respirable dust was sampled by the electrostatic field sampler. Using the electrostatic field sampler in the straw storage and in the boiler room, 330 and 315 mg dust (net recovery of the lyophilized dust) was sampled during a period of 7 days, respectively. The sampling rates of the electrostatic field samplers were between 1.34 and 1.96 mg dust per hour, the value for the Gravikon was between 0.083 and 0.108 mg dust per hour and the values for the GSP samplers were between 0.0031 and 0.032 mg dust per hour. The standard deviations of replica samplings and the following microbial analysis using the electrostatic field sampler and GSP samplers were at the same levels. The exposure to dust in the straw storage was 7.7 mg m−3 when measured by the electrostatic field sampler and 11.8 mg m−3 when measured by the GSP inhalable dust sampler. The quantity (amount per mg dust) of total fungi, Aspergillus fumigatus, total bacteria, endotoxin and mesophilic actinomycetes sampled by the electrostatic field samplers and the Gravikon samplers varied within the same season by a factor smaller than four. The quantities of some microbial components were higher in the dust collected with all samplers in March than in August. In conclusion, by using the electrostatic field sampler, it was possible to sample replicas of large authentic aerosol samples that can be used, e.g. biological analysis. (Sharma AK et al., 2007a).
机译:为了研究生物气溶胶的生物学效应,需要大量样品。为了能够在工作日内和工作日之间对足够的材料进行采样并覆盖气溶胶含量的变化,需要较长的采样时间。近来,已经描述了用于收集细颗粒的大容量可移动静电场采样器。这项研究的目的是调查该采样器是否可用于收集大量真实的生物气溶胶,随后可将其用于生物学分析。这项调查是在秸秆储存室和锅炉室的生物燃料工厂进行了两个季节的调查。采样的灰尘按质量进行定量,并针对微生物成分进行表征,并与Gravikon和GSP采样器采样的灰尘进行比较。对于静电场采样器,使用预过滤器去除大物体。对预过滤器的颗粒渗透进行了表征,该测试表明该预过滤器没有除去10μm以下的颗粒,因此可通过静电场采样器对可吸入的灰尘进行采样。在秸秆存放处和锅炉房中使用静电场采样器,分别在7天的时间内采样了330和315 mg灰尘(冻干粉尘的净回收量)。静电场采样器的采样率在每小时1.34到1.96 mg灰尘之间,Gravikon的值在每小时0.083到0.108 mg灰尘之间,GSP采样器的值在每小时0.0031到0.032 mg灰尘之间。复制品采样的标准偏差以及随后使用静电场采样器和GSP采样器进行的微生物分析均处于相同水平。用静电场采样器测量时,秸秆存放处的灰尘暴露量为7.7 mg m -3 ,而使用GSP可吸入式灰尘采样器测量时为11.8 mg m -3 。静电场采样器和Gravikon采样器采样的总真菌,烟曲霉,总细菌,内毒素和嗜温放线菌的数量(每毫克粉尘量)在同一季节内变化小于四倍。 3月份所有采样器收集的粉尘中某些微生物成分的数量均高于8月份。总之,通过使用静电场采样器,可以对可使用的大型真实气溶胶样品的副本进行采样,例如生物学分析。 (Sharma AK等,2007a)。

著录项

  • 来源
    《Annals of Occupational Hygiene》 |2008年第3期|p.167-176|共10页
  • 作者单位

    1The National Research Centre for the Working Environment, Lersø Parkallé 105, 2100 Copenhagen Ø, Denmark 2National Food Institute. Technical University of Denmark, Mørkhøj Bygade 19, 2860 Søborg, Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 01:11:23

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