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评估 EDAR 车辆排放遥感检测技术。

Evaluation of EDAR vehicle emissions remote sensing technology.

机构信息

Institute for Transport Studies, Faculty of Environment, University of Leeds, Leeds LS2 9JT, UK.

Eastern Research Group Inc, 3508 Far West Boulevard, Suite 210, Austin, TX 78731, USA.

出版信息

Sci Total Environ. 2017 Dec 31;609:1464-1474. doi: 10.1016/j.scitotenv.2017.07.137. Epub 2017 Aug 7.

Abstract

Despite much work in recent years, vehicle emissions remain a significant contributor in many areas where air quality standards are under threat. Policy-makers are actively exploring options for next generation vehicle emission control and local fleet management policies, and new monitoring technologies to aid these activities. Therefore, we report here on findings from two separate but complementary blind evaluation studies of one new-to-market real-world monitoring option, HEAT LLC's Emission Detection And Reporting system or EDAR, an above-road open path instrument that uses Differential Absorption LIDAR to provide a highly sensitive and selective measure of passing vehicle emissions. The first study, by Colorado Department of Public Health and Environment and Eastern Research Group, was a simulated exhaust gas test exercise used to investigate the instrumental accuracy of the EDAR. Here, CO, NO, CH and CH measurements were found to exhibit high linearity, low bias, and low drift over a wide range of concentrations and vehicle speeds. Instrument accuracy was high (R 0.996 for CO, 0.998 for NO; 0.983 for CH; and 0.976 for CH) and detection limits were 50 to 100ppm for CO, 10 to 30ppm for NO, 15 to 35ppmC for CH, and, depending on vehicle speed, 100 to 400ppmC for CH. The second study, by the Universities of Birmingham and Leeds and King's College London, used the comparison of EDAR, on-board Portable Emissions Measurement System (PEMS) and car chaser (SNIFFER) system measurements collected under real-world conditions to investigate in situ EDAR performance. Given the analytical challenges associated with aligning these very different measurements, the observed agreements (e.g. EDAR versus PEMS R 0.92 for CO/CO; 0.97 for NO/CO; ca. 0.82 for NO/CO; and, 0.94 for PM/CO) were all highly encouraging and indicate that EDAR also provides a representative measure of vehicle emissions under real-world conditions.

摘要

尽管近年来做了大量工作,但在许多空气质量标准受到威胁的地区,车辆排放仍然是一个重要的贡献因素。政策制定者正在积极探索下一代车辆排放控制和当地车队管理政策的选择,以及新的监测技术来辅助这些活动。因此,我们在此报告了两项独立但互补的盲态评估研究的结果,这两项研究针对一种新的市场实时监测选项——HEAT LLC 的排放检测和报告系统(EDAR)。EDAR 是一种道路上方开放路径仪器,使用差分吸收激光雷达(Differential Absorption LIDAR)提供对过往车辆排放的高度敏感和选择性测量。第一项研究由科罗拉多州公共卫生和环境部以及东部研究集团进行,是一项模拟废气测试,用于研究 EDAR 的仪器准确性。在这里,CO、NO、CH 和 CH 的测量结果表现出很高的线性、低偏差和宽浓度及车速范围内的低漂移。仪器精度很高(CO 为 0.996,NO 为 0.998,CH 为 0.983,CH 为 0.976),检测限为 CO 为 50 至 100ppm,NO 为 10 至 30ppm,CH 为 15 至 35ppmC,具体取决于车速,CH 为 100 至 400ppmC。第二项研究由伯明翰大学、利兹大学和伦敦国王学院进行,使用 EDAR、车载便携式排放测量系统(PEMS)和汽车追逐器(SNIFFER)系统在实际条件下收集的测量结果进行比较,以研究现场 EDAR 的性能。鉴于与这些非常不同的测量结果进行对齐相关的分析挑战,观察到的一致性(例如,EDAR 与 PEMS 的 CO/CO 为 0.92,NO/CO 为 0.97,NO/CO 约为 0.82,PM/CO 为 0.94)都非常令人鼓舞,表明 EDAR 还可以在实际条件下提供车辆排放的代表性测量结果。

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