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Coking behavior on a Ni-Mo/Al2O3 catalyst for the hydrocracking of vacuum residue

机译:Ni-Mo / Al2O3催化剂对真空渣油加氢裂化的焦化行为

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In this study, we performed the hydrocracking of vacuum residue (VR) in an autoclave reactor using a Ni-Mo/Al2O3 catalyst at 450 and 500 °C under 150 bar of pressure and characterized coke structure generated over the catalyst during the reaction in order to understand the coking behavior in the hydrocracking of vacuum residue. The insoluble coke generated during VR hydrocracking was characterized by N2 sorption, TGA, XRD, FE-SEM (EDX), EPMA, FT-IR, Raman, and ~(13)C CP/MAS-NMR techniques. In the absence of catalyst, dominant thermal hydrocracking at 500 °C produced pregraphite coke containing sulfur compounds since sulfur components in the feed could not be removed by thermal hydrocracking. With catalyst, the coke structures generated during a reaction depended on the reaction temperature. The NMR, Raman, XRD, TPO, and FT-IR spectra showed that amorphous coke containing highly branched oligomers and polycyclic aromatics were generated during hydrocracking at 450 °C, whereas hydrocracking at 500 °C mainly produced pregraphite coke. The presence of the catalyst in hydrocracking of VR played an important role in increasing decomposition of VR and decreasing coke deposition.
机译:在这项研究中,我们使用Ni-Mo / Al2O3催化剂在450和500°C和150 bar的压力下,在高压釜反应器中进行了真空残留物(VR)的加氢裂化,并表征了反应期间在催化剂上生成的焦炭结构了解真空渣油加氢裂化中的焦化行为。 VR加氢裂化过程中产生的不溶焦炭通过N2吸附,TGA,XRD,FE-SEM(EDX),EPMA,FT-IR,拉曼和〜(13)C CP / MAS-NMR技术进行表征。在没有催化剂的情况下,由于进料中的硫成分无法通过热加氢裂化去除,因此在500°C的主要热加氢裂化过程会产生含有硫化合物的石墨石焦。对于催化剂,反应期间生成的焦炭结构取决于反应温度。 NMR,拉曼光谱,XRD,TPO和FT-IR光谱表明,在450°C的加氢裂化过程中生成了含有高度支化的低聚物和多环芳烃的无定形焦炭,而在500°C的加氢裂化主要生成了石墨。 VR的加氢裂化中催化剂的存在在增加VR的分解和减少焦炭沉积中起重要作用。

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