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Thermal stability characterization of n-alkanes from determination of produced aromatics

机译:通过确定产生的芳烃来表征正构烷烃的热稳定性

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摘要

The thermal stability of n-nonane and n-undecane, as the model endothermic hydrocarbon fuels, was evaluated by determining the content change of produced aromatics during the thermal cracking process. The ~1H nuclear magnetic resonance spectroscopy (~1H NMR), along with the high-performance liquid chromatography (HPLC) and the gas chromatography/mass spectrometry (GC/MS) analyses, is mainly considered to follow the formation of aromatics in the liquid cracking residues of the n-alkanes. The results of the aromatic contents obtained from these three analytical methods show satisfactory agreements. The ~1H NMR method also gives the olefin content and the branching index of the liquid residues. The changes of the aromatics, olefins and branching index against the temperature directly reflect the thermal stability of the n-alkanes. Based on the results from ~1H NMR, HPLC and GC/MS, a scheme of the formation of aromatics from the thermal cracking of n-alkanes is discussed.
机译:通过确定热裂解过程中产生的芳烃的含量变化,评估了作为模型吸热烃燃料的正壬烷和正十一烷的热稳定性。 〜1H核磁共振波谱(〜1H NMR)以及高效液相色谱(HPLC)和气相色谱/质谱(GC / MS)分析被认为主要是随着液体中芳烃的形成正构烷烃的裂解残基。从这三种分析方法获得的芳族化合物含量的结果显示出令人满意的一致性。 〜1H NMR方法还给出了烯烃含量和液体残留物的支化指数。芳族化合物,烯烃和支化指数随温度的变化直接反映了正构烷烃的热稳定性。基于〜1H NMR,HPLC和GC / MS的结果,讨论了由正构烷烃热裂解形成芳烃的方案。

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