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Safety-Based Injection Strategy for Carbon Dioxide Geological Sequestration in a Deep Saline Aquifer with Complex Sandstone-Shale Sequences: A Case Study from Taiwan

机译:复杂砂岩序列的深盐含水层中二氧化碳地质螯合的基于安全的注射策略 - 台湾案例研究

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The purpose of this study was to decide the best injection strategy for CO2 geo-sequestration in a deep saline aquifer with complex bedded sandstone-shale sequences. The best injection strategy is decided based on the estimates of the safety index (SFI). Numerical simulation method was used in this study. The major conclusions from this study are: (1) Safe trapping mechanisms contribute to a lower risk of CO2 leakage by trapping CO2 as immobile blobs or changing the phase of CO2 from supercritical phase to aqueous, ionic, and mineral phases in the post-injection period. (2) For an aquifer with complex sandstone-shale sequences, the best injection strategy should be decided by the results of risk evaluation and the SFI estimation. (3) The well location affected the injection strategy. The risk of CO2 leakage was lower using a down-dip injection well than an up-dip well. (4) The best strategy for this case study was to use the down-dip well to inject CO2 into the bottom sandstone layer. The SFI for this scenario reached 0.99 at the storage time of 1000 years, which meant that the probability of CO2 leakage occurring was nearly zero.
机译:本研究的目的是在具有复杂的玻璃砂岩序列中,决定在深盐含水层中的CO2地理螯合剂的最佳注射策略。基于安全指标(SFI)的估计,确定最佳的注射策略。本研究使用了数值模拟方法。本研究的主要结论是:(1)安全捕获机制通过将CO 2作为固定斑点捕获或将CO2的相位从超临界相转移到注射后的含水,离子和矿物相中,促进CO 2泄漏的风险较低。时期。 (2)对于具有复杂砂岩页岩序列的含水层,最佳的注射策略应由风险评估结果和SFI估计决定。 (3)井位置影响了注射策略。使用井下浸入井井浸入注射,CO 2泄漏的风险较低。 (4)这种案例研究的最佳策略是使用下滴阱将CO2注入底部砂岩层。这一情况的SFI在1000年的存储时间达到0.99,这意味着CO2泄漏发生的概率几乎为零。

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