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Development and Field Evaluation of a Multiple Slit Nozzle-Based High Volume PM2.5 Inertial Impactor Assembly (HVIA)

机译:基于多缝喷嘴的大体积PM2.5惯性冲击器组件(HVIA)的开发和现场评估

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This study presents the development and lab performance of a high volume (Q = 950 LPM), multiple slit nozzle-based PM2.5 (particle aerodynamic diameter < 2.5 μm) inertial impactor and the performance of the same was compared with an existing single stage low flow rate (Q = 15 LPM) PM2.5 impactor. Lab experiments were performed on various slit-based nozzle impactors using polydisperse dolomite powder as test aerosol. After carrying out rigorous parametric evaluation, the optimum slit nozzle-based impactor configuration selected had cutoff size of 2.51 μm (aerodynamic diameter) at an operating flow rate of 215 LPM (medium flow) with a pressure drop of 0.35 kPa across the impactor stage. The length of the slit of this optimum medium flow impactor was extrapolated to a flow rate of 950 LPM to obtain the high volume multiple slit nozzle-based PM2.5 inertial impactor assembly. This novel impactor assembly was fabricated from brass and chrome-plated and then retrofitted in a high volume dust sampler (Model AAS 217NL, Ecotech Instruments, India) downstream of the PM10 cyclone separator. High vacuum silicone grease was used as the impaction substrate. A field study was performed with co-located novel high volume impactor assembly (HVIA) and single stage low flow rate PM2.5 impactor, to not only compare the PM2.5 mass concentrations but elemental, anion and water soluble organic carbon (WSOC)/water soluble inorganic carbon (WSIC) concentrations as well in order to validate the HVIA developed in the present study.
机译:这项研究介绍了高容量(Q = 950 LPM),基于多缝喷嘴的PM2.5(颗粒空气动力学直径<2.5μm)惯性冲击器的开发和实验室性能,并将其性能与现有的单级进行了比较低流量(Q = 15 LPM)PM2.5撞击器。使用多分散白云石粉作为测试气雾剂,在各种基于狭缝的喷嘴冲击器上进行了实验室实验。进行严格的参数评估后,所选的最佳基于狭缝喷嘴的冲击器配置在215 LPM(中等流量)的工作流量下具有2.51μm(空气动力学直径)的截止尺寸,整个冲击器阶段的压降为0.35 kPa。将这种最佳的中等流量冲击器的狭缝长度外推至950 LPM的流量,以获得基于大体积多狭缝喷嘴的PM2.5惯性冲击器组件。这种新颖的冲击器组件由黄铜制成,并镀铬,然后在PM10旋风分离器下游的高容量灰尘采样器(AAS 217NL型,印度Ecotech Instruments,印度)中进行了改装。高真空硅脂被用作冲击基底。使用并置的新型高容量撞击器组件(HVIA)和单级低流量PM2.5撞击器进行了现场研究,不仅要比较PM2.5的质量浓度,还要比较元素,阴离子和水溶性有机碳(WSOC) /水溶性无机碳(WSIC)浓度,以验证本研究中开发的HVIA。

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