Using mercury injection pressure analyses to estimate sealing capacity of the Tuscaloosa marine shale in Mississippi, USA: Implications for carbon dioxide sequestration

Author:

Lohr Celeste D.,Hackley Paul C.

Funder

United States Geological Survey, Energy Resources Program

Publisher

Elsevier BV

Subject

Management, Monitoring, Policy and Law,Industrial and Manufacturing Engineering,General Energy,Pollution

Reference66 articles.

1. The influence of particle size, microfractures, and pressure decay on measuring the permeability of crushed shale samples;Achang;Int. J. Coal Geol.,2017

2. Determining hydrocarbon distribution using resistivity, Tuscaloosa marine shale, southwestern Mississippi;Allen;Gulf Coast Assoc. Geol, Soc, Trans,2014

3. Sequence stratigraphic and depositional controls on reservoir quality in lowstand incised-valley-fill and highstand shallow-marine systems in the Upper Cretaceous (Cenomanian) Tuscaloosa formation, Louisiana, USA;Ambrose;Gulf Coast Assoc. Geol. Soc. J.,2015

4. Gas source attribution techniques for assessing leakage at geologic CO2 storage sites: evaluating a CO2 and CH4 soil gas anomaly at the Cranfield CO2-EOR site;Anderson;Chem. Geol.,2017

5. Screening and ranking of sedimentary basins for sequestration of CO2 in geological media in response to climate change;Bachu;Environ. Geol.,2003

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