陈越,杨娇娇,李雪,等. 浙东沿海典型沉积盆地CO2地质封存潜力与试点意义分析——以长河盆地为例[J]. 海洋地质前沿,2024,40(8):1-11. DOI: 10.16028/j.1009-2722.2023.208
    引用本文: 陈越,杨娇娇,李雪,等. 浙东沿海典型沉积盆地CO2地质封存潜力与试点意义分析——以长河盆地为例[J]. 海洋地质前沿,2024,40(8):1-11. DOI: 10.16028/j.1009-2722.2023.208
    CHEN Yue, YANG Jiaojiao, LI Xue, et al. Potential and pilot significance of CO2 geological storage in typical sedimentary basin along east Zhejiang coast, China: a case study in Changhe Basin[J]. Marine Geology Frontiers, 2024, 40(8): 1-11. DOI: 10.16028/j.1009-2722.2023.208
    Citation: CHEN Yue, YANG Jiaojiao, LI Xue, et al. Potential and pilot significance of CO2 geological storage in typical sedimentary basin along east Zhejiang coast, China: a case study in Changhe Basin[J]. Marine Geology Frontiers, 2024, 40(8): 1-11. DOI: 10.16028/j.1009-2722.2023.208

    浙东沿海典型沉积盆地CO2地质封存潜力与试点意义分析以长河盆地为例

    Potential and pilot significance of CO2 geological storage in typical sedimentary basin along east Zhejiang coast, China: a case study in Changhe Basin

    • 摘要: 碳捕集利用和封存(CCUS)技术是实现全球碳中和不可或缺的技术,开展CO2地质封存(CCS)工作有助于实现碳中和的目标。中国东部沿海发达城市分布众多发电厂、炼化厂等CO2大排放源,对CO2封存需求较高。为缓解地区CO2排放压力,挖掘东部沿海地区周围具有封存潜力的中小型沉积盆地,在搜集区域地质资料的基础上,选取浙江省杭州湾南岸的长河盆地作为研究对象,计算盆地封存潜力,并分析中小盆地封存试点意义。根据沉积盆地CO2地质储存潜力评价方法,计算盆地咸水层CO2地质封存潜力,评价结果表明,长河盆地具有较好的咸水层CO2地质封存潜力。盆地最具封存潜力的是古近系长河组二段(Ech2)中的第一砂岩层和长河组一段(Ech1)中的砂砾岩层,预期理论封存量为4.84亿t,有效封存量可以达到1 162.61万t。研究结果表明,开展中小沉积盆地CO2地质封存工程试点,可在一定程度上缓解沿海地区和企业碳排放压力,为海域碳封存积累技术和经验。

       

      Abstract: Carbon capture, utilization, and storage (CCUS) technology is indispensable for achieving global carbon neutrality, and the development of CO2 geological storage (CCS) will help China to achieve the goal of carbon neutrality. Developed cities along the eastern coast of China have many power plants, refineries, and other large sources of CO2 emissions, which have a high demand for CO2 storage. To alleviate the pressure of regional CO2 emission and to excavate small- and medium-sized sedimentary basins with storage potentials around the eastern coastal area, we selected the Changhe Basin on the south coast of Hangzhou Bay in Zhejiang Province as a research object. Using regional geologic data, we calculated the basin storage potential, and evaluated the significance of pilot small- and medium-sized basins for storage. According to the evaluation of CO2 geological storage potential of sedimentary basins, we calculated the basin-wide geological storage potential of CO2 in the saline layer of the basin. Results show that the Changhe Basin has a high potential for CO2 geological storage in deep saline aquifer. The most potential layers for CO2 storage are the first sandstone layer in the 2nd Member (Ech2), and the sandstone and conglomerate layers in the 1st Member (Ech1) of the Paleogene Changhe Formation. The theoretical CO2 storage capacity could reach 484 million tons and the effective storage capacity is 11.62 million tons. The study showed that the carrying out pilot CO2 geological storage projects in small- and medium-sized sedimentary basins can alleviate the pressure of carbon emissions from the coastal areas and enterprises to a certain extent. At the same time, it can accumulate technology and experience for marine geological carbon storage.

       

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