The mafic volcanic climax of the Paraná‐Etendeka Large Igneous Province as the trigger of the Weissert Event
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[1] H. Sanei,et al. Sedimentary Mercury Enrichments as a Tracer of Large Igneous Province Volcanism , 2021, Large Igneous Provinces.
[2] S. Grasby,et al. Large Igneous Province Record Through Time and Implications for Secular Environmental Changes and Geological Time‐Scale Boundaries , 2021 .
[3] U. Glasmacher,et al. Application of stratigraphic frameworks and thermochronological data on the Mesozoic SW Gondwana intraplate environment to retrieve the Paraná-Etendeka plume movement , 2020, Gondwana Research.
[4] U. Schaltegger,et al. Rapid eruption of silicic magmas from the Paraná magmatic province (Brazil) did not trigger the Valanginian event , 2020, Geology.
[5] G. Keller,et al. U-Pb constraints on pulsed eruption of the Deccan Traps across the end-Cretaceous mass extinction , 2019, Science.
[6] Olav Eldholm,et al. Large Igneous Provinces , 1993, Encyclopedia of Ocean Sciences.
[7] R. Ernst,et al. Giant Circumferential Dyke Swarms: Catalogue and Characteristics , 2018, Springer Geology.
[8] L. Rossetti. Lithostratigraphy and geochemistry of the Paraná-Etendeka large igneous Province and constraints on the petrophysical properties of volcano-sedimentary sequences , 2018 .
[9] S. Planke,et al. Gondwana Large Igneous Provinces: plate reconstructions, volcanic basins and sill volumes , 2017, Special Publications.
[10] N. Youbi,et al. How Large Igneous Provinces affect global climate, sometimes cause mass extinctions, and represent natural markers in the geological record , 2017 .
[11] C. Scherer,et al. Lithostratigraphy and volcanology of the Serra Geral Group, Paraná-Etendeka Igneous Province in Southern Brazil: Towards a formal stratigraphical framework , 2017 .
[12] A. Baksi. Paraná flood basalt volcanism primarily limited to 1 Myr beginning at 135 Ma: New 40 Ar/ 39 Ar ages for rocks from Rio Grande do Sul, and critical evaluation of published radiometric data , 2017 .
[13] P. Renne,et al. Contemporaneous alkaline and tholeiitic magmatism in the Ponta Grossa Arch, Paraná-Etendeka Magmatic Province: Constraints from U–Pb zircon/baddeleyite and 40Ar/39Ar phlogopite dating of the José Fernandes Gabbro and mafic dykes , 2017 .
[14] K. Föllmi,et al. Mercury enrichment indicates volcanic triggering of Valanginian environmental change , 2017, Scientific Reports.
[15] T. Mather,et al. Globally enhanced mercury deposition during the end-Pliensbachian extinction and Toarcian OAE: A link to the Karoo–Ferrar Large Igneous Province , 2015 .
[16] P. Pellenard,et al. Astrochronology of the Valanginian–Hauterivian stages (Early Cretaceous): Chronological relationships between the Paraná–Etendeka large igneous province and the Weissert and the Faraoni events , 2015 .
[17] M. Radisic,et al. Platform technology for scalable assembly of instantaneously functional mosaic tissues , 2015, Science Advances.
[18] A. Muxworthy,et al. Long duration (>4 Ma) and steady-state volcanic activity in the early Cretaceous Paraná–Etendeka Large Igneous Province: New palaeomagnetic data from Namibia , 2015 .
[19] L. Heaman,et al. Tectonic significance of the Florianópolis Dyke Swarm, Paraná–Etendeka Magmatic Province: A reappraisal based on precise U–Pb dating , 2014 .
[20] D. Peate. The Paraná‐Etendeka Province , 2013 .
[21] C. Scherer,et al. Stratigraphy and volcanic facies architecture of the Torres Syncline, Southern Brazil, and its role in understanding the Paraná–Etendeka Continental Flood Basalt Province , 2012 .
[22] J. Santos,et al. Zircon U-Pb geochronology from the Paraná bimodal volcanic province support a brief eruptive cycle at ~135Ma , 2011 .
[23] V. Janasi,et al. The onset of flood basalt volcanism, Northern Paraná Basin, Brazil: A precise U–Pb baddeleyite/zircon age for a Chapecó-type dacite , 2011 .
[24] Paulo M. Vasconcelos,et al. Paraná flood basalts: Rapid extrusion hypothesis confirmed by new 40Ar/39Ar results , 2010 .
[25] M. Gomes,et al. REVISÃO DA EXTENSÃO AREAL E DO VOLUME DA FORMAÇÃO SERRA GERAL, BACIA DO PARANÁ, AMÉRICA DO SUL , 2009 .
[26] Marcos Aurélio Oliveira,et al. As rochas vulcânicas mesozóicas ácidas da Bacia do Paraná: litoestratigrafia e considerações geoquímico-estratigráficas , 2008 .
[27] F. Lozar,et al. Orbital tuning of a lower Cretaceous composite record (Maiolica Formation, central Italy) , 2006 .
[28] E. Erba,et al. Valanginian Weissert oceanic anoxic event , 2004 .
[29] C. Hawkesworth,et al. Chemical stratigraphy of the Paraná lavas (South America): classification of magma types and their spatial distribution , 1992 .
[30] M. Perrin,et al. The Age of Paran� Flood Volcanism, Rifting of Gondwanaland, and the Jurassic-Cretaceous Boundary , 1992, Science.
[31] M. Ernesto,et al. Flood Basalt to Rhyolite Suites in the Southern Paranà Plateau (Brazil): Palaeomagnetism, Petrogenesis and Geodynamic Implications , 1984 .