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  • 1
    Keywords: Geology, Stratigraphic Archaean ; Cratons ; Plate tectonics ; Planets ; Mantles ; Planets ; Crust ; Archaean Geologic Period ; Cratons ; Geology, Stratigraphic ; Plate tectonics ; Earth (Planet) ; Earth (Planet) Crust ; Earth (Planet) Mantle ; Electronic book ; Archaikum ; Plattentektonik ; Erdkruste ; Erdmantel ; Granit ; Granitoid ; Geochemie
    Description / Table of Contents: Archaean granitoids: an overview and significance from a tectonic perspective -- Hafnium isotope constraints on the origin of Mesoarchaean andesites in southern West Greenland, North Atlantic Craton -- The tectonomagmatic significance of Neoarchaean variably alkali-enriched gabbro and diorite intrusions of the western Karelia Province -- Alkaline-rich quartz syenite intrusions of the Western Karelia subprovince -- Geochronology of Neoarchaean granitoids of the NW eastern Dharwar craton: implications for crust formation -- The diversification of granitoids and plate tectonic implications at the Archaean-Proterozoic boundary in the Bundelkhand Craton, Central India -- Petrogenesis of mafic magmatic enclaves of the Bundelkhand granitoids near Orchha, Central Indian shield: evidence for rapid crystallization -- The long (3.7-2.1 Ga) and multistage evolution of the Bug Granulite-Gneiss Complex, Ukrainian Shield, based on the SIMS U-Pb ages and geochemistry of zircons from a single sample -- Geochemical characterization and petrogenesis of mafic granulites from the Central Indian Tectonic Zone (CITZ) -- Metamorphic evolution of the Ilomantsi greenstone belt in the Archaean Karelia Province, eastern Finland.
    Type of Medium: Online Resource
    Pages: 1 Online-Ressource (vii, 256 Seiten) , Illustrationen, Karten
    ISBN: 9781786202949 , 1786202948
    Series Statement: Geological Society special publication no. 449
    DDC: 552/.3
    RVK:
    Language: English
    Note: Includes bibliographical references and index
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  • 2
    Publication Date: 2022-05-26
    Description: © The Author(s), 2021. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Mohtar, A. T., Hughen, K. A., Goodkin, N. F., Streanga, I., Ramos, R. D., Samanta, D., Cervino, J., & Switzer, A. D. Coral-based proxy calibrations constrain ENSO-driven sea surface temperature and salinity gradients in the Western Pacific Warm Pool. Palaeogeography Palaeoclimatology Palaeoecology, 561, (2021): 110037, doi:10.1016/j.palaeo.2020.110037.
    Description: Constraining past variability in ocean conditions in the Western Pacific Warm Pool (WPWP) and examining how it has been influenced by the El-Niño Southern Oscillation (ENSO) is critical to predicting how these systems may change in the future. To characterize the spatiotemporal variability of the WPWP and ENSO during the past three decades, we analyzed climate proxies using coral cores sampled from Porites spp. from Kosrae Island (KOS) and Woleai Atoll (WOL) in the Federated States of Micronesia. Coral skeleton samples drilled along the major growth axis were analyzed for oxygen isotopes (δ18Oc) and trace element ratios (Sr/Ca), used to reconstruct sea surface salinity and temperature (SSS and SST). Pseudocoral δ18O time series (δ18Opseudo) were calculated from gridded instrumental observations and compared to δ18Oc, followed by fine-tuning using coral Sr/Ca and gridded SST, to produce age models for each coral. The thermal component of δ18Oc was removed using Sr/Ca for SST, to derive δ18O of seawater (δ18Osw), a proxy for SSS. The Sr/Ca, and δ18Osw records were compared to instrumental SST and SSS to test their fidelity as regional climate recorders. We found both sites display significant Sr/Ca-SST calibrations at monthly and interannual (dry season, wet season, mean annual) timescales. At each site, δ18Osw also exhibited significant calibrations to SSS across the same timescales. The difference between normalized dry season SST (Sr/Ca) anomalies from KOS and WOL generates a zonal SST gradient (KOSWOLSST), capturing the east-west WPWP migration observed during ENSO events. Similarly, the average of normalized dry season δ18Osw anomalies from both sites produces an SSS index (KOSWOLSSS) reflecting the regional hydrological changes. Both proxy indices, KOSWOLSST and KOSWOLSSS, are significantly correlated to regional ENSO indices. These calibration results highlight the potential for extending the climate record, revealing spatial hydrological gradients within the WPWP and ENSO variability back to the end of the Little Ice Age.
    Description: We also thank the crew of the M/V Alucia for assistance during the 2012 coral drilling expedition to FSM, funded by the Dalio Family Foundation through a WHOI Access to The Sea grant to KAH (#25110104). Geochemical analysis was funded by Singapore Ministry of Education Academic Research Fund Tier-2 (# MOE2016-T2-1016) to NFG and KAH, and by the WHOI Summer Student Fellowship Program (00450400) and Coastal Preservation Network 501c to IMS.
    Keywords: Sr/Ca ; δ18Οsw ; Porites spp. ; ENSO ; Spatial index ; Multi-timescale calibration
    Repository Name: Woods Hole Open Access Server
    Type: Article
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