Matches in SemOpenAlex for { <https://semopenalex.org/work/W2910083513> ?p ?o ?g. }
- W2910083513 endingPage "123" @default.
- W2910083513 startingPage "115" @default.
- W2910083513 abstract "Schwertmannite is a metastable Fe(III)-bearing mineral that can rapidly transform to more stable Fe(III) oxides upon Fe(II) sorption, via a dissolution-reprecipitation pathway. Phosphate (PO43−) is a nutrient found in varying quantities in natural systems, but the influence of PO43− on the Fe(II) induced transformation of schwertmannite is not well characterized. Here, we aim to quantify the aqueous and mineralogical effects of varied PO43− loading, and subsequent Fe(II) loading, to schwertmannite at circumneutral pH. Phosphate was presorbed to schwertmannite at loadings of 0, 80, 400 and 800 μmoles g−1 in anoxic artificial groundwater. Fe(II) was then added at a final concentration of 12.5 mM and aqueous and mineralogical products were observed over 10 days. No transformation occurred before Fe(II) addition in the zero PO43− treatment. In contrast, the three highest PO43− treatments partially transformed to a microcrystalline Fe(III) oxyhydroxide before Fe(II) addition, possibly due to exchange of sulfate with the added PO43−. Within 1 h of subsequent Fe(II) addition in the zero PO43−treatment, all schwertmannite had transformed to goethite via the Fe(II)-induced transformation pathway. Increases in the level of PO43− loading attenuated goethite precipitation via Fe(II)-induced transformation of the precursor schwertmannite and microcrystalline Fe(III) oxyhydroxide, with 65%, 34%, and 21% solid phase Fe as goethite at day 10 in the low (80 μmoles g−1), medium (400 μmoles g−1) and high (800 μmoles g−1) PO43− treatments. Under low PO43− loading, the addition of Fe(II) induced the transformation of the microcrystalline Fe(III) oxyhydroxide and schwertmannite to a mixture of lepidocrocite and goethite. In the medium and high PO43− treatments, schwertmannite and the microcrystalline Fe(III) oxyhydroxide were instead stabilized by surface-complexation of PO43− and did not extensively transform to more crystalline phases. Overall, the results show that PO43− loadings can both drive rapid schwertmannite transformation to a new microcrystalline Fe(III) oxyhydroxide phase, and subsequently inhibit the Fe(II)-induced formation of lepidocrocite and goethite." @default.
- W2910083513 created "2019-01-25" @default.
- W2910083513 creator A5041888075 @default.
- W2910083513 creator A5049000482 @default.
- W2910083513 creator A5083352436 @default.
- W2910083513 date "2019-04-01" @default.
- W2910083513 modified "2023-09-27" @default.
- W2910083513 title "Contrasting effects of phosphate on the rapid transformation of schwertmannite to Fe(III) (oxy)hydroxides at near-neutral pH" @default.
- W2910083513 cites W1529271698 @default.
- W2910083513 cites W1885892400 @default.
- W2910083513 cites W1963765137 @default.
- W2910083513 cites W1967657728 @default.
- W2910083513 cites W1972284414 @default.
- W2910083513 cites W1981807778 @default.
- W2910083513 cites W1983836272 @default.
- W2910083513 cites W1987905671 @default.
- W2910083513 cites W1989359782 @default.
- W2910083513 cites W2004191664 @default.
- W2910083513 cites W2005451034 @default.
- W2910083513 cites W2006348957 @default.
- W2910083513 cites W2016457559 @default.
- W2910083513 cites W2023514958 @default.
- W2910083513 cites W2028492105 @default.
- W2910083513 cites W2029493649 @default.
- W2910083513 cites W2030153086 @default.
- W2910083513 cites W2036865898 @default.
- W2910083513 cites W2039558285 @default.
- W2910083513 cites W2043144818 @default.
- W2910083513 cites W2045947525 @default.
- W2910083513 cites W2053515269 @default.
- W2910083513 cites W2053735131 @default.
- W2910083513 cites W2055052315 @default.
- W2910083513 cites W2062192005 @default.
- W2910083513 cites W2070912856 @default.
- W2910083513 cites W2071704543 @default.
- W2910083513 cites W2081886961 @default.
- W2910083513 cites W2088163612 @default.
- W2910083513 cites W2088403429 @default.
- W2910083513 cites W2089310985 @default.
- W2910083513 cites W2089542527 @default.
- W2910083513 cites W2117570738 @default.
- W2910083513 cites W2144971286 @default.
- W2910083513 cites W2149315250 @default.
- W2910083513 cites W2155496078 @default.
- W2910083513 cites W2169599505 @default.
- W2910083513 cites W2300243499 @default.
- W2910083513 cites W2317918767 @default.
- W2910083513 cites W2320106949 @default.
- W2910083513 cites W2435407028 @default.
- W2910083513 cites W2529765895 @default.
- W2910083513 cites W2740880118 @default.
- W2910083513 cites W2745849196 @default.
- W2910083513 cites W2747479735 @default.
- W2910083513 cites W2749377815 @default.
- W2910083513 cites W2754859390 @default.
- W2910083513 cites W2806749480 @default.
- W2910083513 cites W2883361360 @default.
- W2910083513 cites W2901808061 @default.
- W2910083513 cites W324171781 @default.
- W2910083513 cites W999134602 @default.
- W2910083513 doi "https://doi.org/10.1016/j.geoderma.2018.12.051" @default.
- W2910083513 hasPublicationYear "2019" @default.
- W2910083513 type Work @default.
- W2910083513 sameAs 2910083513 @default.
- W2910083513 citedByCount "21" @default.
- W2910083513 countsByYear W29100835132019 @default.
- W2910083513 countsByYear W29100835132020 @default.
- W2910083513 countsByYear W29100835132021 @default.
- W2910083513 countsByYear W29100835132022 @default.
- W2910083513 countsByYear W29100835132023 @default.
- W2910083513 crossrefType "journal-article" @default.
- W2910083513 hasAuthorship W2910083513A5041888075 @default.
- W2910083513 hasAuthorship W2910083513A5049000482 @default.
- W2910083513 hasAuthorship W2910083513A5083352436 @default.
- W2910083513 hasConcept C13965031 @default.
- W2910083513 hasConcept C147789679 @default.
- W2910083513 hasConcept C150394285 @default.
- W2910083513 hasConcept C178790620 @default.
- W2910083513 hasConcept C179104552 @default.
- W2910083513 hasConcept C184651966 @default.
- W2910083513 hasConcept C185592680 @default.
- W2910083513 hasConcept C201370411 @default.
- W2910083513 hasConcept C2777132085 @default.
- W2910083513 hasConcept C2777624298 @default.
- W2910083513 hasConcept C2777787761 @default.
- W2910083513 hasConcept C2780804967 @default.
- W2910083513 hasConcept C8010536 @default.
- W2910083513 hasConcept C88380143 @default.
- W2910083513 hasConceptScore W2910083513C13965031 @default.
- W2910083513 hasConceptScore W2910083513C147789679 @default.
- W2910083513 hasConceptScore W2910083513C150394285 @default.
- W2910083513 hasConceptScore W2910083513C178790620 @default.
- W2910083513 hasConceptScore W2910083513C179104552 @default.
- W2910083513 hasConceptScore W2910083513C184651966 @default.
- W2910083513 hasConceptScore W2910083513C185592680 @default.
- W2910083513 hasConceptScore W2910083513C201370411 @default.
- W2910083513 hasConceptScore W2910083513C2777132085 @default.
- W2910083513 hasConceptScore W2910083513C2777624298 @default.