Tektonik und Rohstoffe

Publikationen Silvia Volante

(11) Barrote, V.R., Volante, S., Blereau, E.R., Rosière, C.A., Spencer, C.J., 2022. Implications of the dominant LP–HT deformation in the Guanhães Block for the Araçuaí West-Congo Orogen evolution, Gondwana Research, 107, 154-175. https://doi.org/10.1016/j.gr.2022.03.012.

(10) Volante, S., Collins, W. J., Barrote, V., Nordsvan, A. R., Pourteau, A., Li, Z. X., Beams, S., 2022. Spatio–temporal evolution of Mesoproterozoic magmatism in NE Australia: A hybrid tectonic model for final Nuna assembly. Precambrian Research, 372, 106602.

(9) Olierook H.K.H., Affleck R.G., Evans N.J., Jourdan F., Kirkland C.L., Volante S., Nordsvan A.R., McInnes B.I., McDonald B., Mayers C., Frew R.A., Rankenburg K., d’Offay N., Nind M., Larking A., 2020. Mineralization proximal to the final Nuna suture in northeastern Australia. Gondwana Research. https://doi.org/10.1016/j.gr.2020.12.017.

(8) Li J., Pourteau A., Li Z.-X., Jourdan F., Nordsvan A.R., Collins W.J., Volante S., 2020. Heterogeneous Exhumation of the Mount Isa Orogen in NE Australia after 1.6 Ga Nuna Assembly: New High-Precision 40Ar/39Ar Thermochronological Constraints. Tectonics, 39, e2020TC006129. https://-doi.org/10.1029/2020TC006129.

(7) Volante S., Collins W.J., Blereau E., Pourteau A., Spencer C.J., Evans N.J., Barrote V., Nordsvan A.R., Li Z.-X., Li J., 2020. Reassessing zircon-monazite thermometry with thermodynamic modelling: insights from the Georgetown igneous complex, NE Australia. Contributions to Mineralogy and Petrology, 175, 110 (2020). https://doi.org/10.1007/s00410-020-01752-7.

(6) Pourteau A., Doucet L.S., Blereau E., Volante S., Johnson T.E., Collins W.J., Li Z.-X., Champion D., 2020. TTG generation by fluid-fluxed crustal melting: Direct evidence from the Proterozoic Georgetown Inlier, NE Australia. Earth and Planetary Science Letters, 550, 116548.

(5) Volante S., Collins W.J., Pourteau A., Li Z.-X., Li J., Nordsvan A., 2020. Structural evolution of a 1.6 Ga orogeny related to the final assembly of the supercontinent Nuna: coupling of episodic and progressive deformation. Tectonics, 39, e2020TC006162. https://doi.org/10.1029/2020TC006162.

(4) Volante S., Pourteau A., Collins W.J., Blereau E., Li Z.-X., Smit M., Evans N.J., Nordsvan A.R., Spencer C.J., McDonald B.J., Li J., Günter C., 2020. Multiple P–T–d–t paths reveal the evolution of the final Nuna assembly in northeast Australia. Journal of Metamorphic Geology, 38 (6), 593-627.

(3) Gosso G., Zanoni D., Corsini M., Mascle J., Spalla M.I., Giannerini G., Lardeaux J.-M., Volante S., Bersezio R., Spaggiari L., Zucali M., Camera L., 2019. Mapping the progressive geologic history at the junction of the Alpine Mountain Belt and the Western Mediterranean Ocean. Ofioliti, 44 (2), 97-110. doi:10.4454/ofioliti.v44i2.467.

(2) Pourteau A., Smit M., Li Z.-X., Collins W.J., Nordsvan A.R., Volante S., Li J., 2018. 1.6 Ga crustal thickening along the final Nuna suture. Geology, 46 (11), 959-962.

(1) Nordsvan A.R., Collins W.J., Li Z.-X., Spencer C.J., Pourteau A., Withnall I.W., Betts P., Volante S., 2018. Laurentian crust in northeast Australia: Implications for the assembly of the supercontinent Nuna. Geology, 46 (3), 251-254.