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Investigation of oxides of nitrogen emissions from biodiesel-fueled engines

机译:研究生物柴油发动机排放的氮氧化物

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摘要

Biodiesel is an environmentally friendly alternative diesel fuel consisting of the alkyl monoesters of fatty acids. It is obtained from triglycerides through the transesterfication process. The objective of this research was to determine the reason for the higher levels of NOx emissions that have been observed from biodiesel fueled engines. A concept map was developed to show the interrelationships between the fuel and engine variables that affect NOx production. It was determined that a change in combustion timing caused by changes in fuel properties between diesel fuel and biodiesel might be the source of the NOx increase. Tests were conducted to determine the effect of blending biodiesel with diesel fuel on these properties, and to determine the effect of biodiesel fuel properties such as the lower heating value, density, speed of sound, bulk modulus, cetane number, and volatility on the NOx emissions from a diesel engine fueled with biodiesel.;It was found that biodiesel is more dense and less compressible than No. 1 and No. 2 diesel fuels and that the chain length and saturation increase the density, speed of sound, and isentropic bulk modulus. It was also found that the higher oxides of nitrogen emission could be explained by a start of combustion advance. Half of the start of combustion advance originated from a start of injection advance of which about half is due to the automatic timing advance of the pump as it injects more fuel to compensate for the lower heating value of biodiesel and half is due to the bulk modulus, viscosity, and density of the fuel, which show significant differences from pump to pump. The other half of the start of combustion timing advance was due to the higher cetane number of the biodiesel. The higher cetane number in the soybean biodiesel advances the start of combustion and therefore contributes to the increase of the NOx. However, the cetane number of the yellow grease biodiesel was so high that it suppressed the premixed portion of the combustion and lowered the brake specific oxides of nitrogen emission relative to soybean oil biodiesel.
机译:生物柴油是一种由脂肪酸的烷基单酯组成的环保替代柴油燃料。它是通过酯交换过程从甘油三酸酯获得的。这项研究的目的是确定生物柴油燃料发动机中NOx排放水平较高的原因。开发了概念图以显示影响NOx产生的燃油和发动机变量之间的相互关系。已确定由柴油和生物柴油之间的燃料性质变化引起的燃烧正时变化可能是NOx增加的来源。进行测试以确定生物柴油与柴油混合对这些特性的影响,并确定生物柴油燃料特性的影响,例如较低的发热量,密度,声速,体积模量,十六烷值和挥发性对NOx的影响发现生物柴油比1号和2号柴油更致密,更不可压缩,链长和饱和度增加了密度,声速和等熵体积模量。还发现可以通过燃烧提前开始来解释氮排放的更高的氧化物。燃烧开始的一半开始于喷射开始,其中大约一半归因于泵的自动定时提前,因为它喷射更多的燃料以补偿较低的生物柴油热值,而另一半则归因于体积模量,燃料的粘度和密度,这在各个泵之间显示出显着差异。燃烧时间提前开始的另一半是由于生物柴油的十六烷值较高。大豆生物柴油中较高的十六烷值促进燃烧的开始,因此有助于NOx的增加。但是,黄色油脂生物柴油的十六烷值很高,以至于抑制了燃烧的预混合部分,并且相对于豆油生物柴油降低了氮排放的制动比氧化物。

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  • 作者

    Tat, Mustafa Ertunc;

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  • 年度 2003
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  • 原文格式 PDF
  • 正文语种 en
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