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首页> 外文期刊>Journal of Aerosol Science >A compact multistage(cascade)impactor for the characterization of atmospheric' aerosols
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A compact multistage(cascade)impactor for the characterization of atmospheric' aerosols

机译:紧凑的多级(级联)冲击器,用于表征大气气溶胶

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This paper presents the development,laboratory characterization,and field evaluation of a compact multistage cascade impactor(CCI).The CCI operates at a flow rate of 30 LPM and consists of eight impaction stages equipped with rectangular slit-shaped acceleration nozzles.A 47 mm backup Teflon membrane filter is used downstream of the eighth stage to collect particles smaller than 0.16 um.In each stage,particles are retained by impaction onto the inert polyurethane foam(PUF)substrate.The major feature of this novel sampler is its ability to both fractionate by size and collect relatively large amounts of particles(mg quantities)onto an inert polyurethane foam impaction substrates.Even though the impaction substrates are not coated with adhesives such as grease or mineral oil,particle bounce and re-entrainment losses were found to be insignificant.Impaction characteristics(cutpoint and sharpness of collection efficiency curve)of the PUF substrates are maintained for mass loadings of at least 25 mg,which is much higher than for other commonly used rigid,flat impaction substrates.The system was calibrated in laboratory experiments using polydisperse aerosols.The 50% cutpoints of the eight stages were 9.9,5.3,3.3,2.5,1.7,1.0,0.47 and 0.16 um(aerodynamic diameter),with pressure drops of 0.02,0.02,0.04,0.06,0.08,0.27,1.57 and 5.73 kPa.These pressure drops are considerably lower than those obtained using flat rigid impaction substrates with comparable cut-points.Particle losses for each stage were less than 10% for particles smaller than 7 urn and less than 20% for particles larger than 7 um.The CCI was also compared with the collocated micro-orifice impactor(MOI)in laboratory-controlled experiments using artificially generated polydisperse aerosol.These laboratory tests showed that the mass concentrations measured by the MOI are considerably lower than those measured by the CCI(the average ratio of total mass concentration of MOI to CCI was 0.86),with the size distribution measured by the CCI closer to that measured using the real time particle sizing instruments (SMPS,APS).A field comparison of CCI,the Harvard impactor(HI)and the federal reference method(FRM)for fine particles showed a good agreement between the CCI and the reference samplers for particles smaller than 2.5 mum.
机译:本文介绍了紧凑型多级串联冲击器(CCI)的开发,实验室表征和现场评估.CCI以30 LPM的流量运行,由八个配有矩形狭缝形加速喷嘴的冲击级组成,直径为47 mm第八阶段的下游使用备用的Teflon膜过滤器来收集小于0.16 um的颗粒。在每个阶段中,通过撞击将颗粒保留在惰性聚氨酯泡沫(PUF)基质上。按大小分级并在惰性聚氨酯泡沫撞击基材上收集相对大量的颗粒(mg量)。即使撞击基材未涂有油脂或矿物油等粘合剂,也会发现颗粒反弹和重新夹带损失维持PUF基板的冲击特性(切割效率和收集效率曲线的清晰度),以确保至少在30最高25 mg,远远高于其他常用的刚性,扁平撞击基材。该系统在实验室实验中使用多分散气溶胶进行了校准。八个阶段的50%临界点分别为9.9、5.3、3.3、2.5、1.7、1.0 ,0.47和0.16 um(空气动力学直径),压降为0.02、0.02、0.04、0.06、0.08、0.27、1.57和5.73 kPa。这些压降大大低于使用具有相同切割点的平面刚性冲击基材获得的压降对于小于7微米的颗粒,每个阶段的颗粒损失小于10%,对于大于7微米的颗粒,小于20%。在实验室控制的实验中,将CCI与并置的微孔撞击器(MOI)进行了比较这些实验室测试表明,MOI测量的质量浓度明显低于CCI测量的质量浓度(MOI与CCI的总质量浓度之比为0.86),且尺寸分布CCI的测量值更接近于实时粒度测量仪(SMPS,APS)的测量值。CCI,哈佛撞击器(HI)和联邦参考方法(FRM)对细颗粒的现场比较表明, CCI和参考采样器用于小于2.5微米的颗粒。

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