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The relationship between gasoline composition and vehicle hydrocarbon emissions: a review of current studies and future research needs.

机译:汽油成分与车辆碳氢化合物排放之间的关系:当前研究和未来研究需求的回顾。

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摘要

The purpose of this paper is to review current studies concerning the relationship of fuel composition to vehicle engine-out and tail-pipe emissions and to outline future research needed in this area. A number of recent combustion experiments and vehicle studies demonstrated that reformulated gasoline can reduce vehicle engine-out, tail-pipe, running-loss, and evaporative emissions. Some of these studies were extended to understand the fundamental relationships between fuel composition and emissions. To further establish these relationships, it was necessary to develop advanced analytical methods for the qualitative and quantitative analysis of hydrocarbons in fuels and vehicle emissions. The development of real-time techniques such as Fourier transform infrared spectroscopy, laser diode spectroscopy, and atmospheric pressure ionization mass spectrometry were useful in studying the transient behavior of exhaust emissions under various engine operating conditions. Laboratory studies using specific fuels and fuel blends were carried out using pulse flame combustors, single- and multicylinder engines, and vehicle fleets. Chemometric statistical methods were used to analyze the large volumes of emissions data generated from these studies. Models were developed that were able to accurately predict tail-pipe emissions from fuel chemical and physical compositional data. Some of the primary fuel precursors for benzene, 1,3-butadiene, formaldehyde, acetaldehyde and C2-C4 alkene emissions are described. These studies demonstrated that there is a strong relationship between gasoline composition and tail-pipe emissions.
机译:本文的目的是回顾有关燃料成分与车辆发动机输出和尾管排放之间关系的当前研究,并概述该领域需要进行的未来研究。最近的许多燃烧实验和车辆研究表明,重新配制的汽油可以减少车辆的发动机输出,尾气管,运行损失和蒸发排放。这些研究中的一些被扩展以理解燃料成分和排放之间的基本关系。为了进一步建立这些关系,有必要开发先进的分析方法,以定性和定量分析燃料和车辆排放物中的碳氢化合物。诸如傅立叶变换红外光谱法,激光二极管光谱法和大气压电离质谱法等实时技术的发展对于研究各种发动机工况下废气排放的瞬态行为很有用。使用脉冲火焰燃烧器,单缸和多缸发动机以及车队对使用特定燃料和燃料混合物的实验室进行了研究。化学计量学统计方法用于分析从这些研究中产生的大量排放数据。开发了能够根据燃料化学和物理组成数据准确预测尾气排放的模型。描述了一些用于苯,1,3-丁二烯,甲醛,乙醛和C2-C4烯烃排放的主要燃料前体。这些研究表明,汽油成分与尾气排放之间存在密切关系。

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