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Effect of Aerosol Loading on Separation Performance of PM2.5 Cyclone Separators

机译:气溶胶负载量对PM 2.5 旋风分离器分离性能的影响

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The adverse health effects of particulate matter less than 2.5 μm in diameter (PM_(2.5)) have drawn increasing attention over the past several decades. To obtain reliable measurements, it is critical to efficiently separate PM_(2.5) in the airstream from the beginning till the end of sampling. However, commonly used separators for PM_(2.5) monitoring, such as the BGI Very Sharp Cut Cyclone (VSCC), are usually subject to aerosol-loading effects. This study investigates the loading effect on cyclone separation performance as a function of particle size, cyclone size, particle material, and air humidity. Based on the ratios of dimensions to the body diameter of the BGI VSCC, four cyclones with different body diameters (13–35.6 mm) were fabricated. An ultrasonic atomizer was employed to generate micrometer-sized potassium sodium tartrate (PST) particles and sodium chloride (NaCl) particles as solid challenge particles and di-ethyl-hexyl-sebacate (DEHS) particles as liquid ones. Aerosol particles were neutralized to the Boltzmann charge equilibrium. An aerodynamic particle sizer measured the aerosol distributions and number concentrations upstream and downstream of the cyclones. The experimental results show that solid particles such as PST with sizes close to the cyclone cut-point exhibit a significant loading effect. However, no significant difference is found due to the aerosol loading effect on four different-sized cyclones. The cyclone separation curve appears to shift toward smaller sizes due to aerosol loading. During the loading test, the aerosol penetration of 2.5-μm particles abruptly decreased during the first 20 minutes from 50% to a relatively stable level at 30%—an average decrease of 20%. Thus, the performance of cyclone PM_(2.5) samplers with progressive aerosol loading might result in an underestimation of PM_(2.5), particularly for continuous monitoring.
机译:在过去的几十年中,直径小于2.5μm的颗粒物(PM_(2.5))对健康的不利影响引起了越来越多的关注。为了获得可靠的测量结果,从采样开始到结束有效分离气流中的PM_(2.5)至关重要。但是,用于PM_(2.5)监测的常用分离器,例如BGI极锐切旋风分离器(VSCC),通常会受到气溶胶加载的影响。这项研究调查了加载对旋风分离性能的影响,该影响是粒径,旋风尺寸,颗粒材料和空气湿度的函数。根据BGI VSCC的尺寸与直径之比,制造出四个具有不同直径(13–35.6 mm)的旋风分离器。超声雾化器用于产生微米级的酒石酸钾钠(PST)颗粒和氯化钠(NaCl)颗粒,作为固体挑战颗粒,以及癸二酸二乙基己基癸二酸酯(DEHS)颗粒,作为液体颗粒。气溶胶颗粒被中和至玻尔兹曼电荷平衡。空气动力学粒度仪测量了旋风分离器上游和下游的气溶胶分布和数量浓度。实验结果表明,尺寸接近旋风切割点的固体颗粒(如PST)表现出显着的加载效果。然而,由于对四个不同尺寸的旋风分离器的气溶胶负载效应,未发现明显差异。由于气溶胶负荷,旋风分离曲线似乎向较小的方向移动。在加载测试期间,2.5微米颗粒的气溶胶渗透率在最初的20分钟内突然从50%降低到相对稳定的30%水平,平均降低了20%。因此,气溶胶PM_(2.5)采样器在进行渐进式气溶胶加载时的性能可能会导致对PM_(2.5)的低估,尤其是对于连续监测而言。

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