Matches in SemOpenAlex for { <https://semopenalex.org/work/W2022943387> ?p ?o ?g. }
- W2022943387 endingPage "160" @default.
- W2022943387 startingPage "145" @default.
- W2022943387 abstract "Abstract Hydrothermal flow experiments of single-pass injection of CO2-charged brine were conducted on nine dolomite cores to examine fluid–rock reactions in dolomite reservoirs under geologic carbon sequestration conditions. Post-experimental X-ray computed tomography (XRCT) analysis illustrates a range of dissolution patterns, and significant increases in core bulk permeability were measured as the dolomite dissolved. Outflow fluids were below dolomite saturation, and cation concentrations decreased with time due to reductions in reactive surface area with reaction progress. To determine changes in reactive surface area, we employ a power-law relationship between reactive surface area and porosity (Luquot and Gouze, 2009). The exponent in this relationship is interpreted to be a geometrical parameter that controls the degree of surface area change per change in core porosity. Combined with XRCT reconstructions of dissolution patterns, we demonstrate that this exponent is inversely related to both the flow path diameter and tortuosity of the dissolution channel. Even though XRCT reconstructions illustrate dissolution at selected regions within each core, relatively high Ba and Mn recoveries in fluid samples suggest that dissolution occurred along the core's entire length and width. Analysis of porosity–permeability data indicates an increase in the rate of permeability enhancement per increase in porosity with reaction progress as dissolution channels lengthen along the core. Finally, we incorporate the surface area–porosity model of Luquot and Gouze (2009) with our experimentally fit parameters into TOUGHREACT to simulate experimental observations." @default.
- W2022943387 created "2016-06-24" @default.
- W2022943387 creator A5007530474 @default.
- W2022943387 creator A5012973674 @default.
- W2022943387 creator A5020813490 @default.
- W2022943387 creator A5032776487 @default.
- W2022943387 creator A5036113014 @default.
- W2022943387 creator A5058264455 @default.
- W2022943387 creator A5081801523 @default.
- W2022943387 date "2014-07-01" @default.
- W2022943387 modified "2023-10-06" @default.
- W2022943387 title "Experimental dissolution of dolomite by CO2-charged brine at 100°C and 150bar: Evolution of porosity, permeability, and reactive surface area" @default.
- W2022943387 cites W1525915405 @default.
- W2022943387 cites W1600484415 @default.
- W2022943387 cites W1892559225 @default.
- W2022943387 cites W1961369140 @default.
- W2022943387 cites W1963542494 @default.
- W2022943387 cites W1967540505 @default.
- W2022943387 cites W1968059710 @default.
- W2022943387 cites W1969051824 @default.
- W2022943387 cites W1977504126 @default.
- W2022943387 cites W1978344488 @default.
- W2022943387 cites W1979329811 @default.
- W2022943387 cites W1983780679 @default.
- W2022943387 cites W1987699551 @default.
- W2022943387 cites W1989652062 @default.
- W2022943387 cites W1990250430 @default.
- W2022943387 cites W1995838883 @default.
- W2022943387 cites W1999165439 @default.
- W2022943387 cites W1999222658 @default.
- W2022943387 cites W2000329342 @default.
- W2022943387 cites W2001536668 @default.
- W2022943387 cites W2002051573 @default.
- W2022943387 cites W2003101349 @default.
- W2022943387 cites W2011254969 @default.
- W2022943387 cites W2014365296 @default.
- W2022943387 cites W2015482812 @default.
- W2022943387 cites W2017259665 @default.
- W2022943387 cites W2017428450 @default.
- W2022943387 cites W2018478404 @default.
- W2022943387 cites W2019040376 @default.
- W2022943387 cites W2027425646 @default.
- W2022943387 cites W2028869972 @default.
- W2022943387 cites W2030408325 @default.
- W2022943387 cites W2033871680 @default.
- W2022943387 cites W2037317670 @default.
- W2022943387 cites W2039346615 @default.
- W2022943387 cites W2045276191 @default.
- W2022943387 cites W2048428364 @default.
- W2022943387 cites W2051052126 @default.
- W2022943387 cites W2056627274 @default.
- W2022943387 cites W2058378314 @default.
- W2022943387 cites W2062088063 @default.
- W2022943387 cites W2064572976 @default.
- W2022943387 cites W2064999318 @default.
- W2022943387 cites W2065384567 @default.
- W2022943387 cites W2066527077 @default.
- W2022943387 cites W2069250865 @default.
- W2022943387 cites W2070339630 @default.
- W2022943387 cites W2070419897 @default.
- W2022943387 cites W2071691798 @default.
- W2022943387 cites W2075747969 @default.
- W2022943387 cites W2077752979 @default.
- W2022943387 cites W2079035077 @default.
- W2022943387 cites W2081258920 @default.
- W2022943387 cites W2081514473 @default.
- W2022943387 cites W2083381680 @default.
- W2022943387 cites W2087147430 @default.
- W2022943387 cites W2088008856 @default.
- W2022943387 cites W2095140886 @default.
- W2022943387 cites W2097911916 @default.
- W2022943387 cites W2116334612 @default.
- W2022943387 cites W2117688908 @default.
- W2022943387 cites W2121860965 @default.
- W2022943387 cites W2123916498 @default.
- W2022943387 cites W2130680196 @default.
- W2022943387 cites W2142323005 @default.
- W2022943387 cites W2148603712 @default.
- W2022943387 cites W2154492036 @default.
- W2022943387 cites W2160937660 @default.
- W2022943387 cites W2171434698 @default.
- W2022943387 cites W2321778074 @default.
- W2022943387 cites W2394638777 @default.
- W2022943387 cites W4229521433 @default.
- W2022943387 cites W90950234 @default.
- W2022943387 doi "https://doi.org/10.1016/j.chemgeo.2014.05.001" @default.
- W2022943387 hasPublicationYear "2014" @default.
- W2022943387 type Work @default.
- W2022943387 sameAs 2022943387 @default.
- W2022943387 citedByCount "85" @default.
- W2022943387 countsByYear W20229433872015 @default.
- W2022943387 countsByYear W20229433872016 @default.
- W2022943387 countsByYear W20229433872017 @default.
- W2022943387 countsByYear W20229433872018 @default.
- W2022943387 countsByYear W20229433872019 @default.
- W2022943387 countsByYear W20229433872020 @default.
- W2022943387 countsByYear W20229433872021 @default.
- W2022943387 countsByYear W20229433872022 @default.