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A review on cement degradation under CO 2 -rich environment of sequestration projects
Khizar Abid, Raoof Gholami, Paul Choate and Brabha Hari Nagaratnam Journal of Natural Gas Science and Engineering 27 1149 (2015) https://doi.org/10.1016/j.jngse.2015.09.061
Self‐healing of cement fractures under dynamic flow of CO2‐rich brine
Effect of different mix compositions on apparent carbon dioxide (CO2) permeability of geopolymer: Suitability as well cement for CO2 sequestration wells
CO2 Storage from Blast Furnace in the Triassic Sandstones of Lorraine, (Eastern Paris Basin, France): an experimental study
Clément Belgodere, Jérôme Sterpenich, Jacques Pironon, Emmanuel Jobard, Aurélien Randi and Jean-Pierre Birat Energy Procedia 37 5315 (2013) https://doi.org/10.1016/j.egypro.2013.06.449
Reaction and transport in wellbore interfaces under CO2 storage conditions: Experiments simulating debonded cement–casing interfaces
Timotheus K.T. Wolterbeek, Colin J. Peach and Christopher J. Spiers International Journal of Greenhouse Gas Control 19 519 (2013) https://doi.org/10.1016/j.ijggc.2013.10.017
Reactive Transport Modeling of Interactions between Acid Gas (CO2 + H2S) and Pozzolan-Amended Wellbore Cement under Geologic Carbon Sequestration Conditions
Liwei Zhang, David A. Dzombak, David V. Nakles, Jean-Patrick Leopold Brunet and Li Li Energy & Fuels 27(11) 6921 (2013) https://doi.org/10.1021/ef401749x
Sub- and super-critical carbon dioxide permeability of wellbore materials under geological sequestration conditions: An experimental study
Predicting long-term geochemical alteration of wellbore cement in a generic geological CO2 confinement site: Tackling a difficult reactive transport modeling challenge
Mechanical Properties and Failure Behavior of Grouting Cements for a CO2-Injection Hole
Mi-Hee Park, Chan-Dong Chang, Yeong-Uk Jo, Min-Kyoung Choo and Byoung-Woo Yum The Journal of Engineering Geology 21(2) 147 (2011) https://doi.org/10.9720/kseg.2011.21.2.147
A review of Portland cement carbonation mechanisms in CO2 rich environment
Evolution of the Petrophysical and Mineralogical Properties of Two Reservoir Rocks Under Thermodynamic Conditions Relevant for CO2Geological Storage at 3 km Depth
G. Rimmelé, V. Barlet-Gouédard and F. Renard Oil & Gas Science and Technology – Revue de l’Institut Français du Pétrole 65(4) 565 (2010) https://doi.org/10.2516/ogst/2009071
Accelerated degradation method for cement under CO2-rich environment: The LIFTCO2 procedure (leaching induced by forced transport in CO2 fluids)
Effect of carbonation on the hydro-mechanical properties of Portland cements
A. Fabbri, J. Corvisier, A. Schubnel, F. Brunet, B. Goffé, G. Rimmele and V. Barlet-Gouédard Cement and Concrete Research 39(12) 1156 (2009) https://doi.org/10.1016/j.cemconres.2009.07.028
Heterogeneous porosity distribution in Portland cement exposed to CO2-rich fluids