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基于对测试结果的修正,燃料和驾驶条件对中国 VI 汽油车颗粒物数量排放的影响。

Effects of fuel and driving conditions on particle number emissions of China-VI gasoline vehicles: based on corrections to test results.

机构信息

Tianjin Key Laboratory of Urban Transport Emission Research, College of Environmental Science and Engineering, Nankai University, Tianjin, 300350, China.

China Automotive Technology and Research Center Co., Ltd., Tianjin, 300300, China.

出版信息

Environ Monit Assess. 2024 May 31;196(6):591. doi: 10.1007/s10661-024-12756-2.

Abstract

The increasing number of vehicles are emitting a large amount of particles into the atmosphere, causing serious harm to the ecological environment and human health. This study conducted the Worldwide Harmonized Light Vehicles Test Cycle (WLTC) to investigate the emission characteristics of particle number (PN) of China-VI gasoline vehicles with different gasoline. The gasoline with lower aromatic hydrocarbons and olefins reduced particulate matter (PM) and PN emissions by 24% and 52% respectively. The average PN emission rate of the four vehicles during the first 300 s (the cold start period) was 7.2 times that of the 300 s-1800s. Additionally, because the particle transmission time and instrument response time, the test results of instantaneous emissions of PN were not synchronized with vehicle specific power (VSP). By calculating the Spearman correlation coefficient between pre-average vehicle specific power (PAVSP) and the test results of PN instantaneous emissions, the delay time was determined as 10s. After the PN emissions results were corrected, the PN emissions were found to be more related to VSP. By analyzing the influence of driving status on emission, this study found that vehicles in acceleration mode increased PN emissions by 76% compared to those in constant speed mode.

摘要

车辆数量的增加导致大量颗粒排放到大气中,对生态环境和人类健康造成严重危害。本研究进行了全球统一轻型车辆测试循环(WLTC),以调查不同汽油的中国 VI 汽油车的颗粒数(PN)排放特性。芳烃和烯烃含量较低的汽油分别将颗粒物(PM)和 PN 排放量降低了 24%和 52%。四辆汽车在前 300 秒(冷启动期)的平均 PN 排放率是 300-1800 秒的 7.2 倍。此外,由于颗粒传输时间和仪器响应时间,PN 瞬时排放的测试结果与车辆比功率(VSP)不同步。通过计算预平均车辆比功率(PAVSP)与 PN 瞬时排放测试结果之间的斯皮尔曼相关系数,确定延迟时间为 10s。对 PN 排放结果进行修正后,发现 PN 排放与 VSP 更相关。通过分析行驶状态对排放的影响,本研究发现加速模式下的车辆比恒速模式下的车辆增加了 76%的 PN 排放。

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