Publications des scientifiques de l'IRD

Morin G., Noel V., Menguy N., Brest J., Baptiste B., Tharaud M., Ona-Nguema G., Ikogou M., Viollier E., Juillot Farid. (2017). Nickel accelerates pyrite nucleation at ambient temperature. Geochemical Perspectives Letters, 5, p. 6-11. ISSN 2410-339X.

Titre du document
Nickel accelerates pyrite nucleation at ambient temperature
Année de publication
2017
Type de document
Article référencé dans le Web of Science WOS:000418510500002
Auteurs
Morin G., Noel V., Menguy N., Brest J., Baptiste B., Tharaud M., Ona-Nguema G., Ikogou M., Viollier E., Juillot Farid
Source
Geochemical Perspectives Letters, 2017, 5, p. 6-11 ISSN 2410-339X
Chemical and isotopic compositions of pyrites are used as biogeochemical tracers in Archean to modern sediments. Moreover, pyrite formation from monosulphide precursors has been proposed to be involved in prebiotic chemistry. However, the factors controlling pyrite formation and distribution in the sedimentary record are incompletely understood. Here, we show that Ni2+ ions accelerate similar to 5 times the nucleation of pyrite at ambient temperature. Using Fe and Ni K-edge EXAFS and TEM-EDXS we demonstrate that Ni(II) is directly involved in the nucleation of pyrite synthesised by reacting Fe(III) with Na2S in the presence of aqueous Ni(II) impurity. Initial formation of a Ni-enriched pyrite core is followed by overgrowth of a Ni-depleted pyrite shell, leading to compositional zoning of the Fe1-xNixS2 nanocrystals (x = 0.05 to 0.0004). The molar Ni/Fe ratio in the final aqueous solution was then 2000 times lower than the starting ratio of 0.01. This enhanced and accelerated trapping of Ni by pyrite could be of prime importance in controlling Ni concentration in the ocean during early diagenesis of marine sediments, and could thus have important implications for interpreting abundances of Ni and pyrite in the sedimentary record. In addition, acceleration of pyrite nucleation in the presence of nickel could help understanding the role of Fe-Ni sulphides in catalysing potential prebiotic reactions.
Plan de classement
Sciences fondamentales / Techniques d'analyse et de recherche [020] ; Géologie et formations superficielles [064]
Localisation
Fonds IRD [F B010071884]
Identifiant IRD
fdi:010071884
Contact