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U-tube based near-surface environmental monitoring in the Shenhua carbon dioxide capture and storage (CCS) project

机译:神化近表面环境监测中的近表面环境监测二氧化碳捕获和储存(CCS)项目

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摘要

The CO~(2)injected into deep formations during implementation of carbon dioxide (CO~(2)) capture and storage (CCS) technology may leak and migrate into shallow aquifers or ground surfaces through a variety of pathways over a long period. The leaked CO~(2)can threaten shallow environments as well as human health. Therefore, almost all monitoring programs for CCS projects around the world contain near-surface monitoring. This paper presents a U-tube based near-surface monitoring technology focusing on its first application in the Shenhua CCS demonstration project, located in the Ordos Basin, Inner Mongolia, China. First, background information on the site monitoring program of the Shenhua CCS demonstration project was provided. Then, the principle of fluid sampling and the monitoring methods were summarized for the U-tube sampler system, and the monitoring data were analyzed in detail. The U-tube based monitoring results showed that the U-tube sampler system is accurate, flexible, and representative of the subsurface fluid sampling process. The monitoring indicators for the subsurface water and soil gas at the Shenhua CCS site indicate good stratification characteristics. The concentration level of each monitoring indicator decreases with increasing depth. Finally, the significance of this near-surface environmental monitoring technology for CO~(2)leakage assessments was preliminarily confirmed at the Shenhua CCS site. The application potential of the U-tube based monitoring technology was also demonstrated during the subsurface environmental monitoring of other CCS projects.
机译:在二氧化碳实施期间注入深层的CO〜(2)(CO〜(2))捕获和储存(CCS)技术可能会在长期内通过各种途径泄漏并迁移到浅含水层或地面。泄漏的CO〜(2)可以威胁浅环境以及人类健康。因此,世界各地的CCS项目几乎所有监测程序都包含近地监测。本文介绍了一种基于U-Tube的近表面监测技术,重点是其在中国内蒙古鄂尔多斯盆地的Shenhua CCS示范项目中的第一个应用。首先,提供了关于Shenhua CCS示范项目的网站监测计划的背景信息。然后,对U形管采样器系统总结了流体采样和监测方法的原理,并详细分析了监测数据。基于U形的监测结果表明,U形管采样器系统是准确,灵活的,并且代表地下流体采样过程。神华CCS网站上地下水和土壤气体监测指标表明了良好的分层特性。每种监测指示器的浓度水平随着深度的增加而降低。最后,在申花CCS网站上初步证实了这种近地环境监测技术的近地环境监测技术的重要性。在其他CCS项目的地下环境监测期间也证明了基于U形监测技术的应用潜力。

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