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超临界CO_2增强热卤水开采模型研究 被引量:2
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作者 杨国栋 李义连 +2 位作者 马鑫 Atrens Aleks 倪浩 《地质科技情报》 CAS CSCD 北大核心 2014年第6期233-240,共8页
面对全球气候变化和能源紧缺的巨大压力,CO2地质利用技术成为研究的焦点。为了实现CO2减排及资源化利用,提出了利用超临界CO2增强卤水提取和地热能开采的CO2地质利用集成系统的概念。通过建立CO2注入热卤水储层的质量平衡模型,分析了不... 面对全球气候变化和能源紧缺的巨大压力,CO2地质利用技术成为研究的焦点。为了实现CO2减排及资源化利用,提出了利用超临界CO2增强卤水提取和地热能开采的CO2地质利用集成系统的概念。通过建立CO2注入热卤水储层的质量平衡模型,分析了不同流量的卤水生产、CO2注入以及储层边界流对储层变化的影响,初步评估了该系统的CO2封存量、卤水提取量以及储层流体组成变化的时间尺度。研究表明,注入CO2提供了热卤水层的压力维持,促进卤水和地热资源的可持续开采,对于江陵凹陷研究区9×10^8 m^3的储层有效体积,注入9.95×10^6 t CO2可提取17.12×10^6 t卤水,时间尺度超过30a。对于50~1 000kg/s的卤水生产速度,可以产生0.9~18.8 MW电力。同时,该技术增加了CO2的封存容量和效率,有利于CO2大规模安全封存,经济和环境效益显著。 展开更多
关键词 CO2地质利用 卤水 地热能 开采 CCUS
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Reactive Transport Modeling of Long-Term CO2 Sequestration Mechanisms at the Shenhua CCS Demonstration Project,China 被引量:2
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作者 Guodong Yang Yilian Li +4 位作者 Aleks Atrens Danqing Liu Yongsheng Wang Li Jia Yu Lu 《Journal of Earth Science》 SCIE CAS CSCD 2017年第3期457-472,共16页
Carbon dioxide injection into deep saline aquifers results in a variety of strongly coupled physical and chemical processes. In this study, reactive transport simulations using a 2-D radial model were performed to inv... Carbon dioxide injection into deep saline aquifers results in a variety of strongly coupled physical and chemical processes. In this study, reactive transport simulations using a 2-D radial model were performed to investigate the fate of the injected CO2, the effect of CO2-water-rock interactions on mineral alteration, and the long-term CO2 sequestration mechanisms of the Liujiagou Formation sandstone at the Shenhua CCS(carbon capture and storage) pilot site of China. Carbon dioxide was injected at a constant rate of 0.1 Mt/year for 30 years, and the fluid flow and geochemical transport simulation was run for a period of 10 000 years by the TOUGHREACT code according to the underground conditions of the Liujiagou Formation. The results show that different trapping phases of CO2 vary with time. Sensitivity analyses indicate that plagioclase composition and chlorite presence are the most significant determinants of stable carbonate minerals and CO2 mineral trapping capacity. For arkosic arenite in the Liujiagou Formation, CO2 can be immobilized by precipitation of ankerite, magnesite, siderite, dawsonite, and calcite for different mineral compositions, with Ca(2+), Mg(2+), Fe(2+) and Na+ provided by dissolution of calcite, albite(or oligoclase) and chlorite. This study can provide useful insights into the geochemistry of CO2 storage in other arkosic arenite(feldspar rich sandstone) formations at other pilots or target sites. 展开更多
关键词 carbon capture and storage(CCS) CO2 sequestration geochemical interaction mineral trapping CCS demonstration project reactive transport modeling
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