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首页> 外文期刊>Journal of Aerosol Science >Design and development of an electrostatic sampler for bioaerosols with high concentration rate
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Design and development of an electrostatic sampler for bioaerosols with high concentration rate

机译:高浓度生物气溶胶静电采样器的设计与开发

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Integration of bioaerosol sampling methods with modern analysis techniques,such as the polymerase chain reaction as well as our ability to detect low concentrations of airborne agents require samplers that are able not only to efficiently collect the biological particles,but also to concentrate them in small amounts of fluids.In this research,we began development of a novel bioaerosol sampler,where a combination of electrostatic collection mechanism with superhydrophobic("Lotus leaf type)collection surface allows for efficient particle collection,removal and concentration in water droplets as small as 5 mu L.This new sampling concept allowed achieving very high sample concentration rates(up to 1 million and higher)and could be applied to detect low concentrations of bioaerosols in various environments.The prototype electrostatic precipitator with superhydrophobic surface had a shape of a half-pipe,where a top plate served as the ground electrode,while the collecting surface was 3.2mm wide rectangular electrode coated with a superhydrophobic substance and positioned in a groove in the flat bottom surface.Airborne particles drawn into the sampler were positively charged and then by the action of an electrostatic field deposited onto the negatively charged electrode.The sampler was positioned at a ~1° inclination angle to the horizontal,and the injected water droplets rolled off of electrode's surface removing deposited particles.Sampler's performance has been analyzed with polystyrene latex particles of five aerodynamic diameters(0.5,1.2,1.9,3.2,and 5.1 mu m),collecting droplet volumes ranging from 5 to 60mu L,and sampling flow rates of 2,5,and 10L/min.It was determined that vast majority of particles deposited onto the electrode are removed by the first rolling droplet,which for 3.2 urn particle and 20 mu L droplet translated into a concentration rate of 3 X 10.By narrowing the electrode to 2.1 mm and lowering the droplet volume to 5 mu L we achieved the concentration rate as high as 1.2 X 10~6.These concentration rates were sustained for sampling times as long as 60 min.This novel sampling concept demonstrates a great potential for sampling and detecting airborne microorganisms in low concentration environments.
机译:将生物气溶胶采样方法与现代分析技术相结合,例如聚合酶链反应以及我们检测低浓度空气传播剂的能力,要求采样器不仅能够有效收集生物颗粒,而且能够将其少量浓缩在这项研究中,我们开始开发一种新型的生物气溶胶采样器,该设备将静电收集机制与超疏水(“荷叶型”)收集表面相结合,可以有效地收集,去除和浓缩小至5微米的水滴L.这种新的采样概念可以实现非常高的样品浓缩率(高达100万甚至更高),并可以用于检测各种环境中的低浓度生物气溶胶。具有超疏水表面的静电除尘器原型具有半管形状,其中顶板作为接地电极,而收集表面为3.2mm w矩形电极涂有超疏水性物质,并放置在平坦底表面的凹槽中。吸入采样器中的空气传播粒子带正电,然后在静电场的作用下沉积到带负电的电极上。与水平面成约1°的倾斜角,注入的水滴从电极表面滚落,除去沉积的颗粒。使用五个空气动力学直径(0.5、1.2、1.9、3.2和5.1μm)的聚苯乙烯乳胶颗粒分析了采样器的性能收集的液滴体积为5至60μL,采样流速为2,5和10L / min。确定了沉积在电极上的绝大多数颗粒均被第一个滚动液滴除去,对于3.2微米的颗粒将20μL的液滴转化为3 X 10的浓缩率。通过将电极缩小至2.1 mm并将液滴体积降低至5μL,我们实现了浓缩n速率高达1.2 X 10〜6。这些浓缩率持续了60分钟的采样时间。这种新颖的采样概念展示了在低浓度环境中采样和检测空气中微生物的巨大潜力。

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