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Oxides of nitrogen emissions from biodiesel-fuelled diesel engines

机译:生物柴油发动机排放的氮氧化物

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Biodiesel has received, and continues to receive, considerable attention for its potential use as an augmenting fuel to petroleum diesel. Its advantages include decreased net carbon dioxide, hydrocarbon, carbon monoxide, and particulate matter emissions, and fuel properties similar to petroleum diesel for ease of use in diesel engines. Its disadvantages include poorer cold flow characteristics, lower heating values, and mostly reported higher emissions of oxides of nitrogen (NO_x = NO + NO_2, where NO is nitric oxide and NO_2 is nitrogen dioxide). This latter disadvantage (i.e., higher emissions of oxides of nitrogen) is the focus of this review article. NO_x formation mechanisms are complex and affected by several different features (e.g., size, operating points, combustion chamber design, fuel system design, and air system design) of internal combustion engines. The slight differences in properties between biodiesel and petroleum diesel fuels are enough to create several changes to system and combustion behaviors of diesel engines. Combined, these effects lead to several complex and interacting mechanisms that make it difficult to fundamentally identify how biodiesel affects NO_x emissions. Instead, it is perhaps better to say that several parameters seem to most strongly influence observed differences in NO_x emissions with biodiesel, thus introducing several possibilities for inconsistency in the trends. These parameters are injection timing, adiabatic flame temperature, radiation heat transfer, and ignition delay. This article provides a review of the rich literature describing these parameters, and provides additional insight into the system responses that are manifested by the use of biodiesel.
机译:生物柴油由于其潜在的用途作为石油柴油的增强燃料而受到了并将继续受到相当大的关注。它的优点包括减少二氧化碳,碳氢化合物,一氧化碳和颗粒物的净排放量,并具有类似于石油柴油的燃料特性,易于在柴油发动机中使用。它的缺点包括较差的冷流特性,较低的热值以及大多数报道的较高的氮氧化物排放量(NO_x = NO + NO_2,其中NO为一氧化氮,NO_2为二氧化氮)。后一缺点(即,较高的氮氧化物排放量)是本文的重点。 NO_x的形成机理很复杂,并且受内燃机的几种不同特征(例如,尺寸,工作点,燃烧室设计,燃料系统设计和空气系统设计)的影响。生物柴油和石油柴油燃料之间的微小差异足以使柴油发动机的系统和燃烧性能发生若干变化。综合起来,这些影响导致了几种复杂且相互作用的机制,这些机制使得难以从根本上确定生物柴油如何影响NO_x排放。相反,也许最好说几个参数似乎最强烈地影响到观察到的生物柴油NO_x排放的差异,从而为趋势不一致带来了几种可能性。这些参数是喷射时间,绝热火焰温度,辐射热传递和点火延迟。本文回顾了描述这些参数的丰富文献,并提供了对使用生物柴油所表现出的系统响应的更多了解。

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