Impact of Impurities on the Economic Assessment of Carbon Dioxide Capture, Transport, and Storage

Kwang-Yeob Seo, Yoojin Choi, Kun Sang Lee
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Abstract

The study proposes a techno-economic evaluation of geological storage of CO2 coupled with enhanced oil recovery based on the composition and price of the CO2 stream. A compositional reservoir model was developed to analyze the effect of CO2 and impurities on oil recovery and storage efficiency. The results indicate that most impurities increase the minimum miscibility pressure between the injected gas and the reservoir fluid. The higher the impurity content of the CO2, the lower the sweep and displacement efficiencies, which decreased oil recovery, while the amount of stored CO2 compared to the injected carbon increased. According to an economic analysis that includes capture, transportation, and storage, the net present values (NPVs) from CO2 composition scenarios ranging from 77.4% to 99.9% are almost identical. However, a sensitivity analysis of the economic parameters indicated that NPV is sensitive to the price of oil, discount rates, and tax policy.
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杂质对二氧化碳捕集、运输和封存经济评估的影响
该研究根据二氧化碳流的成分和价格,提出了二氧化碳地质封存与提高石油采收率相结合的技术经济评价。研究建立了一个成分储层模型,以分析二氧化碳和杂质对石油采收率和封存效率的影响。结果表明,大多数杂质会增加注入气体与储层流体之间的最小混溶压力。二氧化碳的杂质含量越高,扫采效率和置换效率就越低,从而降低了石油采收率,而与注入碳相比,储存的二氧化碳量却增加了。根据包括捕集、运输和封存在内的经济分析,二氧化碳成分含量在 77.4% 到 99.9% 之间的净现值(NPV)几乎相同。然而,经济参数的敏感性分析表明,净现值对石油价格、贴现率和税收政策很敏感。
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