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Carbon Dioxide Geological Storage Potential of Deep Saline Aquifers of the Central Bohemian Upper Palaeozoic Basin

机译:中华梨中央植物中盐水含量的二氧化碳地质储存潜力

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CO2 storage potential assessments were performed in the Czech Republic and suitable structures were identified. Distribution of big stationary CO2 emission sources predestines the Central Bohemian Upper Palaeozoic Basin as the most prospective structure for geological storage of CO2. Considering the criteria - porous reservoir rock sealed by impermeable rock presence at depths below 800 m the study focused on sandstones of Nyoany Mb. and Tynec Fm.; and on mudstones of overlying M ec Mb. and Líně Fm. - in areas of atec ( B) and of Mnichovohradi tě sub-basin (MnB). Based on the dataset provided by the Czech Geological Survey: 1)Aquifer body was defined with the volume of 24 km3 and the CO2 storage capacity of 434 Mt CO2, consisting of 150-250 m thick fluvial complex of the Nyoany Mb. and Tynec Fm.; and isolated by 200 m thick mudstones of the Líně Fm in the B. 2)Aquifer body was defined with the volume of 56 km3 and the CO2 storage capacity of 705.6 Mt CO2, consisting of 120-250 m thick fluvial complex of the Nyoany Mb. and Tynec Fm.; and isolated by 150 m thick complex of mudstones of alternating Hoedle Mb. and M ec Mb. in the MnB.^
机译:CO2存储潜在评估在捷克共和国进行,并确定了合适的结构。大型固定式二氧化碳排放源的分布将中原上部古生族盆地的分布预先成为二氧化碳地质储存的最前景结构。考虑到在低于800米以下的不透水岩石存在的岩石存在的标准 - 多孔储层岩石中的岩石中的深度,该研究集中于Nyoany MB的砂岩。和tynec fm;以及覆盖M EC MB的泥岩。和líněfm。 - 在ATEC(B)和MnichovohradiTě亚盆地(MNB)的区域。基于捷克地质调查提供的数据集:1)含水层体积定义为24 km3的体积和434 mt CO2的二氧化碳储存能力,包括150-250米的Nyoany MB的氟络合物。和tynec fm; B中的Líněfm的200米厚的Mudstone孤立,B.2)含水层的体积为56平方公里,CO2储存能力为705.6 MT CO2,由Nyoany MB的120-250米厚的河流复合物组成。和tynec fm;并分离150米厚的交替Heedle MB的泥岩复合物。和M EC MB。在MNB中。^

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