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Investigation of a New Electrostatic Sampler for Concentrating Biological and Non-Biological Aerosol Particles

机译:新型静电采样器浓缩生物和非生物气溶胶粒子的研究

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摘要

The detection of airborne pathogens is becoming a subject of great concern in modern day society. Recent studies have shown that electrostatic samplers are suitable for collecting microorganisms as well as preserving their viability. In most of these studies, flow rates were lower than 12.5 L/min or required a concentration stage to increase the flow rate to 100 L/min. In the present study, a single stage electrostatic sampler was developed for an efficient collection of microorganisms at 100 L/min. The design is based on the positive DC corona between coaxial cylinders to continuously create charged particles as they pass through the sampler. The physical collection efficiency of the device was investigated by sampling the ambient air particles. The efficiency in collecting live biological samples was determined by sampling live bacterial spores with the collector situated inside an aerosol chamber. It is shown that particles of 0.3–0.35 μm are captured with an efficiency of about 86%, whereas cultivable spores of Bacillus thuringiensis are collected with an efficiency of about 94%. Results are compared with an analytical predictive model. The experimental results are similar to the efficiencies previously reported in the literature; however, the current sampler design features a higher flow rate which enables the device to be used as an alarm trigger in a shorter period of time.
机译:空气中病原体的检测正成为当今社会非常关注的主题。最近的研究表明,静电采样器适用于收集微生物并保持其生存能力。在大多数这些研究中,流速低于12.5 L / min,或者需要浓缩阶段才能将流速提高至100 L / min。在本研究中,开发了一种单级静电采样器,用于以100 L / min的效率高效收集微生物。该设计基于同轴圆柱体之间的正DC电晕,以在带电粒子通过采样器时不断产生带电粒子。通过采样环境空气颗粒来研究设备的物理收集效率。收集活生物样品的效率是通过使用位于气雾室内的收集器取样活细菌孢子来确定的。结果表明,捕获的0.3-0.35μm颗粒的效率约为86%,而苏云金芽孢杆菌的可培养孢子的捕获效率约为94%。将结果与分析预测模型进行比较。实验结果类似于先前文献中报道的效率。但是,当前的采样器设计具有较高的流速,可以使该设备在较短的时间内用作警报触发器。

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