Wubulihairen Maimaitireyimu, Lu Xiaoying, Lee Patrick K H, Ning Zhi
School of Energy and Environment, City University of Hong Kong.
Atmos Pollut Res. 2015 Jul;6(4):556-561. doi: 10.5094/APR.2015.062. Epub 2016 Jan 5.
Inhalation of infectious bioaerosols has been linked to a variety of respiratory diseases. However, efficient sampling techniques to allow high temporal resolution sampling are limited to collect and study bioaerosols in the various occupational and ambient micro-environmental atmospheres. This study introduces a medium flow swirling bioaerosol sampler (SAS) approach that collects atmospheric bioaerosols at the flow rate of 167 Lpm (10 cubic meter per hour). The collection of bioaerosols is achieved through a combination of impaction and cyclonic centrifugal motion. Aerosol deposition efficiency tests were performed with monodispersive polystyrene latex (PSL) particles ranging from 0.1 to 10 μm. Results have shown that the sampler has cut-off size of 0.7 μm and 1.5 μm, with and without the assistance of added water vapor, respectively. The bioaerosol collection and viability tests were performed with comparison to the commercially-available BioSampler, and the results show that the collection efficiency of the SAS is 97% at the designed flow rate, while the higher flow of the new system yields more than 13 times of the collection rate compared to the BioSampler. The high collection efficiency and observed viability preservation of the SAS make it an attractive alternative for high time resolution bioaerosol sampling for atmospheric, occupational and indoor air quality monitoring.
吸入传染性生物气溶胶与多种呼吸道疾病有关。然而,能够实现高时间分辨率采样的高效采样技术在收集和研究各种职业及环境微环境大气中的生物气溶胶方面受到限制。本研究介绍了一种中流量旋流生物气溶胶采样器(SAS)方法,该方法以167升每分钟(每小时10立方米)的流速收集大气生物气溶胶。生物气溶胶的收集是通过撞击和旋流离心运动相结合来实现的。使用粒径范围为0.1至10微米的单分散聚苯乙烯乳胶(PSL)颗粒进行了气溶胶沉积效率测试。结果表明,该采样器在有无添加水蒸气辅助的情况下,截止粒径分别为0.7微米和1.5微米。与市售的BioSampler相比,进行了生物气溶胶收集和活力测试,结果表明,SAS在设计流速下的收集效率为97%,而新系统的较高流速产生的收集率是BioSampler的13倍以上。SAS的高收集效率和观察到的活力保存使其成为用于大气、职业和室内空气质量监测的高时间分辨率生物气溶胶采样的有吸引力的替代方案。