使用便携式粒子计数器分析生物安全柜(BSC)中粒子稳定时间

Herlina Candra Putri, Priyambada Cahya Nugraha, Endro Yulianto, A. Bhatt
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引用次数: 0

摘要

生物安全柜(BSC)是一个具有空气通风的实验室工作区域,其设计目的是保护工作人员与材料样品,环境和材料样品一起工作,免受可能的污染或引起致病菌或病毒传播的危险。本研究的目的是分析平衡计分卡达到平衡计分卡空间无粒子状态所需时间的稳定性。这是通过使用PMS7003传感器制作一个模块来检测粒子的数量来完成的。本研究使用Arduino Mega系统对数据进行处理,然后以图形和数字的形式显示。在粒子数为162,965的情况下,BSC所需时间为29秒,而在粒子数为186,408的情况下,所需时间为38秒。由此可知,如果BSC空间中的粒子数越来越多,则BSC达到无粒子状态所需的时间越长。使用单个风机的平衡记分卡无法同时达到稳定的颗粒数量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Use of a Portable Particle Counter to Analyze Particle Stability Time in a Biological Safety Cabinet (BSC)
Biological Safety Cabinet (BSC) is a laboratory work area with air ventilation that has been engineered to protect workers working with material samples, the environment and material samples from the possible danger of contamination or causing the spread of pathogenic bacteria or viruses. The purpose of this study is to analyze the stability of the time required for the BSC to reach the condition of no particles in the BSC space. This is done by making a module using the PMS7003 sensor to detect the number of particles. This study uses the Arduino Mega system for data processing and then displays it in the form of graphs and numbers. In the condition of the number of particles of 162,965, the time required for the BSC is 29 seconds, while in the condition of the number of particles of 186,408, the time required is 38 seconds. So it is known that if the number of particles in the BSC space is more and more particles in the BSC space, the longer it takes for the BSC to reach the no-particle condition. BSC that uses a single fan blower cannot achieve a stable number of particles simultaneously.
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