scholarly journals Response to Comment on Oil-Dispersed α-Fe2O3 Nanoparticles as a Catalyst for Improving Heavy Oil Oxidation

Author(s):  
Seyedsaeed Mehrabi-Kalajahi ◽  
Mikhail A. Varfolomeev ◽  
Chengdong Yuan ◽  
Nikolay O. Rodionov ◽  
Almaz L. Zinnatullin ◽  
...  
Author(s):  
Seyedsaeed Mehrabi-Kalajahi ◽  
Mikhail A. Varfolomeev ◽  
Chengdong Yuan ◽  
Nikolay O. Rodionov ◽  
Almaz L. Zinnatullin ◽  
...  

Fuel ◽  
2021 ◽  
Vol 285 ◽  
pp. 119216
Author(s):  
Seyedsaeed Mehrabi-Kalajahi ◽  
Mikhail A. Varfolomeev ◽  
Chengdong Yuan ◽  
Almaz L. Zinnatullin ◽  
Nikolay O. Rodionov ◽  
...  

2017 ◽  
Vol 20 (1) ◽  
Author(s):  
Yi-fei LIU ◽  
Kai LIU

Abstract:The ignition process has a significant influence on the success of in-situ combustion at heavy oil reservoirs. During this process, oxidation reactions between crude oil and injected air mainly occurred. In this paper, a series of oxidation experiments were performed at different reaction temperatures and air-oil ratios to investigate the heavy oil oxidation characteristics at different stages of the ignition process. The results revealed that heat release and production of CO and CO


2019 ◽  
Vol 34 (5) ◽  
pp. 5121-5127
Author(s):  
Mohammed A. Khelkhal ◽  
Alexey A. Eskin ◽  
Danis K. Nurgaliev ◽  
Alexey V. Vakhin

Fuel ◽  
2019 ◽  
Vol 242 ◽  
pp. 545-552 ◽  
Author(s):  
Yafei Chen ◽  
Wanfen Pu ◽  
Xueli Liu ◽  
Yibo Li ◽  
Xiaolong Gong ◽  
...  

Energies ◽  
2021 ◽  
Vol 14 (23) ◽  
pp. 8136
Author(s):  
Kristina A. Ariskina ◽  
Zhenfeng Ding ◽  
Mustafa Abaas ◽  
Chengdong Yuan ◽  
Dmitrii A. Emelianov ◽  
...  

The impact of rock minerals on the performance of in situ combustion (ISC) techniques for enhanced oil recovery (EOR) is very important. This work is aimed at investigating the influence of carbonate rocks (dolomite and calcite) on heavy oil oxidation by Thermogravimetry–Fourier-Transform-Infrared (TG-FT-IR) coupled analysis. Two heavy oils with 19.70° and 14.10° API were investigated. Kinetic analysis was performed using TG data by differential and integral isoconversional methods. From TG-DTG curves, three reaction stages, i.e., low-temperature oxidation (LTO), fuel deposition (FD), and high-temperature oxidation (HTO), were defined for both two heavy oil samples, and their reaction mechanism was explained combining the FT-IR data. After the addition of calcite or dolomite, three reaction stages became two with the disappearance of FD, and a significant shift of reaction stages into lower temperatures was also observed. These significant changes in oxidation behavior are because calcite and dolomite promoted the coke formation and combustion by reducing the activation energy barrier and changing reaction pathways, which results in a smooth transition from LTO to HTO. Dolomite exhibited a slightly better promotion effect on LTO-FD than calcite, while calcite exhibited a better acceleration effect on FD-HTO than dolomite in terms of shifting reaction stages. Generally, calcite exhibited a better catalytic effect than dolomite. In spite of the different catalytic performance of calcite and dolomite, they do both show positive effects on combustion process regardless of the difference in the properties and composition of heavy oils. The findings in this work indicate that calcite and dolomite rocks are favorable for the ISC process, and when it comes to the ISC kinetics, the interaction between crude oil and rock must be considered.


2017 ◽  
Vol 31 (11) ◽  
pp. 12665-12676 ◽  
Author(s):  
Wanfen Pu ◽  
Yafei Chen ◽  
Yibo Li ◽  
Peng Zou ◽  
Dong Li

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