Unfortunately this page does not have a mobile or narrow screen view. Please switch to a desktop computer or increase the size of your browser. For tablets try flipping the screen.

Data Publication

Titanium stable isotope and major and trace element compositions of Archean and Paleoproterozoic sanukitoids and Paleozoic high Ba-Sr granite suites

Spencer, Laura M. | Albert, Capucine | Williams, Helen M. | Nebel, Oliver | Parkinson, Ian J. | Smithies, Robert Hugh | Bruno, Henrique | Fowler, Mike | Moreira, Hugo | Lissenberg, C. Johan | Millet, Marc-Alban

GFZ Data Services

(2024)

The DIGIS geochemical data repository is a research data repository in the Earth Sciences domain with a specific focus on geochemical data. The repository archives, publishes and makes accessible user-contributed, peer-reviewed research data in standardised form (EarthChem Team, 2022, https://doi.org/10.26022/IEDA/112263) that fall within the scope of the GEOROC database (https://georoc.eu). All submissions of new data will be considered for inclusion in the GEOROC database. It is hosted at GFZ Data Services through a collaboration between the Digital Geochemical Data Infrastructure (DIGIS) for GEOROC 2.0 (https://digis.geo.uni-goettingen.de) and the GFZ German Research Centre for Geosciences.

Keywords


Originally assigned keywords
titanium isotope
sanukitoid
lamprophyre
granitoid
dioritoid
GEOCHEMISTRY
CHEMICAL CONCENTRATIONS
ISOTOPE MEASUREMENTS
ISOTOPES
MCICPMS
continent
Paleozoic
Archean
Paleoproterozoic
geology

Corresponding MSL vocabulary keywords
multicollector-inductively coupled plasma-mass spectrometer
Paleozoic
Archean
Paleoproterozoic

MSL enriched keywords
equipment
mass spectrometer
multicollector-inductively coupled plasma-mass spectrometer
Phanerozoic
Paleozoic
Precambrian
Archean
Proterozoic
Paleoproterozoic
igneous rock - intrusive
acidic intrusive
granite
minerals
chemical elements
titanium
measured property
titanium

MSL enriched sub domains i

geochemistry


Source publisher

GFZ Data Services


DOI

10.5880/digis.2024.004


Authors

Spencer, Laura M.

0009-0006-1027-7638

School of Earth and Environmental Sciences, Cardiff University, Cardiff, UK;

Albert, Capucine

School of Earth and Environmental Sciences, Cardiff University, Cardiff, UK; Bureau de Recherches Géologiques et Minières, Orléans, France;

Williams, Helen M.

Department of Earth Sciences, University of Cambridge, Cambridge, UK;

Nebel, Oliver

0000-0002-5068-7117

School of Earth, Atmosphere and Environment, Monash University, Melbourne, Australia;

Parkinson, Ian J.

School of Earth Sciences, University of Bristol, Bristol, UK;

Smithies, Robert Hugh

0000-0003-1878-597X

Geological Survey of Western Australia, Department of Mines, Industry Regulation and Safety, Mineral House, East Perth, Australia;

Bruno, Henrique

Universidade do Estado do Rio de Janeiro, Faculdade de Geologia – TEKTOS Grupo, Rio de Janeiro, Brazil;

Fowler, Mike

0000-0002-2182-5015

School of the Environment, Geography and Geosciences, University of Portsmouth, Portsmouth, UK;

Moreira, Hugo

School of the Environment, Geography and Geosciences, University of Portsmouth, Portsmouth, UK; Géosciences Montpellier, Université de Montpellier, Montpellier, France;

Lissenberg, C. Johan

0000-0001-7774-2297

School of Earth and Environmental Sciences, Cardiff University, Cardiff, UK;

Millet, Marc-Alban

0000-0003-2710-5374

School of Earth and Environmental Sciences, Cardiff University, Cardiff, UK;


Contributers

CELTIC - Cardiff Environmental Laboratory for Trace Element and Isotope Chemistry

HostingInstitution

School of Earth and Environmental Sciences, Cardiff University, Cardiff, UK;

Spencer, Laura M.

ContactPerson

School of Earth and Environmental Sciences, Cardiff University, Cardiff, UK;


References

PAPER DOI OR JOURNAL OF MANUSCRIPT SUBMISSION

IsSupplementTo

EarthChem, T. (2022). <i>Bulk Analysis Data Template v. 3.1</i> (Version 1.0) [Data set]. Interdisciplinary Earth Data Alliance (IEDA). https://doi.org/10.26022/IEDA/112263

10.26022/IEDA/112263

References

References

References

Bruno, H., Heilbron, M., de Morisson Valeriano, C., Strachan, R., Fowler, M., Bersan, S., Moreira, H., Motta, R., Almeida, J., Almeida, R., Carvalho, M., & Storey, C. (2021). Evidence for a complex accretionary history preceding the amalgamation of Columbia: The Rhyacian Minas-Bahia Orogen, southern São Francisco Paleocontinent, Brazil. Gondwana Research, 92, 149–171. https://doi.org/10.1016/j.gr.2020.12.019

10.1016/j.gr.2020.12.019

Cites

FOWLER, M. B., HENNEY, P. J., DARBYSHIRE, D. P. F., & GREENWOOD, P. B. (2001). Petrogenesis of high Ba–Sr granites: the Rogart pluton, Sutherland. Journal of the Geological Society, 158(3), 521–534. https://doi.org/10.1144/jgs.158.3.521

10.1144/jgs.158.3.521

Cites

Fowler, M. B., Kocks, H., Darbyshire, D. P. F., & Greenwood, P. B. (2008). Petrogenesis of high Ba–Sr plutons from the Northern Highlands Terrane of the British Caledonian Province. Lithos, 105(1–2), 129–148. https://doi.org/10.1016/j.lithos.2008.03.003

10.1016/j.lithos.2008.03.003

Cites

Millet, M.-A., & Dauphas, N. (2014). Ultra-precise titanium stable isotope measurements by double-spike high resolution MC-ICP-MS. Journal of Analytical Atomic Spectrometry, 29(8), 1444. https://doi.org/10.1039/c4ja00096j

10.1039/C4JA00096J

Cites

Moreira, H., Seixas, L., Storey, C., Fowler, M., Lasalle, S., Stevenson, R., & Lana, C. (2018). Evolution of Siderian juvenile crust to Rhyacian high Ba-Sr magmatism in the Mineiro Belt, southern São Francisco Craton. Geoscience Frontiers, 9(4), 977–995. https://doi.org/10.1016/j.gsf.2018.01.009

10.1016/j.gsf.2018.01.009

Cites

SMITHIES, R. H. (2000). The Archaean High-Mg Diorite Suite: Links to Tonalite-Trondhjemite-Granodiorite Magmatism and Implications for Early Archaean Crustal Growth. Journal of Petrology, 41(12), 1653–1671. https://doi.org/10.1093/petrology/41.12.1653

10.1093/petrology/41.12.1653

Cites

Smithies, R. H., Lu, Y., Johnson, T. E., Kirkland, C. L., Cassidy, K. F., Champion, D. C., Mole, D. R., Zibra, I., Gessner, K., Sapkota, J., De Paoli, M. C., & Poujol, M. (2019). No evidence for high-pressure melting of Earth’s crust in the Archean. Nature Communications, 10(1). https://doi.org/10.1038/s41467-019-13547-x

10.1038/s41467-019-13547-x

Cites

Cites

Vandenburg, E. D., Nebel, O., Smithies, R. H., Capitanio, F. A., Miller, L., Cawood, P. A., Millet, M.-A., Bruand, E., Moyen, J.-F., Wang, X., & Nebel-Jacobsen, Y. (2023). Spatial and temporal control of Archean tectonomagmatic regimes. Earth-Science Reviews, 241, 104417. https://doi.org/10.1016/j.earscirev.2023.104417

10.1016/j.earscirev.2023.104417

Cites


Contact

Spencer, Laura M.

School of Earth and Environmental Sciences, Cardiff University, Cardiff, UK;


Citiation

Spencer, L. M., Albert, C., Williams, H. M., Nebel, O., Parkinson, I. J., Smithies, R. H., Bruno, H., Fowler, M., Moreira, H., Lissenberg, C. J., & Millet, M.-A. (2024). Titanium stable isotope and major and trace element compositions of Archean and Paleoproterozoic sanukitoids and Paleozoic high Ba-Sr granite suites [Data set]. GFZ Data Services. https://doi.org/10.5880/DIGIS.2024.004