AbstractA field facility has been developed to allow controlled studies of near surface CO2 transport and detection technologies. The key component of the facility is a shallow, slotted horizontal well divided into six zones. The scale and fluxes were designed to address large scale CO2 storage projects and desired retention rates for those projects. A wide variety of detection techniques were deployed by collaborators from 6 national labs, 2 universities, EPRI, and the USGS. Additionally, modeling of CO2 transport and concentrations in the saturated soil and in the vadose zone was conducted. An overview of these results will be presented
Locating and quantifying anomalous, deep-origin CO2 leakage from the soil to the atmosphere is typic...
AbstractReliable detection and assessment of near-surface CO2 leakages from storage formations requi...
Injection of CO2 into deep geological formations entails the possibility of CO2 leakage from the sto...
AbstractA field facility has been developed to allow controlled studies of near surface CO2 transpor...
A controlled field pilot has been developed in Bozeman, Montana, USA, to study near surface CO2 tran...
AbstractThis study focuses on developing a method to characterize and detect leakage of carbon dioxi...
A new field facility was used to study CO2 migrationprocesses and test techniques to detect and quan...
AbstractNew methods for the monitoring of CO2 near the ground surface at geological CO2 storage site...
AbstractThe long-term safety of future CO2 storage projects in aquifers will not only rely on a comp...
The measurement of gas concentrations and fluxes in the soil and atmosphere is a powerful tool for m...
We tested the ability of eddy covariance (EC) to detect, locate, and quantify surface CO{sub 2} flux...
Geologic carbon sequestration is the capture of anthropogenic carbon dioxide (CO{sub 2}) and its sto...
AbstractThe effects of global climate change due to increased greenhouse gas emissions are a growing...
AbstractThis paper describes a new technique for vadose zone monitoring above CCUS sites, its use as...
-The long-term safety of future CO2 storage projects in aquifers will not only rely on a comprehensi...
Locating and quantifying anomalous, deep-origin CO2 leakage from the soil to the atmosphere is typic...
AbstractReliable detection and assessment of near-surface CO2 leakages from storage formations requi...
Injection of CO2 into deep geological formations entails the possibility of CO2 leakage from the sto...
AbstractA field facility has been developed to allow controlled studies of near surface CO2 transpor...
A controlled field pilot has been developed in Bozeman, Montana, USA, to study near surface CO2 tran...
AbstractThis study focuses on developing a method to characterize and detect leakage of carbon dioxi...
A new field facility was used to study CO2 migrationprocesses and test techniques to detect and quan...
AbstractNew methods for the monitoring of CO2 near the ground surface at geological CO2 storage site...
AbstractThe long-term safety of future CO2 storage projects in aquifers will not only rely on a comp...
The measurement of gas concentrations and fluxes in the soil and atmosphere is a powerful tool for m...
We tested the ability of eddy covariance (EC) to detect, locate, and quantify surface CO{sub 2} flux...
Geologic carbon sequestration is the capture of anthropogenic carbon dioxide (CO{sub 2}) and its sto...
AbstractThe effects of global climate change due to increased greenhouse gas emissions are a growing...
AbstractThis paper describes a new technique for vadose zone monitoring above CCUS sites, its use as...
-The long-term safety of future CO2 storage projects in aquifers will not only rely on a comprehensi...
Locating and quantifying anomalous, deep-origin CO2 leakage from the soil to the atmosphere is typic...
AbstractReliable detection and assessment of near-surface CO2 leakages from storage formations requi...
Injection of CO2 into deep geological formations entails the possibility of CO2 leakage from the sto...