School of Geography, Nanjing Normal University, Nanjing, 210023, China.
Key Laboratory of Virtual Geographic Environment (Nanjing Normal University), Ministry of Education, Nanjing, 210023, China.
Environ Sci Pollut Res Int. 2022 Mar;29(13):19420-19431. doi: 10.1007/s11356-021-17138-6. Epub 2021 Oct 30.
In recent years, the impact of biological aerosols produced by sewage treatment plants on air quality and human health has become a hot spot of concern. Airborne fungi were characterized via KC-1000 large-flow air sampler and Anderson-type six-stage sampler, at free surface flowing reed constructed wetland located in Qingdao City, Shandong Province. The high-throughput sequencing technology and fungal culture-dependent method were selected to analyze the composition and dynamic changes of the fungal community attached to the atmospheric particulate matter in the free surface flow constructed wetland. The results showed that the aerosol concentration of fungi in the constructed wetlands varied from 587 to approximately 3382 CFU m, with a peak at the range of 1.10 to 2.10 μm particle size, and the particles (< 4.70 μm) that easily entered the lungs accounted for 57.03 ~ 96.03%. Significant seasonal differences in fungal richness and community diversity were found. The particle size distribution of fungi in atmospheric particles was not obvious. Fungal genera in the atmospheric particulate matter were mainly driven by humidity. However, other factors, i.e., temperature, NO, SO, and PM contents, also contributed.
近年来,污水处理厂产生的生物气溶胶对空气质量和人体健康的影响已成为关注的热点。采用 KC-1000 大流量空气采样器和安德森六级采样器,对位于山东省青岛市的自由表面流芦苇人工湿地中的空气真菌进行了特征描述。选择高通量测序技术和真菌培养依赖的方法来分析附着在大气颗粒物上的真菌群落的组成和动态变化。结果表明,人工湿地中真菌的气溶胶浓度从 587 到约 3382 CFU/m 不等,粒径在 1.10 到 2.10μm 范围内达到峰值,容易进入肺部的颗粒(<4.70μm)占 57.03%~96.03%。真菌丰富度和群落多样性存在显著的季节性差异。大气颗粒物中真菌的粒径分布不明显。大气颗粒物中的真菌属主要受湿度驱动。然而,其他因素,如温度、NO、SO 和 PM 含量,也有一定影响。