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Impact of Ester Structures on the Soot Characteristics and Soot Oxidative Reactivity of Biodiesel

机译:酯结构对生物柴油烟灰特性和烟灰氧化反应性的影响

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A study and analysis of the relation of biodiesel chemical structures to the resulting soot characteristics and soot oxidative reactivity is presented. Soot samples generated from combustion of various methyl esters, alkanes, biodiesel and diesel fuels in laminar co-flow diffusion flames are analyzed to evaluate the impact of fuel-bound oxygen in fatty acid esters on soot oxidation behavior. Thermogravimetric analysis (TGA) of soot samples collected from diffusion flames show that chemical variations in biodiesel ester compounds have an impact on soot oxidative reactivity and soot characteristics in contrast to findings reported previously in the literature. Soot derived from methyl esters with shorter alkyl chains, such as methyl butyrate and methyl hexanoate, exhibit higher reactivity than those with longer carbon chain lengths, such as methyl oleate, which are more representative of biodiesel fuels. Structural analysis is performed via Raman spectroscopy on methyl esters derived soot samples and compared with n-dodecane derived soot. These data are consistent with literature reports that lower structural order enhances reactivity. Soot reactivity analysis of methyl esters with different types of carbon-carbon bonds (single versus double), but with the same carbon number, suggests that carbon-carbon bond types and locations also affect soot reactivity. In addition, reactivity of soot from a high-cetane, low-aromatic diesel fuel is assessed and is found to exhibit lower reactivity than soot from a conventional diesel fuel.
机译:提出了生物柴油化学结构与所得烟灰特性和烟灰氧化反应性的研究和分析。分析由各种甲酯,烷烃,生物柴油和柴油机的燃烧产生的烟灰样品进行分析,以评估燃料氧化酯中燃料结合氧对烟灰氧化行为的影响。从扩散火焰收集的烟灰样品的热重分析(TGA)显示生物柴油酯化合物中的化学变化对烟灰氧化反应性和烟灰特性相反,与先前文献中的先前报道的结果相反。衍生自具有较短烷基链的甲酯的烟灰,例如甲基丁酸甲酯和己酸甲酯,比具有较长碳链长度的反应性,例如甲基芦荟,其更像生物柴油燃料。通过拉曼光谱对甲酯上衍生的烟灰样品进行结构分析,与N-十二烷衍生的烟灰相比。这些数据与文献报告一致,即较低的结构顺序增强了反应性。具有不同类型的碳 - 碳键的甲基酯的烟灰反应性分析(单一与双),但具有相同的碳数,表明碳 - 碳键类型和位置也影响烟灰反应性。另外,从高十六烷值烟灰反应性,低芳族柴油燃料评价并发现其从传统的柴油燃料相比表现出较低的烟炱的反应性。

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