Matches in SemOpenAlex for { <https://semopenalex.org/work/W2027903984> ?p ?o ?g. }
- W2027903984 endingPage "2097" @default.
- W2027903984 startingPage "2088" @default.
- W2027903984 abstract "Reaction mechanisms for the early stages of hydration of tricalcium silicate (Ca3SiO5) have not been agreed upon, although theories have appeared in the literature. In this paper, a mechanistic description is proposed that is consistent with a wide range of reported experimental observations, and which is supported quantitatively by simulations using HydratiCA, a new three-dimensional microstructure model of chemical kinetics. Rate processes are quantitatively modeled using probabilistic cellular automaton algorithms that are based on the principles of transition state theory. The model can test alternate assumptions about the reaction paths and rate-controlling steps, making it a kind of experimental tool for investigating kinetics and interpreting experimental observations. It is used here to show that hydration of Ca3SiO5 is most likely controlled by nucleation and growth of a compositionally variable calcium silicate hydrate solid, mediated at very early times by a transient, thermodynamically metastable solid that rapidly covers and sharply reduces the dissolution rate of Ca3SiO5. This proposed mechanism involves important elements of two leading theories of Ca3SiO5 hydration, neither of which alone has been able to capture the full range of experimental data when tested by the model." @default.
- W2027903984 created "2016-06-24" @default.
- W2027903984 creator A5049860955 @default.
- W2027903984 date "2008-07-01" @default.
- W2027903984 modified "2023-10-18" @default.
- W2027903984 title "A Determination of Hydration Mechanisms for Tricalcium Silicate Using a Kinetic Cellular Automaton Model" @default.
- W2027903984 cites W116683058 @default.
- W2027903984 cites W1568400804 @default.
- W2027903984 cites W1964313744 @default.
- W2027903984 cites W1964991902 @default.
- W2027903984 cites W1965081988 @default.
- W2027903984 cites W1966158400 @default.
- W2027903984 cites W1966211367 @default.
- W2027903984 cites W1966639474 @default.
- W2027903984 cites W1972840438 @default.
- W2027903984 cites W1973445445 @default.
- W2027903984 cites W1976267023 @default.
- W2027903984 cites W1978502137 @default.
- W2027903984 cites W1985325232 @default.
- W2027903984 cites W1985377075 @default.
- W2027903984 cites W1986033002 @default.
- W2027903984 cites W1990297472 @default.
- W2027903984 cites W1991223592 @default.
- W2027903984 cites W1991449021 @default.
- W2027903984 cites W1992276256 @default.
- W2027903984 cites W1995897141 @default.
- W2027903984 cites W2000496853 @default.
- W2027903984 cites W2002658200 @default.
- W2027903984 cites W2002874285 @default.
- W2027903984 cites W2007994243 @default.
- W2027903984 cites W2008835247 @default.
- W2027903984 cites W2010175201 @default.
- W2027903984 cites W2016903150 @default.
- W2027903984 cites W2020168590 @default.
- W2027903984 cites W2032076436 @default.
- W2027903984 cites W2032647107 @default.
- W2027903984 cites W2035269690 @default.
- W2027903984 cites W2044605641 @default.
- W2027903984 cites W2048018866 @default.
- W2027903984 cites W2054322902 @default.
- W2027903984 cites W2054328201 @default.
- W2027903984 cites W2058917721 @default.
- W2027903984 cites W2068443591 @default.
- W2027903984 cites W2085188314 @default.
- W2027903984 cites W2087429753 @default.
- W2027903984 cites W2088706036 @default.
- W2027903984 cites W2090732497 @default.
- W2027903984 cites W2091558185 @default.
- W2027903984 cites W2096003472 @default.
- W2027903984 cites W2114484384 @default.
- W2027903984 cites W2116130826 @default.
- W2027903984 cites W2129911203 @default.
- W2027903984 cites W2137970859 @default.
- W2027903984 cites W2147793947 @default.
- W2027903984 cites W2148521521 @default.
- W2027903984 cites W2161913356 @default.
- W2027903984 cites W2168350157 @default.
- W2027903984 cites W2168499344 @default.
- W2027903984 cites W40727858 @default.
- W2027903984 cites W4239377123 @default.
- W2027903984 cites W4250306752 @default.
- W2027903984 doi "https://doi.org/10.1111/j.1551-2916.2008.02419.x" @default.
- W2027903984 hasPublicationYear "2008" @default.
- W2027903984 type Work @default.
- W2027903984 sameAs 2027903984 @default.
- W2027903984 citedByCount "125" @default.
- W2027903984 countsByYear W20279039842012 @default.
- W2027903984 countsByYear W20279039842013 @default.
- W2027903984 countsByYear W20279039842014 @default.
- W2027903984 countsByYear W20279039842015 @default.
- W2027903984 countsByYear W20279039842016 @default.
- W2027903984 countsByYear W20279039842017 @default.
- W2027903984 countsByYear W20279039842018 @default.
- W2027903984 countsByYear W20279039842019 @default.
- W2027903984 countsByYear W20279039842020 @default.
- W2027903984 countsByYear W20279039842021 @default.
- W2027903984 countsByYear W20279039842022 @default.
- W2027903984 countsByYear W20279039842023 @default.
- W2027903984 crossrefType "journal-article" @default.
- W2027903984 hasAuthorship W2027903984A5049860955 @default.
- W2027903984 hasConcept C11413529 @default.
- W2027903984 hasConcept C121332964 @default.
- W2027903984 hasConcept C121864883 @default.
- W2027903984 hasConcept C148898269 @default.
- W2027903984 hasConcept C159467904 @default.
- W2027903984 hasConcept C159985019 @default.
- W2027903984 hasConcept C178790620 @default.
- W2027903984 hasConcept C185592680 @default.
- W2027903984 hasConcept C191897082 @default.
- W2027903984 hasConcept C192562407 @default.
- W2027903984 hasConcept C199289684 @default.
- W2027903984 hasConcept C2777335606 @default.
- W2027903984 hasConcept C2779850335 @default.
- W2027903984 hasConcept C2780300285 @default.
- W2027903984 hasConcept C35527583 @default.
- W2027903984 hasConcept C41008148 @default.
- W2027903984 hasConcept C523993062 @default.
- W2027903984 hasConcept C61048295 @default.