The B isotope systematics (δ11B) in amphibole offer insights into fluid- and melt-dominated processes in the crust-mantle system. We developed an analytical strategy for in situ B isotope determination in amphibole using LA- MC-ICP-MS on material with a B fraction of a few μg g−1 using 1013 Ω resistors. Sources of error deriving from matrix effects were evaluated. Two Ca-amphiboles, one from Pargas, Finland (PRG), and another from the Finero Complex (S. Alps, FIN), were characterised as potential reference materials. PRG has a B mass fraction of 6.75 ± 1.10 μg g−1 and a δ11B value of -16.58 ± 0.06‰, while FIN has 3.27 ± 0.68 μg g−1 of B and a δ11B value of -5.90 ± 0.09‰. A standard-sample-standard bracketing method, using USGS BHVO-2G basaltic glass as the bracketing ‘standard’ (calibrator), provided accurate and reproducible in situ δ11B measurements with 2s of ± 2.86‰ (n = 87) for PRG and ± 3.96‰ for FIN (n = 70). These Ca-amphiboles are suitable reference materials to assess accuracy during in situ B isotope determination with LA-MC-ICP-MS. The potential of in situ B isotope determination in Ca-amphibole as a geochemical tool to investigate petrogenetic processes of a well-characterised amphibole-bearing gabbro from the Adamello batholith (C. Alps) has been tested successfully.

In situ boron isotope determination in amphibole by LA-MC-ICP-MS: matrix effects and new potential reference materials / E. Cannaò, G. Sessa, S. Agostini, M. Tiepolo. - In: GEOSTANDARDS AND GEOANALYTICAL RESEARCH. - ISSN 1639-4488. - 49:2(2025 Jun), pp. 343-356. [10.1111/ggr.12601]

In situ boron isotope determination in amphibole by LA-MC-ICP-MS: matrix effects and new potential reference materials

E. Cannaò
Primo
Conceptualization
;
G. Sessa
Secondo
Methodology
;
M. Tiepolo
Ultimo
Funding Acquisition
2025

Abstract

The B isotope systematics (δ11B) in amphibole offer insights into fluid- and melt-dominated processes in the crust-mantle system. We developed an analytical strategy for in situ B isotope determination in amphibole using LA- MC-ICP-MS on material with a B fraction of a few μg g−1 using 1013 Ω resistors. Sources of error deriving from matrix effects were evaluated. Two Ca-amphiboles, one from Pargas, Finland (PRG), and another from the Finero Complex (S. Alps, FIN), were characterised as potential reference materials. PRG has a B mass fraction of 6.75 ± 1.10 μg g−1 and a δ11B value of -16.58 ± 0.06‰, while FIN has 3.27 ± 0.68 μg g−1 of B and a δ11B value of -5.90 ± 0.09‰. A standard-sample-standard bracketing method, using USGS BHVO-2G basaltic glass as the bracketing ‘standard’ (calibrator), provided accurate and reproducible in situ δ11B measurements with 2s of ± 2.86‰ (n = 87) for PRG and ± 3.96‰ for FIN (n = 70). These Ca-amphiboles are suitable reference materials to assess accuracy during in situ B isotope determination with LA-MC-ICP-MS. The potential of in situ B isotope determination in Ca-amphibole as a geochemical tool to investigate petrogenetic processes of a well-characterised amphibole-bearing gabbro from the Adamello batholith (C. Alps) has been tested successfully.
in situ boron measurement; amphibole; reference materials; laser ablation-multi collector-inductively coupled plasma-mass spectrometry; in situ techniques
Settore GEOS-01/C - Geochimica e vulcanologia
   AWARE - Exploring new volcanological perspectives at the Marsili seamount: from magma generation to eruption and implications for the volcanic hazard in Southern Italy
   AWARE
   MINISTERO DELL'UNIVERSITA' E DELLA RICERCA
   2022CX5AK9_004

   Amphibole as a window on the secular Earth’s mantle evolution
   MINISTERO DELL'UNIVERSITA' E DELLA RICERCA
   2022X2EZTN_001

   Assegnazione Dipartimenti di Eccellenza 2023-2027 - Dipartimento di SCIENZE DELLA TERRA "ARDITO DESIO"
   DECC23_020
   MINISTERO DELL'UNIVERSITA' E DELLA RICERCA

   Dipartimenti di Eccellenza 2018-2022 - Dipartimento di SCIENZE DELLA TERRA "ARDITO DESIO"
   MINISTERO DELL'ISTRUZIONE E DEL MERITO
giu-2025
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1147555
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