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Geological Carbon Sequestration: A New Approach for Near-Surface Assurance Monitoring

机译:地质碳固存:一种新的近地表保证监测方法

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摘要

There are two distinct objectives in monitoring geological carbon sequestration (GCS): Deep monitoring of the reservoir’s integrity and plume movement and near-surface monitoring (NSM) to ensure public health and the safety of the environment. However, the minimum detection limits of the current instrumentation for NSM is too high for detecting weak signals that are embedded in the background levels of the natural variations, and the data obtained represents point measurements in space and time. A new approach for NSM, based on gamma-ray spectroscopy induced by inelastic neutron scatterings (INS), offers novel and unique characteristics providing the following: (1) High sensitivity with a reducible error of measurement and detection limits, and, (2) temporal- and spatial-integration of carbon in soil that results from underground CO2 seepage. Preliminary field results validated this approach showing carbon suppression of 14% in the first year and 7% in the second year. In addition the temporal behavior of the error propagation is presented and it is shown that for a signal at the level of the minimum detection level the error asymptotically approaches 47%.
机译:监测地质固碳(GCS)有两个不同的目标:深度监测储层的完整性和羽流运动以及近地表监测(NSM),以确保公众健康和环境安全。但是,当前用于NSM的仪器的最小检测极限对于检测嵌入在自然变化的背景水平中的微弱信号来说太高了,获得的数据代表了时空上的点测量。基于非弹性中子散射(INS)诱发的伽马射线光谱法的NSM新方法具有新颖独特的特性,具有以下特点:(1)高灵敏度,可降低测量和检测极限的误差,以及(2)地下CO2渗漏导致土壤中碳的时空整合。初步现场结果验证了该方法的有效性,该方法在第一年的碳抑制率为14%,第二年的碳抑制率为7%。此外,还给出了误差传播的时间行为,结果表明,对于处于最小检测水平的信号,误差渐近地接近47%。

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