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首页> 外文期刊>International Journal of Greenhouse Gas Control >An overview of the monitoring program design for the FutureGen 2.0 CO2 storage site
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An overview of the monitoring program design for the FutureGen 2.0 CO2 storage site

机译:FutureGen 2.0 CO2存储站点的监视程序设计概述

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As part of the FutureGen 2.0 Project, a design was developed for a first-of-its-kind, commercial-scale, near-zero emissions coal-fueled power plant that includes carbon capture and storage (CCS) in a deep saline reservoir. To assess storage site performance and meet the regulatory requirements of the Class VI Underground Injection Control Program for CO2 Geologic Sequestration, the FutureGen 2.0 Project evaluated, selected, and designed a suite of monitoring technologies for use in (1) evaluating CO2 mass balance, (2) detecting significant loss of CO2 containment, (3) tracking the spatial extent of the CO2 plume and advancement of the pressure front within the storage reservoir, and (4) identifying the occurrence and location of injection-related induced seismicity. The monitoring program design includes direct monitoring of the injection process (above ground and in the injection wells), injection-zone monitoring, early-leak-detection monitoring directly above the primary confining zone, and compliance monitoring within the lowermost underground source of drinking water (USDW); it also includes measurements of formation pressure and other geochemical/isotopic signatures that provide an indication of changes in CO2 concentration and/or brine composition, both within the injection zone and immediately above the primary confining zone. In addition to these direct measurements, several indirect geophysical monitoring technologies were included in the monitoring program design such as passive seismic and integrated surface deformation monitoring. Although the FutureGen 2.0 Project was suspended by the U.S. Department of Energy prior to implementation of the monitoring program design, this overview is provided with the hope that other current or future CCS projects will derive benefit from consideration of the approach and monitoring network configuration adopted by the project. (C) 2016 Elsevier Ltd. All rights reserved.
机译:作为FutureGen 2.0项目的一部分,为首个商业规模,接近零排放的燃煤电厂开发了一种设计,其中包括在深盐水库中的碳捕集与封存(CCS)。为了评估存储场所的性能并满足《 VI级地下二氧化碳注入地质封存控制计划》的法规要求,FutureGen 2.0项目评估,选择并设计了一套监测技术,用于(1)评估CO2质量平衡,( 2)检测到CO2密闭度的重大损失,(3)跟踪CO2羽流的空间范围和储层内压力前沿的升高,以及(4)识别与注入相关的诱发地震活动的发生和位置。监控程序设计包括直接监控注入过程(地面以上和注入井中),注入区域监控,直接在主要限制区上方进行早期泄漏检测监控,以及在最低地下饮用水源中进行合规性监控(USDW);它也包括对地层压力和其他地球化学/同位素特征的测量,这些特征可以指示注入区内和紧接主要封闭区上方的CO2浓度和/或盐水成分的变化。除了这些直接测量之外,监测程序设计中还包括几种间接地球物理监测技术,例如被动地震和综合地表变形监测。尽管FutureGen 2.0项目在实施监控程序设计之前已被美国能源部暂停,但仍提供了此概述,希望其他当前或将来的CCS项目将从对方法和监控网络配置的考虑中受益。该项目。 (C)2016 Elsevier Ltd.保留所有权利。

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