首页> 外文会议>Society of Automotive Engineers World Congress >Penetration Calibration and Verification for the Solid Particle Counting System with Polydisperse and Monodisperse Particles
【24h】

Penetration Calibration and Verification for the Solid Particle Counting System with Polydisperse and Monodisperse Particles

机译:具有多分散和单分散颗粒的固体粒子计数系统的渗透校准和验证

获取原文

摘要

Monodisperse and polydisperse Sodium Chloride (NaCl) particles were used to calibrate the solid particle penetration for the Volatile Particle Remover (VPR) in a Horiba prototype Solid Particle Counting System (SPCS). Prior to the calibration, dilution ratios on the SPCS are verified carefully with a flame ionization analyzer (FIA). Size distributions for polydisperse aerosols upstream and downstream of the Volatile Particle Remover (VPR) were measured with a Scanning Mobility Particle Sizer (SMPS). It is found that overall penetrations for polydisperse aerosols are larger than 95percent. Geometric standard deviations from the raw and the diluted by the VPR are within +-1.5percent difference. Thus, shapes of size distributions aren't changed after dilution. Geometric mean diameters shift a little, on average +-5percent after dilution. Therefore, the VPR doesn't change the aerosol characteristics after the aerosol is diluted and heated up to 320 deg C. Penetrations with monodisperse solid particles meet current PMP recommendation. Minimum solid particle penetrations for 30 nm, 50 nm, and 100 nm particles are found at 78.2percent, 90.6percent, and 81.4percent respectively. At 30 nm, penetrations show a big variation with dilution ratios. One of reasons may be due to higher sample flow to reduce the diffusion losses in the system; and the other reason may be due to uncertainties induced by the low detection efficiency at 30 nm for the condensation particle counter (CPC) and low upstream aerosol concentration. It may be a good practice to evaluate the penetration of the VPR by measuring upstream and downstream polydisperse aerosol size distributions although it isn't recommended by PMP at this moment. It gives more information about the VPR performance than the monodisperse particle described by the PMP. In the meantime, the polydisperse aerosol is easier to be generated and handled.
机译:单分散多分散和氯化钠(NaCl)的颗粒用于校准挥发性粒子移除(VPR)在堀场原型固体颗粒计数系统(SPCS)固体颗粒渗透。在此之前的校准,在SPCS稀释比率有火焰离子化分析仪(FIA)小心验证。对于多分散气溶胶尺寸分布上游和挥发性粒子移除(VPR)的下游,用扫描型电迁移率粒径仪(SMPS)来测量。研究发现,多分散气溶胶整体贯穿比95percent大。从原料和由VPR稀释几何标准偏差是在±-1.5percent差。因此,粒度分布的形状不稀释后改变。几何平均直径稀释后移了一下,平均+ -5percent。因此,气溶胶稀释,并用单分散的固体颗粒加热至320℃。穿凿后满足当前PMP推荐的VPR不改变气溶胶特性。为30纳米,50纳米和100倍纳米的粒子最小的固体颗粒穿透在78.2percent,90.6percent,和分别81.4percent发现。为30纳米,穿透显示出与稀释比一个大的变化。一个原因可能是由于更高的采样流,以减少系统中的扩散损失;另一个原因可能是由于在用于缩合粒子计数器(CPC)和低上游气溶胶浓度30nm的诱导通过低的检测效率的不确定性。它可能是一个很好的做法,通过测量上游和下游的多分散气溶胶粒度分布虽然没有在这一刻推荐PMP评价VPR的渗透。它给出了关于比由PMP描述的单分散颗粒中的表现VPR的更多信息。在此期间,多分散气溶胶是更容易生成和处理。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号