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交叉气流对生物安全柜性能的影响。

Influence of crossdrafts on the performance of a biological safety cabinet.

作者信息

Rake B W

出版信息

Appl Environ Microbiol. 1978 Aug;36(2):278-83. doi: 10.1128/aem.36.2.278-283.1978.

Abstract

A biological safety cabinet was tested to determine the effect of crossdrafts (such as those created by normal laboratory activity or ventilation) upon the ability of the cabinet to protect both experiments and investigators. A simple crossdraft, controllable from 50 to 200 feet per min (fpm; 15.24 to 60.96 m/min), was created across the face of the unit. Modifications of standardized procedures involving controlled bacterial aerosol challenges provided stringent test conditions. Results indicated that, as the crossflow velocities exceeded 100 fpm, the ability of the cabinet to protect either experiments or investigators decreased logarithmically with increasing crossdraft speed. Because 100 fpm is an airspeed easily achieved by some air conditioning and heating vents (open windows and doorways may create velocities far in excess of 200 fpm), the proper placement of a biological safety cabinet within the laboratory--away from such disruptive air currents--is essential to satisfactory cabinet performance.

摘要

对一台生物安全柜进行了测试,以确定交叉气流(如正常实验室活动或通风产生的气流)对该安全柜保护实验和研究人员能力的影响。在该设备表面产生了一种简单的交叉气流,速度可控制在每分钟50至200英尺(fpm;15.24至60.96米/分钟)之间。对涉及受控细菌气溶胶挑战的标准化程序进行修改,提供了严格的测试条件。结果表明,当横流速度超过100 fpm时,安全柜保护实验或研究人员的能力会随着交叉气流速度的增加呈对数下降。由于100 fpm是一些空调和暖气通风口很容易达到的风速(打开窗户和门道可能会产生远远超过200 fpm的速度),因此在实验室中正确放置生物安全柜——远离这种干扰气流——对于安全柜的良好性能至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2ef/291215/5955fa08a54a/aem00244-0076-a.jpg

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