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Application of a Diffusion Charger to Quantify Real-Time Particle Emissions from Light-Duty Vehicles: a Comparison Study with a Particle Size Spectrometer

机译:扩散充电器的应用量化轻型车辆的实时粒子排放:粒度光谱仪的比较研究

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摘要

Measurement methods for vehicle-emitted particulate matter (PM) have evolved as vehicle emission standards have become more stringent. For example, the filter-based gravimetric method has been demonstrated feasible to measure emissions at levels below 1 mg/mi from light-duty vehicles. However, while regulatory methods and instruments for measuring PM emissions are rigorous and accurate, there is a need to continue evaluating alternatives for use in the laboratory, as well as simple and robust instruments for screening that can be used for detecting high emissions on the roadside and evaluating the effectiveness of repairs in support of inspection and maintenance (I/M) programs. This study investigated the performance of an aerosol diffusion charger (TSI Electrical Aerosol Detector) by comparing its raw signal (aerosol active surface area) and its conversion to particle number and mass emission rates with those reported or calculated from a multi-channel electrometer-based particle size spectrometer (TSI Engine Exhaust Particle Sizer) and various condensation particle counters (CPCs). Four light-duty vehicles were tested, including gasoline port fuel injection (PFI), gasoline direct injection (GDI), and a diesel vehicle equipped with a diesel particulate filter (DPF). Results show that the diffusion charger was responsive over a wide particle size and concentration range, exhibiting sufficient signal-to-noise ratio during transient measurements of the gasoline PFI vehicle and light-duty diesel vehicle with a DPF (both certified below 1 mg/mi). High sensitivity at low concentrations suggests that the diffusion charger may have potential for identifying failures of emission control systems at lower concentrations than methods designed to report real-time suspended particle number or mass metrics directly. Systematic and fundamental data from our study underscore the challenge with "black box" equipment calibrated to calculate total particle number and mass from surface area measurements based on constant unimodal fit parameters. Future work could focus on the applications from deploying active surface area monitors at the roadside or for using surface area measurements to evaluate repair effective in support of I/M programs.
机译:车辆发射颗粒物质(PM)的测量方法已经发展为载体排放标准变得更加严格。例如,基于滤光片的重量测定方法已经证明可行的可从轻型车辆测量低于1mg / mi的水平的排放。然而,虽然监管方法和用于测量PM排放的监管方法和仪器是严格和准确的,但需要继续评估在实验室中使用的替代品,以及可用于检测路边高排放的简单和稳健的仪器并评估维修的有效性,以支持检查和维护(I / M)计划。本研究通过将其原始信号(气溶胶活性表面积)及其转化为颗粒数和质量排放率与报告的那些或由基于多通道电力计计算的那些的转换来研究气溶胶扩散充电器(TSI电气溶解器检测器)的性能。粒度光谱仪(TSI发动机排气粒子Sizer)和各种缩合颗粒计数器(CPC)。测试了四辆轻型车辆,包括汽油料燃料喷射(PFI),汽油直接注射(GDI),以及配备有柴油颗粒过滤器(DPF)的柴油车辆。结果表明,扩散充电器在宽粒径和浓度范围内响应,在汽油PFI车辆和轻型柴油车辆的瞬态测量期间表现出足够的信噪比,其中具有DPF(均证明1 Mg / mi) )。低浓度的高灵敏度表明,扩散充电器可以具有比旨在直接报告实时悬浮粒子数或质量指标的方法在较低浓度下识别排放控制系统的故障。我们研究的系统和基本数据强调了“黑匣子”设备校准的挑战,以基于恒定的单峰配合参数计算从表面积测量的总粒子数和质量。未来的工作可以专注于在路边部署有源表面区域监视器的应用程序或使用表面积测量来评估维修,以支持I / M程序。

著录项

  • 来源
    《Emission Control Science and Technology》 |2021年第1期|41-55|共15页
  • 作者单位

    Center for Environmental Research and Technology (CE-CERT) Bourns College of Engineering University of California Riverside CA USA Department of Mechanical Engineering University of California Riverside CA USA;

    California Air Resources Board (CARB) 1001 I Street Sacramento CA USA;

    Center for Environmental Research and Technology (CE-CERT) Bourns College of Engineering University of California Riverside CA USA;

    California Air Resources Board (CARB) 1001 I Street Sacramento CA USA;

    Center for Environmental Research and Technology (CE-CERT) Bourns College of Engineering University of California Riverside CA USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Screening tool; High emitter; DPF;

    机译:筛选工具;高发射器;DPF.;

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