2022
DOI: 10.1016/j.jhazmat.2021.127006
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Effects of surface roughness and mineralogy on the sorption of Cm(III) on crystalline rock

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Cited by 7 publications
(13 citation statements)
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“…Cm(III) sorption on the rock's constituting minerals -primarily feldspar, mica and quartz -was analyzed quantitatively and qualitatively. We observed that Cm(III) sorption uptake and speciation depends not only on the mineral phase but also the surface roughness (Demnitz et al, 2021). An increasing surface roughness leads to higher sorption uptake and a stronger coordination of the sorbed Cm(III).…”
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confidence: 85%
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“…Cm(III) sorption on the rock's constituting minerals -primarily feldspar, mica and quartz -was analyzed quantitatively and qualitatively. We observed that Cm(III) sorption uptake and speciation depends not only on the mineral phase but also the surface roughness (Demnitz et al, 2021). An increasing surface roughness leads to higher sorption uptake and a stronger coordination of the sorbed Cm(III).…”
mentioning
confidence: 85%
“…In the case that one mineral phase dominates the sorption process, sorption of Cm(III) on other mineral phases will only occur at strong binding sites, typically where surface roughness is high. Areas of feldspar and quartz with high surface roughness additionally showed the formation of sorption species with particularly high sorption strength that could either be interpreted as Cm(III) incorporation species or ternary complexes on the mineral surface (Demnitz et al, 2021).We conclude that in addition to mineral composition, surface roughness needs to be adequately considered to describe interfacial speciation of contaminants and respective retention patterns for the safety assessments of nuclear waste repositories.Kurzfassung. Viele Länder werden geologische Tiefenlager für die Entsorgung ihrer hochradioaktiven Abfälle nutzen.…”
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confidence: 93%
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