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Extensive chemical characterization of a heavy fuel oil

机译:重油的广泛化学表征

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This paper presents procedures for determining the fractions, chemical compositions and combustion characteristics of Heavy Fuel Oil (HFO). This chemical characterization is requisite for better prediction of thermodynamic behaviour of multicomponent fuel such as HFO which consist of thousands of different components. Detailed chemical and physical compositions, molecular weight range and mean molecular weight of individual fractions of fuel enable to use more advanced approaches such as continuous thermodynamics for simulation and modelling. Sequential elution solvent chromatography was used to separate a HFO into Saturates, Aromatics, Resins and Asphaltenes (SARA) as gas chromatographic analysis was unsatisfactory to reveal the overall composition of a HFO, due to the insufficient volatility in most of the heavy compounds. Subsequent mass spectrometric and elemental analysis showed a wide range of molecular weight distributions for the fractions. The results also indicate that the saturates fraction contains cyclic structures with aliphatic side chains while the aromatics fraction contains tetracyclic aromatic rings with aliphatic side chains. The degree of difference between the Thermo-Gravimetric Analysis (TGA) scans of the fractions in inert and oxidizing atmospheres observed at high temperatures also increases with the degree of functionality of the fractions due to the presumably greater extent of free radical chemistry occurring in an oxidizing environment. The Infrared spectra of the fractions are consistent with what would be expected from a consideration of the solvents used to elute them in column chromatography and supported the classification of the fractions.
机译:本文介绍了确定重油(HFO)的馏分,化学成分和燃烧特性的程序。这种化学表征对于更好地预测由数千种不同组分组成的多组分燃料(如HFO)的热力学行为是必不可少的。详细的化学和物理组成,分子量范围和燃料各个部分的平均分子量使得能够使用更先进的方法,例如连续热力学进行仿真和建模。由于大多数重化合物的挥发性不足,气相色谱分析无法令人满意地显示出HFO的整体组成,因此使用了顺序洗脱溶剂色谱法将HFO分离为饱和物,芳香族化合物,树脂和沥青质(SARA)。随后的质谱和元素分析显示了各部分的分子量分布范围很广。结果还表明,饱和物部分包含具有脂族侧链的环状结构,而芳族化合物部分包含具有脂族侧链的四环芳族环。高温下观察到的惰性和氧化气氛中馏分的热重分析(TGA)扫描之间的差异程度也随馏分的官能度而增加,这归因于氧化过程中发生的自由基化学作用可能更大环境。馏分的红外光谱与考虑在柱色谱中用于洗脱的溶剂的预期相符,并支持馏分的分类。

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