Powered by NETL

CO2 Sequestration

Predictive Modeling of CO₂ Sequestration and Storage in Deep Saline Sandstone Reservoirs: Sensitivity Analysis of Mineral Rates in Reactive Transport (NETL-TRS-5-2017)

Balashov, V. N., Brantley, S. L., Guthrie, G. D., Lopano, C. L., Hakala, J. A., & Rimstidt, J. D. (2017). Predictive Modeling of CO₂ Sequestration and Storage in Deep Saline Sandstone Reservoirs: Sensitivity Analysis of Mineral Rates in Reactive Transport (NETL-TRS-5-2017). Morgantown, WV: U.S. Department of Energy, National Energy Technology Laboratory. https://doi.org/10.2172/1433928 

2022-01-27T20:46:52+00:00March 21st, 2017|

An Evaluation of Subsurface Microbial Activity Conditional to Subsurface Temperature, Porosity, and Permeability at North American Carbon Sequestration Sites (NETL-TRS-8-2016)

Wilson, B., Mordensky, S., Verba, C., Rabjohns, K., & Colwell, F. An Evaluation of Subsurface Microbial Activity Conditional to Subsurface Temperature, Porosity, and Permeability at North American Carbon Sequestration Sites (NETL-TRS-8-2016). Albany, OR: U.S. Department of Energy, National Energy Technology Laboratory. https://doi.org/10.18141/1432987

2021-05-28T16:16:05+00:00August 1st, 2016|

Investigation on porosity and permeability change of Mount Simon sandstone (Knox County, IN, USA) under geological CO₂ sequestration conditions: a numerical simulation approach

Zhang, L., Soong, Y., & Dilmore, R. M. (2016). Investigation on porosity and permeability change of Mount Simon sandstone (Knox County, IN, USA) under geological CO₂ sequestration conditions: a numerical simulation approach. Greenhouse Gases: Science and Technology. 6(4), 574–597. https://doi.org/10.1002/ghg.1584

2021-05-28T16:20:26+00:00January 14th, 2016|
Go to Top