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在 NEDC 下,乘用车行驶过程中 BTEX 化合物的排放。

The emission of BTEX compounds during movement of passenger car in accordance with the NEDC.

机构信息

Faculty of Technical Sciences, Department of Environmental Engineering and Occupational Safety and Health, University of Novi Sad, Trg Dositeja Obradovića 6, 21000 Novi Sad, Serbia.

Faculty of Technical Sciences, Chair for Engines and Motor Vehicles, University of Novi Sad, Trg Dositeja Obradovića 6, 21000 Novi Sad, Serbia.

出版信息

Sci Total Environ. 2018 Oct 15;639:339-349. doi: 10.1016/j.scitotenv.2018.05.142. Epub 2018 May 20.

Abstract

The results of the research in the field of benzene, toluene, ethylbenzene and xylene isomers (BTEX) concentrations in exhaust gases of spark ignition engines under different operating conditions are presented in this paper. The aim of this paper is to gain a clearer insight into the impact of different engine working parameters on the concentrations of BTEX. The experimental investigation has been performed on the SCHENCK 230 W test stand with the controlled IC engine. The engine operating points have been chosen based on the results of a simulation and they are considered as the typical driving conditions according to the New European Driving Cycle. Concentration levels of BTEX compounds in exhaust gas mixtures have been determined by gas chromatography technique by using the combination of Supelcowax 10-Polyethylene glycol column and the PID detector. Based on the experimental research results, the emission model of BTEX compounds has been defined by the simulation of movement of a Fiat Punto Classic passenger car in accordance with the NEDC cycle. Using the results obtained within the simulation, the official statistics on the number of gasoline-powered cars on the territory of the Republic of Serbia and the European Commission data on the annual distance traveled by car, the amounts of BTEX compounds emitted annually per car have been estimated, as well as the emissions of the entire Serbian car fleet.

摘要

本文介绍了在不同运行条件下,火花点火发动机废气中苯、甲苯、乙苯和二甲苯异构体(BTEX)浓度的研究结果。本文的目的是更清楚地了解不同发动机工作参数对 BTEX 浓度的影响。实验研究是在 SCHENCK 230W 测试台上进行的,采用的是可控 IC 发动机。发动机运行点是根据模拟结果选择的,它们被认为是根据新欧洲驾驶循环的典型驾驶条件。通过使用 Supelcowax 10-聚乙二醇柱和 PID 检测器组合的气相色谱技术,确定了废气混合物中 BTEX 化合物的浓度水平。基于实验研究结果,通过模拟菲亚特 Punto Classic 乘用车在 NEDC 循环下的行驶情况,定义了 BTEX 化合物的排放模型。利用模拟中获得的结果,根据塞尔维亚共和国境内汽油动力汽车的官方统计数据和欧洲委员会关于汽车每年行驶里程的数据,估算了每辆汽车每年排放的 BTEX 化合物的数量,以及整个塞尔维亚汽车车队的排放量。

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