Quantification of the Formaldehyde Emissions from Different HCCI Engines Running on a Range of Fuels

Mikael Lemel, Anders Hultqvist, Andreas Vressner, Henrik Nordgren, H. Persson, B. Johansson
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引用次数: 14

Abstract

In this paper, the formaldehyde emissions from three different types of homogenous charge compression ignition (HCCI) engines are quantified for a range of fuels by means of Fourier Transform Infra Red (FTIR) spectroscopic analysis. The engines types are differentiated in the way the charge is prepared. The characterized engines are; the conventional port fuel injected one, a type that traps residuals by means of a Negative Valve Overlap (NVO) and finally a Direct Injected (DI) one. Fuels ranging from pure n-heptane to iso-octane via diesel, gasoline, PRF80, methanol and ethanol were characterized. Generally, the amount of formaldehyde found in the exhaust was decreasing with decreasing air/fuel ratio, advanced timing and increasing cycle temperature. It was found that increasing the source of formaldehyde i.e. the ratio of heat released in the cool-flame, brought on higher exhaust contents of formaldehyde. The application of a standard three-way catalyst completely removed formaldehyde from the exhaust stream.
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不同HCCI发动机在不同燃料下甲醛排放的量化
本文采用傅里叶变换红外光谱分析方法,对三种不同类型的均质装药压缩点火(HCCI)发动机的甲醛排放量进行了定量分析。发动机的类型根据装药的方式来区分。表征的发动机有;一种是传统的喷油器,一种通过负阀重叠(NVO)和直接喷油器(DI)来捕获残留物的类型。对柴油、汽油、PRF80、甲醇和乙醇等燃料从纯正庚烷到异辛烷进行了表征。总体上,排气甲醛含量随空燃比的降低、时间的提前和循环温度的升高而降低。研究发现,增加甲醛的来源,即冷火焰释放热量的比例,会增加排气中甲醛的含量。采用标准的三效催化剂完全去除废气中的甲醛。
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