Air-O-Cell、Burkard和Button采样器对空气中孢子总数计数的性能。

V. Aĭzenberg, T. Reponen, S. Grinshpun, K. Willeke
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引用次数: 106

摘要

在受控的实验室条件下,对用于空气孢子总计数的三种设备(air - o - cell采样盒、Burkard个人体积空气采样器和Button气溶胶采样器)的性能进行了评估。前两种是玻璃玻片冲击器;第三个用过滤器收集孢子。样品中含有0.44 ~ 5.10微米的聚苯乙烯乳胶颗粒和5种平均空气动力学直径0.84 ~ 3.07微米的微生物:白色链霉菌、枯草芽孢杆菌、枝孢子枝孢杆菌、短压缩青霉和melinii青霉。光学粒子计数器测量每个采样器上下游的粒子浓度,从而确定三个采样器的物理收集效率。在所研究的整个粒径范围内,Button气溶胶采样器的收集效率接近100%。每个冲击器的截止尺寸为2.3-2.4微米。采用吖啶橙(epi荧光显微镜)和乳酚棉蓝(强光显微镜)染色技术对孢子进行显微计数。当将这两种技术与Button气溶胶采样器过滤器一起使用时,显微镜计数没有发现显著差异(95%显著性水平)。当使用乳酚棉蓝染色来比较所有三种采样器产生的总微生物计数时,Button采样器显示较小尺寸的微生物(枯草芽孢杆菌和枝孢杆菌)的计数明显较高。对于较大的微生物(短孔假单胞菌和melinii假单胞菌),所有三种样品都产生了相似的结果。由于其入口的设计,纽扣气溶胶采样器在收集表面的颗粒沉积均匀性最高。因此,与按钮气溶胶取样器一起使用的过滤收集方法是合适的,并且有利于枚举空气传播的孢子总数。
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Performance of Air-O-Cell, Burkard, and Button Samplers for total enumeration of airborne spores.
Performance of three devices used for the total enumeration of airborne spores-the Air-O-Cell sampling cassette, the Burkard personal volumetric air sampler, and the Button Aerosol Sampler--was evaluated under controlled laboratory conditions. The first two are glass-slide impactors; the third collects spores on a filter. The samplers were challenged with 0.44-5.10 microm polystyrene latex particles and five microorganisms of 0.84-3.07 microm mean aerodynamic diameter: Streptomyces albus, Bacillus subtilis, Cladosporium cladosporioides, Penicillium brevicompactum, and Penicillium melinii. An optical particle counter measured the particle concentrations upstream and downstream of each sampler, and thus determined the physical collection efficiency of the three samplers. Collection efficiency of the Button Aerosol Sampler was close to 100% for the entire particle size range studied. The cut-off size of each impactor was 2.3-2.4 microm. Acridine orange (with epifluorescent microscopy) and lactophenol cotton blue (with bright light microscopy) staining techniques were used for the microscopic enumeration of spores. No significant difference in microscopic counts was found (at the 95% significance level) when using these two techniques with the Button Aerosol Sampler filters. When the lactophenol cotton blue staining was used to compare total microbial counts yielded by all three samplers, the Button Sampler showed significantly higher counts for the smaller size microorganisms (B. subtilis and C. cladosporioides). For the larger microorganisms (P. brevicompactum and P. melinii) all three samplers yielded similar results. Uniformity of particle deposition on the collection surface was highest for the Button Aerosol Sampler due to the design of its inlet. Thus, the filter collection method used with the Button Aerosol Sampler is suitable and can be advantageous for the enumeration of total airborne spores.
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