New insight on Li and B isotope fractionation during serpentinization derived from batch reaction investigations. (15th November 2017)
- Record Type:
- Journal Article
- Title:
- New insight on Li and B isotope fractionation during serpentinization derived from batch reaction investigations. (15th November 2017)
- Main Title:
- New insight on Li and B isotope fractionation during serpentinization derived from batch reaction investigations
- Authors:
- Hansen, Christian T.
Meixner, Anette
Kasemann, Simone A.
Bach, Wolfgang - Abstract:
- Abstract: Multiple batch experiments (100 °C, 200 °C; 40 MPa) were conducted, using Dickson-type reactors, to investigate Li and B partitioning and isotope fractionation between rock and water during serpentinization. We reacted fresh olivine (5 g; Fo90 ; [B] = <0.02 μg/g; δ 11 BOlivine −14‰; [Li] = 1.7 μg/g; δ 7 LiOlivine = +5.3‰) with seawater-like fluids (75 ml, 3.2 wt.% NaCl) adjusted with respect to their Li (0.2, 0.5 µg/ml; and δ 7 LiFluid +55‰) and B (∼10 µg/ml and δ 11 BFluid −0.3‰) characteristics. At 200 °C a reaction turnover of about 70% and a serpentinization mineral assemblage matching equilibrium thermodynamic computational results (EQ3/6) developed after 224 days runtime. Characterization of concomitant fluid samples indicated a distinct B incorporation into solid phases ([B]final_200 °C = 55.61 µg/g; D S/F B200 °C = 13.42) and a preferential uptake of the lighter 10 B isotope (Δ 11 BS-F = −3.46‰). Despite a low reaction turnover at 100 °C (<12%), considerable amounts of B were again incorporated into solid phases ([B]final_100 °C = 25.33 µg/g; D S/F B100 °C = 24.2) with even a larger isotope fractionation factor (Δ 11 BS-F = −9.97‰). While magnitude of isotope fraction appears anti-correlated with temperature, we argue for an overall attenuation of the isotopic effect through changes in B speciation in saline solutions (NaB(OH)4 (aq) and B(OH)3 Cl − ) as well as variable B fixation and fractionation for different serpentinization product mineralsAbstract: Multiple batch experiments (100 °C, 200 °C; 40 MPa) were conducted, using Dickson-type reactors, to investigate Li and B partitioning and isotope fractionation between rock and water during serpentinization. We reacted fresh olivine (5 g; Fo90 ; [B] = <0.02 μg/g; δ 11 BOlivine −14‰; [Li] = 1.7 μg/g; δ 7 LiOlivine = +5.3‰) with seawater-like fluids (75 ml, 3.2 wt.% NaCl) adjusted with respect to their Li (0.2, 0.5 µg/ml; and δ 7 LiFluid +55‰) and B (∼10 µg/ml and δ 11 BFluid −0.3‰) characteristics. At 200 °C a reaction turnover of about 70% and a serpentinization mineral assemblage matching equilibrium thermodynamic computational results (EQ3/6) developed after 224 days runtime. Characterization of concomitant fluid samples indicated a distinct B incorporation into solid phases ([B]final_200 °C = 55.61 µg/g; D S/F B200 °C = 13.42) and a preferential uptake of the lighter 10 B isotope (Δ 11 BS-F = −3.46‰). Despite a low reaction turnover at 100 °C (<12%), considerable amounts of B were again incorporated into solid phases ([B]final_100 °C = 25.33 µg/g; D S/F B100 °C = 24.2) with even a larger isotope fractionation factor (Δ 11 BS-F = −9.97‰). While magnitude of isotope fraction appears anti-correlated with temperature, we argue for an overall attenuation of the isotopic effect through changes in B speciation in saline solutions (NaB(OH)4 (aq) and B(OH)3 Cl − ) as well as variable B fixation and fractionation for different serpentinization product minerals (brucite, chrysotile). Breakdown of the Li-rich olivine and limited Li incorporation into product mineral phases resulted in an overall lower Li content of the final solid phase assemblage at 200 °C ([Li]final_200 °C = 0.77 µg/g; D S/F Li200 °C = 1.58). First order changes in Li isotopic compositions were defined by mixing of two isotopically distinct sources i.e. the fresh olivine and the fluid rather than by equilibrium isotope fraction. At 200 °C primary olivine is dissolved, releasing its Li budget into the fluid which shifts towards a lower δ 7 LiF of +38.62‰. Newly formed serpentine minerals (δ 7 LiS = +30.58‰) incorporate fluid derived Li with a minor preference of the 6 Li isotope. At 100 °C Li enrichment of secondary phases exceeded Li release by olivine breakdown ([Li]final_100 °C = 2.10 µg/g; D S/F Li100 °C = 11.3) and it was accompanied by preferential incorporation of heavier 7 Li isotope that might be due to incorporation of a 7 Li enriched fluid fraction into chrysotile nanotubes. … (more)
- Is Part Of:
- Geochimica et cosmochimica acta. Volume 217(2017)
- Journal:
- Geochimica et cosmochimica acta
- Issue:
- Volume 217(2017)
- Issue Display:
- Volume 217, Issue 2017 (2017)
- Year:
- 2017
- Volume:
- 217
- Issue:
- 2017
- Issue Sort Value:
- 2017-0217-2017-0000
- Page Start:
- 51
- Page End:
- 79
- Publication Date:
- 2017-11-15
- Subjects:
- Serpentinization -- Fluid-rock interaction -- Boron -- Lithium -- Isotope fractionation -- Experimental petrology/geochemistry
Geochemistry -- Periodicals
Meteorites -- Periodicals
Géochimie -- Périodiques
Météorites -- Périodiques
Geochemie
Astrochemie
Electronic journals
551.905 - Journal URLs:
- http://www.sciencedirect.com/science/journal/00167037 ↗
http://catalog.hathitrust.org/api/volumes/oclc/1570626.html ↗
http://books.google.com/books?id=8IjzAAAAMAAJ ↗
http://books.google.com/books?id=mInzAAAAMAAJ ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.gca.2017.08.014 ↗
- Languages:
- English
- ISSNs:
- 0016-7037
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 4117.000000
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