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用于采集微生物气溶胶的个人尺寸分级撞击式采样器。

Personal size-separating impactor for sampling microbiological aerosols.

作者信息

Macher J M, Hansson H C

出版信息

Am Ind Hyg Assoc J. 1987 Jul;48(7):652-5. doi: 10.1080/15298668791385354.

Abstract

A commercially-available personal impactor was altered to sample viable microorganisms onto a semisolid, moist, gelatin medium rather than onto a stainless steel or filter surface. The Marple personal cascade impactor is an eight-stage sampler with predicted cut-offs of 20, 15, 10, 6, 3.5, 2, 1, and 0.61 microns for stages one to eight, at a flow rate of 2 L/min. The possibility was examined that using trays containing a small amount of gelatin medium in place of the thin, flat filters of the original design would alter the impactor's performance. A polydisperse aerosol of di-2-ethylhexyl phthalate (DEHP or DOP) was sampled directly into an aerodynamic particle sizer and through a stage of the personal impactor. The aerosol particles penetrating the tested stage were sized and counted, and the counts compared with those in the total aerosol. With a Mylar medium filter as the collecting substrate, the measured particle cut-offs (D50) for stages four to seven were 5.2, 3.4, 1.4, and 1.0 microns. With a tray containing gelatin as the collecting substrate, the D50 were 5.9, 4.0, 1.6, and 1.0 microns. The size separation of the personal sampler for ambient bacterial and fungal aerosols compared well with that of the Andersen microbiological impactor. The use of a moist collecting surface, compared to a dry surface, can be expected to enhance recovery of viable airborne microorganisms sensitive to dehydration.

摘要

将市售的个人撞击器进行改装,以便将活微生物采样到半固体、湿润的明胶培养基上,而不是不锈钢或过滤器表面。马普尔个人级联撞击器是一种八级采样器,在流速为2升/分钟时,一至八级的预测截留粒径分别为20、15、10、6、3.5、2、1和0.61微米。研究了用装有少量明胶培养基的托盘代替原始设计中的薄平板过滤器是否会改变撞击器的性能。将邻苯二甲酸二(2-乙基己基)酯(DEHP或DOP)的多分散气溶胶直接采样到空气动力学粒径分析仪中,并通过个人撞击器的一个级。对穿透测试级的气溶胶颗粒进行粒径测量和计数,并将计数结果与总气溶胶中的计数结果进行比较。以聚酯薄膜介质过滤器作为收集基质时,四至七级的测量颗粒截留粒径(D50)分别为5.2、3.4、1.4和1.0微米。以装有明胶的托盘作为收集基质时,D50分别为5.9、4.0、1.6和1.0微米。个人采样器对环境细菌和真菌气溶胶的粒径分离效果与安德森微生物撞击器相当。与干燥表面相比,使用湿润的收集表面有望提高对脱水敏感的空气传播活微生物的回收率。

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