ANALYSIS OF THE CARBON DIOXIDE ENHANCED OIL RECOVERY TECHNOLOGY

Antonio Chicuna Suami Gomes, K. Vorobyev, V. Shcherba, T. Chekushina, Mohamad Ali Alawiyeh
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Abstract

The paper reposts on a comprehensive study of Carbon Dioxide Enhanced Oil Recovery (CO2-EOR), a detailed literature and projects review. In one hand, according to past studies, when injected CO2 and residual oil are miscible (Miscible Displacement), the physical forces holding the two phases apart (Interfacial Tension, IFT) disappears; as CO2 dissolves in the oil, it swells the oil, reducing its viscosity and density. This allows the oil CO2 to displace the oil from the rock pores, pushing it towards a production well. On the other hand, when injected CO2 and residual oil are not miscible (Immiscible Displacement), this process is used as a secondary recovery method. As many experts look to carbon capture, utilization and storage (CCUS) as one of the best alternatives for dealing with carbon emissions, research studies and laboratory investigations have indicated that, beyond its potential to augment oil production, CO2-EOR is getting intensive scrutiny by the industry, government, and environmental organizations for its potential for permanently storing CO2. A good example is a study by Montana Tech University, which found that CO2 flooding of Montana�s Elm Coulee and Cedar Creek oil fields could result in the recovery of 666 million barrels of incremental oil and the storage of 640 billion cubic meters of CO2, which is equivalent to 7 years of supplier�s CO2 emissions (a coal-fired power plant). Some other projects in the U.S., Canada and Norway have been evaluated. An economic and ecological analysis of the CO2-EOR process have been provided.
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二氧化碳提高采收率技术分析
本文介绍了二氧化碳提高采收率(CO2-EOR)的综合研究,详细的文献和项目综述。一方面,根据以往的研究,当注入的CO2与剩余油相混相时(混相驱替),使两相分离的物理作用力(界面张力,IFT)消失;当二氧化碳溶解在石油中时,它会使石油膨胀,降低其粘度和密度。这使得石油二氧化碳取代岩石孔隙中的石油,将其推向生产井。另一方面,当注入的二氧化碳与剩余油不相混(不相混驱)时,该工艺可作为二次采油方法。许多专家将碳捕集、利用和封存(CCUS)技术视为处理碳排放的最佳替代方案之一,研究和实验室调查表明,除了增加石油产量的潜力之外,CO2- eor技术还因其永久封存二氧化碳的潜力而受到行业、政府和环保组织的密切关注。蒙大拿州理工大学的一项研究就是一个很好的例子,该研究发现,蒙大拿州Elm Coulee和Cedar Creek油田的二氧化碳淹没可能导致6.66亿桶石油的增量开采和6400亿立方米二氧化碳的储存,这相当于供应商7年的二氧化碳排放量(燃煤发电厂)。美国、加拿大和挪威的其他一些项目也已进行了评估。对CO2-EOR过程进行了经济和生态分析。
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