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高硫渣油加氢反应动力学模型与失活模型的耦合应用
引用本文:张奎,聂红,戴立顺. 高硫渣油加氢反应动力学模型与失活模型的耦合应用[J]. 石油学报(石油加工), 2021, 37(6): 1225-1234. DOI: 10.3969/j.issn.1001-8719.2021.06.003
作者姓名:张奎  聂红  戴立顺
作者单位:中国石化 石油化工科学研究院,北京 100083
基金项目:中国石油化工股份有限公司重点实验室项目(KL20009)、中国石油化工股份有限公司重点科技项目(121028-2)基金资助
摘    要:通过研究不同工艺条件(反应温度、压力和体积空速)对高硫渣油加氢处理反应的影响,构建了高硫渣油加氢脱硫、加氢脱氮、加氢脱残炭、加氢脱金属反应的动力学模型,并与颗粒活性区迁移模型(失活模型)进行耦合,从而利用耦合模型对渣油加氢装置的升温曲线、非常规操作及产品性质进行了模拟预测。模拟结果表明:经耦合模型模拟所得各反应转化率的预测值与试验值吻合度高;在加氢催化剂的整个评价周期内,随着加氢催化剂金属沉积比例增加,各反应转化率均呈现初期快速下降、中期缓慢下降、末期快速下降的规律;模拟产品性质恒定条件下加氢脱硫、加氢脱氮和加氢脱残炭反应的升温曲线,可以得到装置推荐的升温曲线。

关 键 词:渣油  加氢处理  加氢脱硫  反应动力学  失活  
收稿时间:2021-07-08

Coupling Application of High-Sulfur ResiduesHydrotreating Reaction Kinetics and Deactivation Model
ZHANG Kui,NIE Hong,DAI Lishun. Coupling Application of High-Sulfur ResiduesHydrotreating Reaction Kinetics and Deactivation Model[J]. Acta Petrolei Sinica (Petroleum Processing Section), 2021, 37(6): 1225-1234. DOI: 10.3969/j.issn.1001-8719.2021.06.003
Authors:ZHANG Kui  NIE Hong  DAI Lishun
Affiliation:Research Institute of Petroleum Processing, SINOPEC, Beijing 100083, China
Abstract:Effects of different process conditions (reactiontemperature, pressure and volume space velocity) on high-sulfurresidues hydrotreating (RHT) reactions were studied to build reaction kineticmodels for hydrotreating desulfurization (HDS), hydrotreating denitrogenization(HDN), hydrotreating de-carbon residues(HDCCR), hydrotreating de-metals (HDM). Then,through coupling with active zone migration(deactivation) model, RHT unit can be simulated and predicted. Simulationresults suggest that the coupling model predicted conversion ratios of eachreaction are consistent with experimental data. As metal deposition ratio increases, conversion ratio of each reaction declinesrapidly in the initial stage, then declines slowly in the middle stage, butdeclines rapidly again in the final stage. In addition, under the condition ofconstant product properties, temperature ramp profiles recommended for unit canalso be obtained through temperature ramp profiles simulation of HDS, HDN andHDCCR reactions.
Keywords:residue,hydrotreating,HDS,reaction kinetics  deactivation,
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