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Field performance evaluation of a newly developed PM2.5 sampler at IIT Kanpur

机译:IIT坎普尔大学新开发的PM2.5采样器的现场性能评估

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In order to meet the challenges of growing air pollution for a developing nation and to measure the ambient fine particles (PM_(2.5), particles having aerodynamic diameter less than 2.5 μn) on routine basis an air sampler was designed, developed and evaluated in the field. The impactor removes particles greater than 2.5 μrn from the air stream via impacting them onto a vacuum grease substrate and finer particles get eventually collected on a backup filter. Various impactor nozzles with conical geometry were designed based on the published theoretical design equations. A detail parametric investigation was carried out which resulted in the optimum impactor nozzle design. For this exercise, a novel dry aerosol generator was employed in addition to the well known time-of-flight instrument, APS (Aerodynamic Particle Sizer, Model 3021, TSI Inc.). The average particle losses for the impactor nozzle as well as the sampler body were below 10% and the overall pressure drop (including a backup 47 mm filter) through the PM_(2.5) sampler was only 2 in. of H_2O. This developed PM_(2.5) sampler operates at a flow rate of 15 LPM. Field performance of this sampler was evaluated through co-located sampling with a high volume PM_(2.5) reference sampler (HVS, GEM-BLI Model 2360, Tisch Environment Instrument) within the IIT Kanpur campus. The sampling period was 10 h long and it was carried out on six different days. The entire sets of filters were analyzed gravimetrically followed by their chemical analysis for elemental and anionic analyses. The particle mass, elemental, and anionic concentrations obtained with this newly developed PM_(2.5) sampler as well as those from the reference HVS sampler showed moderate to good correlation.
机译:为了应对发展中国家日益严重的空气污染挑战并测量环境中的细颗粒物(PM_(2.5),空气动力学直径小于2.5μn的颗粒),常规设计,开发和评估了空气采样器。领域。撞击器通过将其撞击到真空油脂基体上,从气流中去除大于2.5μm的颗粒,最终将更细的颗粒收集在备用过滤器上。基于已发布的理论设计方程式,设计了具有锥形几何形状的各种冲击喷嘴。进行了详细的参数研究,得出了最佳的冲击喷嘴设计。为了进行此练习,除了使用众所周知的飞行时间测量仪APS(空气动力学粒径仪,型号3021,TSI Inc.)外,还使用了新型的干式气溶胶发生器。撞击器喷嘴以及采样器主体的平均颗粒损失低于10%,并且通过PM_(2.5)采样器的总压降(包括备用47 mm过滤器)仅为2 in。H_2O。此开发的PM_(2.5)采样器以15 LPM的流速运行。通过在IIT坎普尔校园内使用高容量PM_(2.5)参考采样器(HVS,GEM-BLI 2360型,Tisch环境仪器)在同一地点采样,评估了该采样器的现场性能。采样时间为10小时,在六个不同的日期进行。重量分析整套过滤器,然后对其进行化学分析,以进行元素和阴离子分析。用这种新开发的PM_(2.5)采样器以及参考HVS采样器获得的颗粒质量,元素和阴离子浓度显示出中等至良好的相关性。

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