Effect of pre-oxidation of dispersed catalysts on heavy oil cracking

被引:4
作者
Sviridenko, Nikita N. [1 ]
Akimov, Akim S. [1 ]
机构
[1] Russian Acad Sci, Inst Petr Chem, Siberian Branch, 4 Akad Sky Ave, Tomsk 634055, Russia
关键词
Heavy oil; NiCrWC catalysts; pre-oxidation; catalytic cracking; mechanism; IN-SITU PREPARATION; THERMAL TRANSFORMATIONS; COKE FORMATION; CRUDE-OIL; NANOPARTICLES; ASPHALTENES; ZEOLITES; SULFIDE;
D O I
10.1080/10916466.2022.2091599
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Heavy and extra-heavy oils are characterized by a high content of resins, asphaltenes, and sulfur, which hinders oil refining. The purpose of this paper is to study the effect of NiCrWC catalyst surface pre-oxidation on the composition of products of heavy oil catalytic cracking. The optimal conditions for the pre-oxidation of the catalyst are a temperature of 450 degrees C and a duration of 2 hours in air. The products of catalytic cracking are analyzed by content of saturated and aromatic hydrocarbons, resins and asphaltenes, gas chromatography, X-ray diffraction, and scanning electron microscope spectrometry methods. Pre-oxidation of a NiCrWC catalyst at 450 degrees C leads to a decrease in the content of macromolecular components, sulfur, by-products, and an increase in the yield of a fraction with a boiling point up to 360 degrees C. The decrease in sulfur content in the course of heavy oil upgrading is caused both by the interaction of metal oxides on the surface of NiCrWC with S-containing compounds of the feedstock, and by the removal of sulfur in the form of gas. A hypothetical mechanism for the cracking of heavy oil components over pre-oxidized catalysts is proposed.
引用
收藏
页码:1147 / 1161
页数:15
相关论文
共 40 条
[1]   Recent Advances in Heavy Oil Upgrading Using Dispersed Catalysts [J].
Al-Attas, Tareq A. ;
Ali, Syed A. ;
Zahir, Md Hasan ;
Xiong, Qingang ;
Al-Bogami, Saad A. ;
Malaibari, Zuhair O. ;
Razzak, Shaikh A. ;
Hossain, Mohammad M. .
ENERGY & FUELS, 2019, 33 (09) :7917-7949
[2]   Catalytic cracking of gas oils in electromagnetic fields: reactor design and performance [J].
Al-Mayman, SI ;
Al-Zahrani, SM .
FUEL PROCESSING TECHNOLOGY, 2003, 80 (02) :169-182
[3]   Hydrogen donating capacity of water in catalytic and non-catalytic aquathermolysis of extra-heavy oil: Deuterium tracing study [J].
Al-Muntaser, Ameen A. ;
Varfolomeev, Mikhail A. ;
Suwaid, Muneer A. ;
Feoktistov, Dmitriy A. ;
Yuan, Chengdong ;
Klimovitskii, Alexander E. ;
Gareev, Bulat I. ;
Djimasbe, Richard ;
Nurgaliev, Danis K. ;
Kudryashov, Sergey I. ;
Egorova, Ekaterina V. ;
Fomkin, Artem V. ;
Petrashov, Oleg V. ;
Afanasiev, Igor S. ;
Fedorchenko, Gennady D. .
FUEL, 2021, 283
[4]   Catalytic cracking of heavy naphtha-range hydrocarbons over different zeolites structures [J].
Al-Shammari, Abdallah A. ;
Ali, Syed A. ;
Al-Yassir, Nabil ;
Aitani, Abdullah M. ;
Ogunronbi, Kehinde E. ;
Al-Majnouni, Khalid A. ;
Al-Khattaf, Sulaiman S. .
FUEL PROCESSING TECHNOLOGY, 2014, 122 :12-22
[5]   In-Situ Heavy Oil Aquathermolysis in the Presence of Nanodispersed Catalysts Based on Transition Metals [J].
Aliev, Firdavs A. ;
Mukhamatdinov, Irek I. ;
Sitnov, Sergey A. ;
Ziganshina, Mayya R. ;
Onishchenko, Yaroslav, V ;
Sharifullin, Andrey, V ;
Vakhin, Alexey V. .
PROCESSES, 2021, 9 (01) :1-22
[6]   Saturates and aromatics characterization in heavy crude oil upgrading using Ni-Co/γ-Al2O3 catalysts [J].
Avbenake, Onoriode P. ;
Al-Hajri, Rashid S. ;
Jibril, Baba Y. .
PETROLEUM SCIENCE AND TECHNOLOGY, 2020, 38 (14) :800-807
[7]   Reduced coke formation and aromaticity due to chloroperoxidase-catalyzed transformation of asphaltenes from Maya crude oil [J].
Ayala, Marcela ;
Hernandez-Lopez, Edna L. ;
Perezgasga, Lucia ;
Vazquez-Duhalt, Rafael .
FUEL, 2012, 92 (01) :245-249
[8]   In-situ upgrading of reservoir oils by in-situ preparation of NiO nanoparticles in thermal enhanced oil recovery processes [J].
Biyouki, Azadeh Amrollahi ;
Hosseinpour, Negahdar ;
Bahramian, Alireza ;
Vatani, Ali .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2017, 520 :289-300
[9]   A Review of Thermal Cracking, Hydrocracking, and Slurry Phase Hydroconversion Kinetic Parameters in Lumped Models for Upgrading Heavy Oils [J].
Browning, Barbara ;
Alvarez, Pedro ;
Jansen, Tim ;
Lacroix, Maxime ;
Geantet, Christophe ;
Tayakout-Fayolle, Melaz .
ENERGY & FUELS, 2021, 35 (19) :15360-15380
[10]   In situ preparation of well-dispersed CuO nanocatalysts in heavy oil for catalytic aquathermolysis [J].
Chen, Ming ;
Li, Chen ;
Li, Guo-Rui ;
Chen, Yan-Ling ;
Zhou, Cheng-Gang .
PETROLEUM SCIENCE, 2019, 16 (02) :439-446