Matches in SemOpenAlex for { <https://semopenalex.org/work/W2147880336> ?p ?o ?g. }
- W2147880336 endingPage "327" @default.
- W2147880336 startingPage "311" @default.
- W2147880336 abstract "The method of ‘multiple interacting continua’ (MINC) was applied to include microscopic rate-limiting processes in continuum scale reactive transport models of basaltic glass dissolution. The MINC method involves dividing the system up to ambient fluid and grains, using a specific surface area to describe the interface between the two. The various grains and regions within grains can then be described by dividing them into continua separated by dividing surfaces. Millions of grains can thus be considered within the method without the need to explicity discretizing them. Four continua were used for describing a dissolving basaltic glass grain; the first one describes the ambient fluid around the grain, while the second, third and fourth continuum refer to a diffusive leached layer, the dissolving part of the grain and the inert part of the grain, respectively. The model was validated using the TOUGHREACT simulator and data from column flow through experiments of basaltic glass dissolution at low, neutral and high pH values. Successful reactive transport simulations of the experiments and overall adequate agreement between measured and simulated values provides validation that the MINC approach can be applied for incorporating microscopic effects in continuum scale basaltic glass dissolution models. Equivalent models can be used when simulating dissolution and alteration of other minerals. The study provides an example of how numerical modeling and experimental work can be combined to enhance understanding of mechanisms associated with basaltic glass dissolution. Column outlet concentrations indicated basaltic glass to dissolve stoichiometrically at pH 3. Predictive simulations with the developed MINC model indicated significant precipitation of secondary minerals within the column at neutral and high pH, explaining observed non-stoichiometric outlet concentrations at these pH levels. Clay, zeolite and hydroxide precipitation was predicted to be most abundant within the column." @default.
- W2147880336 created "2016-06-24" @default.
- W2147880336 creator A5012196288 @default.
- W2147880336 creator A5030147863 @default.
- W2147880336 creator A5049075261 @default.
- W2147880336 creator A5051422609 @default.
- W2147880336 creator A5053785468 @default.
- W2147880336 date "2013-11-01" @default.
- W2147880336 modified "2023-10-01" @default.
- W2147880336 title "Dynamics of basaltic glass dissolution – Capturing microscopic effects in continuum scale models" @default.
- W2147880336 cites W1527101551 @default.
- W2147880336 cites W1732925350 @default.
- W2147880336 cites W1966268340 @default.
- W2147880336 cites W1974638823 @default.
- W2147880336 cites W1979801153 @default.
- W2147880336 cites W1990006456 @default.
- W2147880336 cites W1997174216 @default.
- W2147880336 cites W2006072415 @default.
- W2147880336 cites W2009302899 @default.
- W2147880336 cites W2009643105 @default.
- W2147880336 cites W2010487336 @default.
- W2147880336 cites W2012257865 @default.
- W2147880336 cites W2013341334 @default.
- W2147880336 cites W2023144725 @default.
- W2147880336 cites W2023616770 @default.
- W2147880336 cites W2027850635 @default.
- W2147880336 cites W2039218524 @default.
- W2147880336 cites W2043689993 @default.
- W2147880336 cites W2044791144 @default.
- W2147880336 cites W2049380594 @default.
- W2147880336 cites W2057058961 @default.
- W2147880336 cites W2058409890 @default.
- W2147880336 cites W2063284623 @default.
- W2147880336 cites W2063689517 @default.
- W2147880336 cites W2063879550 @default.
- W2147880336 cites W2066964298 @default.
- W2147880336 cites W2077664513 @default.
- W2147880336 cites W2083425174 @default.
- W2147880336 cites W2084283421 @default.
- W2147880336 cites W2088123814 @default.
- W2147880336 cites W2091075794 @default.
- W2147880336 cites W2095132924 @default.
- W2147880336 cites W2113391761 @default.
- W2147880336 cites W2118628706 @default.
- W2147880336 cites W2119818932 @default.
- W2147880336 cites W2121860965 @default.
- W2147880336 cites W2142681232 @default.
- W2147880336 cites W2165985843 @default.
- W2147880336 cites W2167647303 @default.
- W2147880336 cites W2170201259 @default.
- W2147880336 cites W2322344468 @default.
- W2147880336 cites W2328535874 @default.
- W2147880336 doi "https://doi.org/10.1016/j.gca.2013.04.031" @default.
- W2147880336 hasPublicationYear "2013" @default.
- W2147880336 type Work @default.
- W2147880336 sameAs 2147880336 @default.
- W2147880336 citedByCount "28" @default.
- W2147880336 countsByYear W21478803362014 @default.
- W2147880336 countsByYear W21478803362015 @default.
- W2147880336 countsByYear W21478803362016 @default.
- W2147880336 countsByYear W21478803362017 @default.
- W2147880336 countsByYear W21478803362018 @default.
- W2147880336 countsByYear W21478803362019 @default.
- W2147880336 countsByYear W21478803362020 @default.
- W2147880336 countsByYear W21478803362022 @default.
- W2147880336 countsByYear W21478803362023 @default.
- W2147880336 crossrefType "journal-article" @default.
- W2147880336 hasAuthorship W2147880336A5012196288 @default.
- W2147880336 hasAuthorship W2147880336A5030147863 @default.
- W2147880336 hasAuthorship W2147880336A5049075261 @default.
- W2147880336 hasAuthorship W2147880336A5051422609 @default.
- W2147880336 hasAuthorship W2147880336A5053785468 @default.
- W2147880336 hasBestOaLocation W21478803361 @default.
- W2147880336 hasConcept C127313418 @default.
- W2147880336 hasConcept C147789679 @default.
- W2147880336 hasConcept C161509811 @default.
- W2147880336 hasConcept C17409809 @default.
- W2147880336 hasConcept C185592680 @default.
- W2147880336 hasConcept C192562407 @default.
- W2147880336 hasConcept C199289684 @default.
- W2147880336 hasConcept C88380143 @default.
- W2147880336 hasConceptScore W2147880336C127313418 @default.
- W2147880336 hasConceptScore W2147880336C147789679 @default.
- W2147880336 hasConceptScore W2147880336C161509811 @default.
- W2147880336 hasConceptScore W2147880336C17409809 @default.
- W2147880336 hasConceptScore W2147880336C185592680 @default.
- W2147880336 hasConceptScore W2147880336C192562407 @default.
- W2147880336 hasConceptScore W2147880336C199289684 @default.
- W2147880336 hasConceptScore W2147880336C88380143 @default.
- W2147880336 hasLocation W21478803361 @default.
- W2147880336 hasLocation W21478803362 @default.
- W2147880336 hasOpenAccess W2147880336 @default.
- W2147880336 hasPrimaryLocation W21478803361 @default.
- W2147880336 hasRelatedWork W1530399909 @default.
- W2147880336 hasRelatedWork W1984497990 @default.
- W2147880336 hasRelatedWork W2038238806 @default.
- W2147880336 hasRelatedWork W2058379956 @default.
- W2147880336 hasRelatedWork W2091872386 @default.