催化作用
API重力
加氢脱硫
焦炭
加氢脱氮
化学工程
化学
色散(光学)
贵金属
钯
稀释剂
金属
催化剂载体
材料科学
核化学
有机化学
石油
工程类
物理
光学
作者
Abarasi Hart,Jacob B. Omajali,Angela J. Murray,Lynne E. Macaskie,M. Greaves,Joseph Wood
出处
期刊:Fuel
[Elsevier BV]
日期:2016-04-25
卷期号:180: 367-376
被引量:31
标识
DOI:10.1016/j.fuel.2016.04.064
摘要
Catalyst deactivation due to coke and metals deposition as a result of cracking presents a challenge in heavy oil recovery and upgrading. This is particularly pronounced for in situ upgrading techniques, in which pelleted catalyst is packed around the perimeter of the horizontal producer well of the Toe-to-Heel Air Injection (THAI) process. The fixed bed of catalyst is virtually impossible to regenerate in place, promoting investigation of alternative contacting via the dispersion of nanoparticles. The catalysts studied were finely crushed micro-particulates with average size of 2.6 µm and also a catalyst prepared upon a bacterial support. The latter has advantages in terms of ease of preparation of catalysts from recycled metal sources. Heavy oil of API gravity 13.8º and viscosity 1091mPa.s was used as feed and upgrading was performed in a batch reactor at 425 ºC, with a catalyst-to-oil ratio of 0.02 (g/g), and at an initial pressure of 20 bar. The activity of the Pd/biomass catalyst was evaluated against a number of other catalysts: Pd/Al2O3, Pd/C, Al2O3 and Co-Mo/Al2O3. By using the Pd/biomass catalyst, the produced oil gravity increased by 7.8 ºAPI, and its viscosity was reduced to 7 mPa.s. This effect corresponded to an increase in the amount of low-boiling distillate (IBP-200 ºC) from 34.6 vol.% (original feedstock) to 53-62 vol.%, potentially reducing the amount of diluent needed for pipeline transport of bitumen. The coke yields were (wt%): 13.65 (Al2O3), 9.55 (Pd/Al2O3), 6.85 (Pd/C) and 3.87 (Pd/biomass). The Pd/biomass catalyst showed significantly reduced coke yield compared to thermal cracking and upgrading using Pd/C and Pd/Al2O3 catalysts, which could greatly enhance catalyst survivability in the field.
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