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Use of metal mesh sensors with periodic microstructures to sense and separate aerosol particles in Kenya

机译:使用金属网格传感器具有周期性微观结构,在肯尼亚中感测和分离气溶胶颗粒

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This study introduces a new optical metal mesh (MM) sensor for detection of aerosol particles. The base material of the sensor corresponds to a thin metal membrane with unique optical properties and a micromesh structure. A small air pump pulls air through the MM membrane, permitting capture of aerosol particles on the micromesh surface and subsequent detection of the particles via infrared (IR) techniques. Here, MM membranes with different square apertures (side length: 4.0, 1.8, or 1.1 μm) were combined to form two-membrane stacked MM sensors. The sensors were used to collect particulate matter 2.5 (PM2.5; average diameter: ≤ 2.5 μm) as an indication of environmental pollution in the suburbs of Nairobi, Kenya. The elemental composition of each particle within captured PM2.5 was determined via wavelength-dispersive X-ray spectrometry. The results suggest that stacked MM sensors can successfully provide information about aerosol particle pollutants in the local environment.
机译:本研究介绍了一种用于检测气溶胶颗粒的新型光学金属网(MM)传感器。传感器的基材对应于具有独特光学性质和微微结构的薄金属膜。小型空气泵将空气拉过MM膜,允许捕获微麦表面上的气溶胶颗粒,并通过红外线(IR)技术进行后续检测颗粒。这里,将具有不同方孔(侧长度:4.0,1.8或1.1μm)的MM膜组合以形成双膜堆叠MM传感器。传感器用于收集颗粒物质2.5(PM2.5;平均直径:≤2.5μm)作为内罗毕郊区环境污染的指示,肯尼亚。通过波长分散X射线光谱法测定捕获PM2.5内的每个颗粒的元素组成。结果表明,堆叠的MM传感器可以成功提供关于当地环境中的气溶胶颗粒污染物的信息。

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