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Adsorption equilibrium was achieved in 500-1000 h although dissolved uranium concentrations increased over thousands of hours owing to changes in aqueous chemical composition driven by sediment-water reactions. A nonelectrostatic surface complexation reaction, >SOH + UO22+ + 2CO32- = >SOUO2(CO3HCO3)2-, provided the best fit to experimental data for each sediment sample resulting in a range of conditional equilibrium constants (logKc) from 21.49 to 21.76. Potential differences in uranium adsorption properties could be assessed in plots based on the generalized mass-action expressions yielding linear trends displaced vertically by differences in logKc values. Using this approach, logKc values for seven sediment samples were not significantly different. However, a significant difference in adsorption properties between one sediment sample and the fines (<0.063 mm) of another could be demonstrated despite the fines requiring a different reaction stoichiometry. Estimates of logKc uncertainty were improved by capturing all data points within experimental errors. The mass-action expression plots demonstrate that applying models outside the range of conditions used in model calibration greatly increases potential errors.", "description": "8 p.", "publisher": { "@type": "Organization", "name": "ACS Publications" }, "author": [ { "@type": "Person", "name": "Kent, Douglas B. dbkent@usgs.gov", "givenName": "Douglas B.", "familyName": "Kent", "email": "dbkent@usgs.gov", "identifier": { "@type": "PropertyValue", "propertyID": "ORCID", "value": "0000-0003-3758-8322", "url": "https://orcid.org/0000-0003-3758-8322" }, "affiliation": [ { "@type": "Organization", "name": "WMA - Earth System Processes Division", "url": "https://www.usgs.gov/mission-areas/water-resources" } ] }, { "@type": "Person", "name": "Stoliker, Deborah L. dlstoliker@usgs.gov", "givenName": "Deborah L.", "familyName": "Stoliker", "email": "dlstoliker@usgs.gov", "affiliation": [ { "@type": "Organization", "name": "National Research Program - Western Branch", "url": 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