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Modeling of industrial reactor for hydrotreating of vacuum gas oils Simultaneous hydrodesulfurization, hydrodenitrogenation and hydrodearomatization reactions

机译:真空瓦斯油加氢处理工业反应器的模型同时加氢脱硫,加氢脱氮和加氢脱芳香化反应

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The modeling of an industrial trickle bed reactor (TBR) for hydrotreating (HDT) of vacuum gas oils (VGO) and other heavy fractions oils was developed based on experiments carried out under typical industrial conditions at pilot plant. Simultaneous reactions for hydrodesulfurization (HDS), hydrodenitrogenation (HDN), hydrodearomatization (HDA) and inhibition effects among different molecules such as decahydro-naphtalene, naphthalene, anthracene (mono-, di-, tri-aromatic), carbazole (non-basic nitrogen), acridine (basic nitrogen), dibenzotiophene (sulfur), and water, mixed with a vacuum gas oil severely hydro treated (matrix feed), were taken into account. Analytical techniques selected for this research were nuclear magnetic resonance (NMR), for aromatic content and other analysis, ultra violet-visible spectrometry (UV-vis), for aromatic families, simulated distillation (SimDis), and standard tests (ASTM) to determinate basic nitrogen, total nitrogen, total sulfur, and other physicochemical properties of vacuum gas oils.
机译:基于中试工厂在典型工业条件下进行的实验,开发了用于真空瓦斯油(VGO)和其他重质馏分油加氢处理(HDT)的工业滴流床反应器(TBR)的模型。加氢脱硫(HDS),加氢脱氮(HDN),加氢脱芳香化(HDA)和不同分子之间的同时反应,例如十氢萘,萘,蒽(单,二,三芳族),咔唑(非碱性氮) ),a啶(碱性氮),二苯并噻吩(硫)和水与经过严格加氢处理的真空瓦斯油(基质进料)混合使用。选择用于这项研究的分析技术是核磁共振(NMR),用于芳族化合物含量和其他分析,紫外-可见光谱法(UV-vis),用于芳族化合物,模拟蒸馏(SimDis)和标准测试(ASTM)确定真空瓦斯油的碱性氮,总氮,总硫和其他物理化学性质。

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