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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Characterization of particle number counters based on pulsed-mode diffusion charging
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Characterization of particle number counters based on pulsed-mode diffusion charging

机译:基于脉冲模式扩散充电的粒子数计数器的表征

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New emission legislation requires number concentration measurements of particles emitted by passenger cars during periodic technical inspections (PTI). For PTI suitable instruments are needed to detect faults, such as diesel particulate filter failures. Diffusion charging is well established as a charging method for particle sensors and is suited to realize low-cost instruments for exhaust particle number measurements in the appropriate size and concentration regime. In order to manufacture affordable instruments, sensors should not only be low cost, but their calibration procedure must be simple and reliable. We experimentally investigated the impact of test aerosol properties-such as material, size, concentration and morphology-on the counting efficiency of two pulsed-mode, unipolar diffusion charging approaches: (i) conventional diffusion charging and (ii) modulated precipitation. By separately characterizing the particle charging process and the overall sensor response with different test aerosols, we found that the modulated precipitation principle shows a very good correlation to particle number concentration, although the method significantly depends on the particle morphology. The conventional approach is not well suited for particle number measurements due to its intrinsic dependency on particle size. We demonstrate that the counting efficiency of the modulated precipitation configuration measured with different tests aerosols stays within 3% for particle sizes up to 80 nm. The difference between a calibration with soot and salt particles with respect to the total solid particle number concentration was estimated to be smaller than 11%. Thus, a calibration according to recently introduced PTI legislation with any of the test aerosols considered is feasible. Tailpipe measurements confirmed the applicability of the modulated precipitation configuration for PTI. As a consequence, the use of diffusion charging based instruments in periodic inspections seems to be suitable due to appropriate sensor response and the simplicity of the calibration process. Copyright (c) 2020 American Association for Aerosol Research
机译:新的排放立法需要在周期性技术检查(PTI)期间乘用车发出的颗粒的数量浓度测量。对于PTI,需要仪器检测故障,例如柴油微粒过滤器故障。扩散充电作为颗粒传感器的充电方法,适用于实现适当尺寸和浓度制度的用于排气粒子数测量的低成本仪器。为了制造经济实惠的仪器,传感器不仅要成本低,而且它们的校准程序必须简单可靠。我们通过实验研究了试验气溶胶性能的影响 - 例如材料,尺寸,浓度和形态 - 对两个脉冲模式的计数效率,单极扩散充电方法:(i)常规扩散充电和(ii)调制沉淀。通过单独表征粒子充电过程和具有不同测试气溶胶的整体传感器响应,我们发现调制的沉淀原理显示与颗粒数浓度非常好的相关性,尽管该方法显着取决于颗粒形态。由于其固有依赖性对粒度的依赖性,常规方法不太适用于粒子数测量。我们证明,用不同试验气溶胶测量的调制降水配置的计数效率保持在3%以内,粒度高达80nm。估计烟灰和盐颗粒相对于总固体颗粒数浓度的校准之间的差异估计小于11%。因此,根据最近引入了与所考虑的任何测试气溶胶的PTI立法的校准是可行的。 Tailpipe测量证实了PTI调制沉淀配置的适用性。因此,由于适当的传感器响应和校准过程的简单性,在周期性检查中使用基于扩散充电的仪器似乎是合适的。版权所有(c)2020美国气溶胶研究协会

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