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Validation of cross-contamination control in biological safety cabinet for biotech/pharmaceutical manufacturing process

机译:生物技术/药物制造过程中生物安全柜中交叉污染控制的验证

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For class II, type A2 biological safety cabinets (BSC), NSF/ANSI Standard 49 should be conformed in cabinet airflow velocity derivation, particle contamination, and aerodynamic flow properties. However, there exists a potential problem. It has been built that the cabinet air flow stabilize is influenced by the quantity of downflow of air and the height above the cabinet exhaust opening. Three air downflow quantities were compared as an operating apparatus was placed from 20 to 40 cm above the bench of the cabinet. The results show that the BSC air downflow velocity is a function of increased sampling height, displaying that containment is improvingly permitted over product protection as the sampling height decreases. This study investigated the concentration gradient of particles at various heights and downflow air quantity from the bench of the BSC. Experiment results indicate that performance near the bench was better than in the rest of the BSC. In terms of height, the best cleanliness was measured at a height of 10 cm over the bench; it reduced actually with add in height. The empirical curves accommodate, founded on the concentration gradient of particle created was elaborated for evaluating the particle concentration at different heights and downflow air quantity from the source of the bench of the BSC. The particle image velocimetry system applied for BSC airflow research to fix amount of airflow patterns and air distribution measurement and results of measurements show how obstructions can greatly influence the airflow and contaminant transportation in a BSC.
机译:对于II类,A2型生物安全柜(BSC),NSF / ANSI标准49应符合机柜气流速度推导,粒子污染和空气动力学性能。但是,存在潜在的问题。已经建造了机柜空气流量稳定受到空气下流量的影响和机柜排气口上方的高度。将三个空气向下流量进行比较,作为操作装置,在机柜的替补座上方置于20至40cm。结果表明,BSC空气下流速度是提高采样高度的函数,随着采样高度减小,显示器可以通过产品保护来改善允许的容纳。该研究研究了各种高度的颗粒的浓度梯度,并从BSC的替补座中向下流出空气量。实验结果表明,在替补席上的性能优于BSC的其余部分。在高度方面,在长凳上以10厘米的高度测量最佳清洁度;它实际上减少了高度。阐述了在颗粒的浓度梯度上的经验曲线,以阐述用于评估不同高度的颗粒浓度和从BSC的替补座的源极。施加的粒子图像速度系统适用于BSC气流研究以固定气流模式的量和空气分布测量和测量结果表明障碍物如何大大影响BSC中的气流和污染物运输。

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