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Catalytic pyrolysis of Arab Heavy residue and effects on the chemistry of asphaltene

机译:阿拉伯重残渣的催化热解及其对沥青质化学的影响

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In an attempt to understand the changes in asphaltene structure during pyrolysis, hydrothermal reactions were performed on Arab Heavy atmospheric residue using FCC catalyst, ZSM-5 zeolite, hydrocracking catalyst (HC-1) and hydroprocessing (NiMo) catalyst in a bench-scale fixed bed reactor. The effect of four different catalysts on pyrolysis reactions showed that the cracking of residue is affected by catalyst type. All four catalysts used in this study are good for achieving hydrocracking selectivity and were found to be effective in conversion of large asphaltene molecules into smaller moieties. Detailed analyses of asphaltenes were carried out using IR, NMR and HP-GPC techniques. These analyses indicated that the mean molecular weight distribution of residue and asphaltenes decreased after pyrolysis reactions indicating the breaking up of larger molecules. The NMR showed the increase of aromatics carbon and aromatic proton contents in asphaltene obtained from all reactions except when using ZSM-5 catalyst. IR analysis showed that there were significant changes in the chemistry of asphaltenes after the pyrolysis of residue. The pyrolysis reactions were performed and the following reaction conditions were maintained; reaction time: 1 h, temperature 400℃, feed amount (Arab Heavy residue): lOg, catalyst amount: 5% of feed (0.5 g) and hydrogen gas pressure: 900-1300 psi. The compositional data generated by this work will enhance the understanding of asphaltene structure that will be of great value in improved refining practices, geochemical studies and in assessing performance properties of asphalt.
机译:为了了解热解过程中沥青质结构的变化,使用FCC催化剂,ZSM-5沸石,加氢裂化催化剂(HC-1)和加氢处理(NiMo)催化剂以固定规模在阿拉伯重质大气残渣上进行了水热反应。床反应器。四种不同催化剂对热解反应的影响表明,残留物的裂解受催化剂类型的影响。在这项研究中使用的所有四种催化剂都很好地实现了加氢裂化选择性,并被发现可以有效地将大的沥青质分子转化为较小的部分。使用IR,NMR和HP-GPC技术进行了沥青质的详细分析。这些分析表明,热解反应后,残留物和沥青质的平均分子量分布降低,表明较大分子的分解。 NMR显示,除了使用ZSM-5催化剂外,所有反应获得的沥青质中芳烃碳和芳烃质子含量的增加。红外分析表明,残留物热解后,沥青质的化学变化显着。进行热解反应并维持以下反应条件;反应时间:1小时,温度为400℃,进料量(阿拉伯重残留物):10g,催化剂量:进料的5%(0.5g),氢气压力:900-1300psi。这项工作产生的成分数据将增进对沥青质结构的理解,这对改进精炼方法,地球化学研究和评估沥青的性能将具有重要价值。

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