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Opportunity and Challenges of Integrated Enhanced Oil Recovery Using CO2 Flooding with Geological CO2 Storage in the Ordos Basin, China

机译:中国鄂尔多斯盆地地质二氧化碳储存的二氧化碳洪水综合增强溢油的机遇及挑战

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In the current global economic and technological environment, integrating geological CO2 storage with enhanced oil recovery is the most practical way to reduce green-house gas emissions and increase the energy supply (CCUS). The overlapping development of large-scale coal conversion industries with existing oil and gas industries in the Ordos Basin, Northern Shaanxi Province has created a unique opportunity to apply a systematic approach to an energy/environmental protection development strategy: the integration of geological CO2 storage and enhanced oil recovery utilizing CO2 flooding (CO2 EOR) and geological storage that has been developed in Wyoming. The coal conversion industry in the Ordos Basin (i.e., coal-to-methanol, coal-to-olefins, etc.) provides affordable, capture-ready CO2 sources for developing large-scale CO2 EOR and CO2 storage projects in the Ordos Basin, China. Currently, over 40 Mt of highly concentrated CO2 (> 95%) are being captured and vented from the methanol plants. Compared with other CCS projects, the ability to use CO2 from the coal-conversion industry for CO2 EOR and geological CO2 storage will make these CCUS projects in the Ordos Basin more cost effective, technologically efficient, and environmentally sound. Supported by US-China Clean Energy Research Center, Shaanxi Provincial Government, and Yanchang Petroleum Group Company, the University of Wyoming, Shaanxi Provincial Institute of Energy Resources and Chemical Engineering, and Research Institute of Yanchang Petroleum (Group) Company have developed a CO2 enhanced oil recovery demonstration project that includes geological CO2 storage in a mature, depleted oil field located in the Northern Shaanxi Province, Ordos Basin. Various scenarios for enhanced oil recovery using CO2 flooding integrated with geological CO2 storage are being simulated and optimized. The results of the reservoir characterization and CO2 flooding simulation show that integrating CO2 EOR with geological CO2 storage is a viable way to reduce CO2 emission in the region.
机译:在目前的全球经济和技术环境中,将地质二氧化碳储存与增强的石油回收相结合是减少绿房气体排放量的最实用的方法,并增加能源供应(CCU)。陕北鄂尔多斯盆地现有石油和天然气产业的大规模煤炭转换产业的重叠发展创造了一个独特的机会,以适应能源/环境保护发展战略的系统方法:地质二氧化碳储存的整合利用二氧化碳洪水(CO2 EOR)和在怀俄明中开发的地质储存的增强的储存。鄂尔多斯盆地的煤炭转换行业(即煤 - 甲醇,煤对烯烃等)提供了可负担得起的,用于在鄂尔多斯盆地开发大型CO2 EOR和CO2存储项目的实惠的捕获准备的二氧化碳来源,中国。目前,在捕获和排出超过40mT的高度浓度的CO 2(> 95%)并从甲醇植物排出。与其他CCS项目相比,从煤炭转换行业使用CO2的CO2和地质二氧化碳储存的能力将使这些CCUS项目在鄂尔多斯盆地中更具成本效益,技术有效和环境。由美国 - 中国清洁能源研究中心,陕西省政府,盐昌石油集团公司,陕西省能源和化学工程研究所和延长石油(集团)公司研究所开发了二氧化碳增强石油恢复示范项目包括位于陕北北陕北的成熟,耗尽油田中的地质二氧化碳储存。使用CO2洪水与地质二氧化碳存储集成的CO2洪水进行了各种方案,正在模拟和优化。储层表征和二氧化碳洪水仿真的结果表明,整合与地质二氧化碳储存的CO2 EOR是减少该地区二氧化碳排放的可行方法。

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