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空气中可存活颗粒与总颗粒之间的定量关系。

Quantitative relationship between airborne viable and total particles.

作者信息

Oxborrow G S, Fields N D, Puleo J R, Herring C M

出版信息

Health Lab Sci. 1975 Jan;12(1):47-51.

PMID:1052503
Abstract

The numbers of viable and total particles in a microbiological laboratory and in a class 100,000 clean room were examined for a predictable relationship to aid the monitoring of airborne microbial contamination. Six-stage Andersen samplers were used to enumerate viable particles and a modified Royco particle counter was used to enumerate total particles. Over 99% of the total particles present in both areas were less than 1 micron in size; however, only 1 in 10,000 of the particles this size were viable. At the other end of the particle size scale, it was found that less than 0.1% of the total particles were greater than 5.4 micron in size, but only 4.5% of these particles were viable. Viable particles make up only a very small portion of the total particles making any correlation undetectable. An analysis of the combined data from both areas using only total and viable particles over 5.4 micron showed a positive correlation. An analysis of the data from each area individually showed no correlation. Estimation of viable particulates from enumeration of total particulates in the large particle ranges may be possible only in areas where a high degree of environmental control is exercised.

摘要

对微生物实验室和十万级洁净室内的活菌颗粒数和总颗粒数进行检测,以寻找可预测的关系,辅助监测空气中的微生物污染。使用六级安德森采样器计数活菌颗粒,使用改良的罗伊科粒子计数器计数总颗粒。两个区域中超过99%的总颗粒尺寸小于1微米;然而,这种尺寸的颗粒中只有万分之一是活菌。在颗粒尺寸范围的另一端,发现总颗粒中小于0.1%的颗粒尺寸大于5.4微米,但这些颗粒中只有4.5%是活菌。活菌颗粒仅占总颗粒的极小部分,无法检测到任何相关性。仅使用尺寸大于5.4微米的总颗粒和活菌颗粒对两个区域的合并数据进行分析,显示出正相关。对每个区域的数据单独分析则未显示出相关性。只有在实施高度环境控制的区域,才可能根据大颗粒范围内的总颗粒计数估算活菌颗粒。

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