Incorporation of fluoride in calcite: Insights from solid-state NMR, NanoSIMS, APT, HRSTEM and DFT calculations

Citations

WEB OF SCIENCE

0
Citations

SCOPUS

0

초록

Despite the abundant occurrence and large variation in fluorine (F) in calcium carbonate minerals in geological settings, it remains poorly understood to what degree F can be incorporated into calcium carbonate minerals. Particularly, molecular-scale evidence for F incorporation modes in the calcite structure is lacking. In this study, we conducted coprecipitation experiments for F with calcium carbonate to reveal the nature of F partitioning in calcite minerals. The 19F solid-state NMR spectra yield four peaks at -82, -97, -107 and -108 ppm, suggesting that F can be taken up by calcite via at least four mechanisms. The -108 ppm peak occurs at F- concentrations above 2 mM and is consistent with fluorite (CaF2), suggesting that fluorite precipitation predominates at high [F]. Combined with 19F chemical shifts, 19F{13C} rotational echo double resonance (REDOR) techniques, and DFT-based quantum computations, the 19F NMR signals at -82, -97 and -107 ppm are assigned to surface adsorbed species, surface incorporated "CaF2" defects and incorporated "CaF2" defects within the bulk of calcite, respectively. Visualization via three-dimensional atomic probe topography (3D APT), high-resolution scanning transmission microscopy (HRSTEM) and nanoscale secondary ion mass spectrometry (NanoSIMS) analysis further supported that F can be incorporated into the bulk structure of calcite. These findings provide atomic and molecular insight into F incorporation in carbonate minerals and are helpful for the application of carbonate materials as potential geochemical proxies.

키워드

CalciteFluorideIncorporationSolid-state NMRNanoSIMSAPTHRSTEMRAY-ABSORPTION SPECTROSCOPY1ST-PRINCIPLES CALCULATIONSURFACE-STRUCTUREVATERITECOPRECIPITATIONPARAMETERSMECHANISMARAGONITE
제목
Incorporation of fluoride in calcite: Insights from solid-state NMR, NanoSIMS, APT, HRSTEM and DFT calculations
저자
Li, WeiRen, ChaoKwon, Kideok D.Feng, XiaoleiSha, GangLi, JinhuiDong, SijiaLu, Xiancai
DOI
10.1016/j.gca.2025.05.045
발행일
2025-07-15
유형
Article
저널명
Geochimica et Cosmochimica Acta
401
페이지
31 ~ 46