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Co2 Enhanced Oil Recovery Life Cycle Analysis Model (Rev. 2), Nicholas A. Azzolina, Wesley D. Peck, John A. Hamling, Charles D. Gorecki, Scott C. Ayash, Thomas E. Doll, David V. Nakles, L. Stephen Melzer
Co2 Enhanced Oil Recovery Life Cycle Analysis Model (Rev. 2), Nicholas A. Azzolina, Wesley D. Peck, John A. Hamling, Charles D. Gorecki, Scott C. Ayash, Thomas E. Doll, David V. Nakles, L. Stephen Melzer
EERC Publications
In “How green is my oil?” by Azzolina et al., the authors presented an integrated life-cycle model for CO2-EOR where the CO2 is sourced from a coal-fired power plant. The model was developed entirely in Microsoft Excel® to improve transparency and provide a useful tool for other practitioners. This model is an updated version of the model from the article. The cells have been unlocked so they can be modified.
Azzolina, N.A., Peck, W.D., Hamling, J.A., Gorecki, C.D., Ayash, S.C., Doll, T.E., Nakles, D.V., and Melzer, L.S., 2016, How green is my oil? a detailed look …
Co2 Sequestration Test In A Deep, Unminable Lignite Seam, University Of North Dakota. Energy And Environmental Research Center
Co2 Sequestration Test In A Deep, Unminable Lignite Seam, University Of North Dakota. Energy And Environmental Research Center
EERC Brochures and Fact Sheets
Fact sheet describing results of a Plains CO2 Reduction (PCOR) Partnership-implemented test to determine the possibility of storing CO2 in unminable lignite seams. Discusses testing procedure and purpose, and summarizes key results.
What Is The Pcor Partnership?, University Of North Dakota. Energy And Environmental Research Center
What Is The Pcor Partnership?, University Of North Dakota. Energy And Environmental Research Center
EERC Brochures and Fact Sheets
Fact sheet describing the Plains CO2 Reduction (PCOR) Partnership. Outlines the phases of U.S. Department of Energy (DOE) National Energy Technology Laboratory’s Regional Carbon Sequestration Partnership (RCSP) program and highlights PCOR Partnership accomplishments.
A Systematic Investigation Of Gas-Based Improved Oil Recovery Technologies For The Bakken Tight Oil Formation, Lu Jin, Steven B. Hawthorne, James A. Sorensen, Bethany A. Kurz, Lawrence J. Pekot, Steven A. Smith, Nicholas W. Bosshart, Alexander Azenkeng, Charles D. Gorecki, John A. Harju
A Systematic Investigation Of Gas-Based Improved Oil Recovery Technologies For The Bakken Tight Oil Formation, Lu Jin, Steven B. Hawthorne, James A. Sorensen, Bethany A. Kurz, Lawrence J. Pekot, Steven A. Smith, Nicholas W. Bosshart, Alexander Azenkeng, Charles D. Gorecki, John A. Harju
EERC Publications
In this work, we systematically studied the feasibility of various EOR options for the Bakken Formation based on detailed reservoir/rock characterization, fluid analysis, and gas extraction investigation.
The Use Of Advanced Analytical Techniques To Characterize Micro- And Nanoscale Pores And Fractures In The Bakken, James A. Sorensen, Bethany A. Kurz, Steven A. Smith, Joel Walls, Michael Foster, Bob Aylsworth
The Use Of Advanced Analytical Techniques To Characterize Micro- And Nanoscale Pores And Fractures In The Bakken, James A. Sorensen, Bethany A. Kurz, Steven A. Smith, Joel Walls, Michael Foster, Bob Aylsworth
EERC Publications
Results provide previously unavailable insight on nanoscale fracture apertures, intensity and orientation; pore throat mineralogy and connectivity; rock matrix characteristics, mineralogy, and organic content; and calculated absolute permeability in the vertical and horizontal direction. These results are being integrated into laboratory and modeling research activities to determine the fundamental mechanisms controlling fluid transport in the Bakken, which will support EOR scheme design and estimation of CO2 storage potential in tight oil formations.
Fort Nelson Ccs Feasibility Project, University Of North Dakota. Energy And Environmental Research Center
Fort Nelson Ccs Feasibility Project, University Of North Dakota. Energy And Environmental Research Center
EERC Brochures and Fact Sheets
Fact sheet about a 2009–2012 Plains CO2 Reduction (PCOR) Partnership collaboration with Spectra Energy Transmission (Spectra) to determine the feasibility of a commercial-scale geology storage project near the Fort Nelson Gas Plant. Describes the project, its goals, and key results.
Co2 "Huff 'N' Puff" Validation Test, University Of North Dakota. Energy And Environmental Research Center
Co2 "Huff 'N' Puff" Validation Test, University Of North Dakota. Energy And Environmental Research Center
EERC Brochures and Fact Sheets
Fact sheet about a 2009 Plains CO2 Reduction (PCOR) Partnership CO2 huff 'n' puff (HnP) test conducted in a Williston Basin oil well. The project is one of four CO2 storage validation field projects that took place during PCOR Partnership Program Phase II.