首页> 外文期刊>SAE International Journal of Advances and Current Practices in Mobility >Experimental Investigation and Comparison of a Decalin/Butylcyclohexane Based Naphthenic Bio-Blendstock Surrogate Fuel in a Compression Ignition Engine
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Experimental Investigation and Comparison of a Decalin/Butylcyclohexane Based Naphthenic Bio-Blendstock Surrogate Fuel in a Compression Ignition Engine

机译:基于十烷基/丁基环己烷的环烷基生物混合油替代燃料在压燃式发动机中的实验研究与比较

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摘要

Many efforts have been made in recent years to find renewable replacements for fossil fuels that can reduce the carbon footprint without compromising combustion performance. Bio-blendstock oil developed from woody biomass using a reliable thermochemical conversion method known as catalytic fast pyrolysis (CFP), along with hydrotreating upgrading has the potential to deliver on this renewable promise. To further our understanding of naphthenic- rich bio-blendstock oils, an improved formulation surrogate fuel (SF), SF1.01, featuring decalin and butylcyclohexane naphthenic content was devised and blended with research-grade No.2 diesel (DF2) at various volume percentages. The blends were experimentally evaluated in a singlecylinder Ricardo Hydra compression ignition engine to quantify engine and emissions performance of SF1.01/DF2 blends. Injection timing events were varied from knock limit to misfire limit at the same operating conditions for all blends. A decrease in the engine power output was observed as the SF content was increased due to lower combustion efficiency, yielding slightly higher CO and THC emissions. Higher SF content also correlated with a significant decrease in the PM emissions. NO_x emissions were minimal as they fell below detectable limits. A comparison is also presented between DF2 and previously published SF1/DF2 blends that featured only decalin as the naphthenic content. It was found that butylcyclohexane is more desirable from a combustion performance and emissions characteristic than decalin for the composition of the naphthenic content. A bio-blendstock oil of similar composition to the evaluated SF would be a good candidate for displacing fossil-derived heavy petroleum distillate fuels in engine applications.
机译:许多近年来一直在努力寻找可再生替代化石燃料可以减少碳足迹不影响燃烧性能。从木质生物质Bio-blendstock石油开发使用一个可靠的热化学转换方法被称为催化快速热解(CFP)与加氢处理升级有潜力提供可再生的承诺。环烷-富bio-blendstock的理解油,一种改进的配方替代燃料(SF)、SF1.01十氢化萘和butylcyclohexane环烷内容设计和与research-grade 2号柴油混合(DF2)在不同体积百分比。singlecylinder实验评估里卡多Hydra压缩点火发动机量化发动机和排放性能SF1.01 / DF2混合。不同爆震限制限制在失火相同的操作条件下混合。降低发动机的输出功率了为科幻小说内容增加是由于低燃烧效率,收益率略高公司和THC排放。与显著降低点排放。低于检测极限。给出了DF2和先前之间发表SF1 / DF2混合特色十氢化萘环内容。butylcyclohexane是更可取的燃烧性能和排放比萘烷组成特征环的内容。类似的评估科幻作文是一个很好的取代fossil-derived候选人沉重的石油馏分燃料引擎应用程序。

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