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Experimental determination of the equilibrium Fe isotope fractionation between Feaq2+ and FeSm (mackinawite) at 25 and 2°C

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Experimental determination of the equilibrium Fe isotope fractionation between Feaq2+ and FeSm (mackinawite) at 25 and 2°C. / Guilbaud, Romain; Butler, Ian B.; Ellam, Rob M. et al.
In: Geochimica et Cosmochimica Acta, Vol. 75, No. 10, 15.05.2011, p. 2721-2734.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Guilbaud, R, Butler, IB, Ellam, RM, Rickard, D & Oldroyd, A 2011, 'Experimental determination of the equilibrium Fe isotope fractionation between Feaq2+ and FeSm (mackinawite) at 25 and 2°C', Geochimica et Cosmochimica Acta, vol. 75, no. 10, pp. 2721-2734. https://doi.org/10.1016/j.gca.2011.02.023

APA

Guilbaud, R., Butler, I. B., Ellam, R. M., Rickard, D., & Oldroyd, A. (2011). Experimental determination of the equilibrium Fe isotope fractionation between Feaq2+ and FeSm (mackinawite) at 25 and 2°C. Geochimica et Cosmochimica Acta, 75(10), 2721-2734. https://doi.org/10.1016/j.gca.2011.02.023

Vancouver

Guilbaud R, Butler IB, Ellam RM, Rickard D, Oldroyd A. Experimental determination of the equilibrium Fe isotope fractionation between Feaq2+ and FeSm (mackinawite) at 25 and 2°C. Geochimica et Cosmochimica Acta. 2011 May 15;75(10):2721-2734. Epub 2011 Feb 21. doi: 10.1016/j.gca.2011.02.023

Author

Guilbaud, Romain ; Butler, Ian B. ; Ellam, Rob M. et al. / Experimental determination of the equilibrium Fe isotope fractionation between Feaq2+ and FeSm (mackinawite) at 25 and 2°C. In: Geochimica et Cosmochimica Acta. 2011 ; Vol. 75, No. 10. pp. 2721-2734.

Bibtex

@article{f9e5ec142b2649d48e20ee76f0a0cb1d,
title = "Experimental determination of the equilibrium Fe isotope fractionation between Feaq2+ and FeSm (mackinawite) at 25 and 2°C",
abstract = "We report the first experimentally-determined metal isotope equilibrium fractionation factors for a metal sulphide at ambient temperatures and pressures. Mackinawite, referred here as FeSm (where the subscript m indicates mackinawite), can be a reactive component in diagenetic pyrite formation and the extent of equilibration between FeSm and dissolved Fe(II) has direct implications the δ56Fe signatures recorded in diagenetic pyrite. The measured equilibrium Fe isotope fractionation between Fe(II)aq and FeSm is Δ56FeFe(II)-FeS=-0.52±0.16‰ at 2°C and Δ56FeFe(II)-FeS=-0.33±0.12‰ at 25°C and pH 4. At the experimental pH the equilibrium fractionation factor between all dissolved Fe(II) species and FeSm (Δ56FeFe(II)-FeS) equates to the fractionation factor between Feaq2+ and FeSm (Δ56FeFe2+-FeS). The measured fractionations are of the same order as other non-redox fractionations measured in low-temperature Fe-C-O systems. We show that at low temperature, the Fe(II)aq-FeSm system is slowly asymptotic to isotopic equilibrium and consequently, FeSm is likely to partially conserve kinetically derived isotopic signatures generated on precipitation. Combined with the range of published kinetic fractionations measured on FeSm precipitation, our data suggest that, subject to the degree of isotope exchange during equilibration, FeSm can display δ56Fe compositions encompassing a range of ~1.4‰.",
author = "Romain Guilbaud and Butler, {Ian B.} and Ellam, {Rob M.} and David Rickard and Anthony Oldroyd",
year = "2011",
month = may,
day = "15",
doi = "10.1016/j.gca.2011.02.023",
language = "English",
volume = "75",
pages = "2721--2734",
journal = "Geochimica et Cosmochimica Acta",
issn = "0016-7037",
publisher = "Elsevier Limited",
number = "10",

}

RIS

TY - JOUR

T1 - Experimental determination of the equilibrium Fe isotope fractionation between Feaq2+ and FeSm (mackinawite) at 25 and 2°C

AU - Guilbaud, Romain

AU - Butler, Ian B.

AU - Ellam, Rob M.

AU - Rickard, David

AU - Oldroyd, Anthony

PY - 2011/5/15

Y1 - 2011/5/15

N2 - We report the first experimentally-determined metal isotope equilibrium fractionation factors for a metal sulphide at ambient temperatures and pressures. Mackinawite, referred here as FeSm (where the subscript m indicates mackinawite), can be a reactive component in diagenetic pyrite formation and the extent of equilibration between FeSm and dissolved Fe(II) has direct implications the δ56Fe signatures recorded in diagenetic pyrite. The measured equilibrium Fe isotope fractionation between Fe(II)aq and FeSm is Δ56FeFe(II)-FeS=-0.52±0.16‰ at 2°C and Δ56FeFe(II)-FeS=-0.33±0.12‰ at 25°C and pH 4. At the experimental pH the equilibrium fractionation factor between all dissolved Fe(II) species and FeSm (Δ56FeFe(II)-FeS) equates to the fractionation factor between Feaq2+ and FeSm (Δ56FeFe2+-FeS). The measured fractionations are of the same order as other non-redox fractionations measured in low-temperature Fe-C-O systems. We show that at low temperature, the Fe(II)aq-FeSm system is slowly asymptotic to isotopic equilibrium and consequently, FeSm is likely to partially conserve kinetically derived isotopic signatures generated on precipitation. Combined with the range of published kinetic fractionations measured on FeSm precipitation, our data suggest that, subject to the degree of isotope exchange during equilibration, FeSm can display δ56Fe compositions encompassing a range of ~1.4‰.

AB - We report the first experimentally-determined metal isotope equilibrium fractionation factors for a metal sulphide at ambient temperatures and pressures. Mackinawite, referred here as FeSm (where the subscript m indicates mackinawite), can be a reactive component in diagenetic pyrite formation and the extent of equilibration between FeSm and dissolved Fe(II) has direct implications the δ56Fe signatures recorded in diagenetic pyrite. The measured equilibrium Fe isotope fractionation between Fe(II)aq and FeSm is Δ56FeFe(II)-FeS=-0.52±0.16‰ at 2°C and Δ56FeFe(II)-FeS=-0.33±0.12‰ at 25°C and pH 4. At the experimental pH the equilibrium fractionation factor between all dissolved Fe(II) species and FeSm (Δ56FeFe(II)-FeS) equates to the fractionation factor between Feaq2+ and FeSm (Δ56FeFe2+-FeS). The measured fractionations are of the same order as other non-redox fractionations measured in low-temperature Fe-C-O systems. We show that at low temperature, the Fe(II)aq-FeSm system is slowly asymptotic to isotopic equilibrium and consequently, FeSm is likely to partially conserve kinetically derived isotopic signatures generated on precipitation. Combined with the range of published kinetic fractionations measured on FeSm precipitation, our data suggest that, subject to the degree of isotope exchange during equilibration, FeSm can display δ56Fe compositions encompassing a range of ~1.4‰.

U2 - 10.1016/j.gca.2011.02.023

DO - 10.1016/j.gca.2011.02.023

M3 - Journal article

AN - SCOPUS:79955078063

VL - 75

SP - 2721

EP - 2734

JO - Geochimica et Cosmochimica Acta

JF - Geochimica et Cosmochimica Acta

SN - 0016-7037

IS - 10

ER -