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  • Other Sources  (5)
  • GSA, Geological Society of America  (4)
  • MSA (Mineralogical Society of America)  (1)
  • 1
    Publication Date: 2017-09-26
    Description: New U-series isotope data for lavas from the East Scotia backarc spreading center span a large range in (230Th/232Th) and (238U/232Th). Most of the backarc lavas have (238U/230Th) 〈 1, similar to the composition of mid-oceanic-ridge basalts (MORB). Lavas from two segments have (238U/230Th) 〉 1 and are enriched in fluid-mobile elements, implying a recent addition of a U-rich slab-derived component. The data from one segment suggest an influence from an aqueous fluid from altered MORB, whereas samples from the other slab-influenced segment show addition of a sediment melt. The slab-influenced samples form a distinct trend in the equiline diagram between aqueous fluid and sediment melt that is suggested to be a mixing line rather than an isochron.
    Type: Article , PeerReviewed
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  • 2
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    MSA (Mineralogical Society of America)
    In:  Elements, 12 (5). pp. 329-334.
    Publication Date: 2019-10-17
    Description: Past environmental parameters such as temperature, pH and CO2 can be reconstructed from chemical 'proxies' (elemental and isotopic compositions) stored in various 'archives' such as corals, foraminifera and bivalves. Versatile, rapid, simple and comparatively inexpensive microanalysis via laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) provides precise and accurate proxy data and chronologies at micrometer resolution. Moreover, LA-ICP-MS can extract data at a high-temporal resolution from continuously growing samples and even works on partially altered samples. The latter enhances our understanding of 'deep-time' palaeoclimate events. Using case studies of various carbonate-hosted archives (coralline algae, giant clams) to illustrate multi-proxy mapping (temperature, pH) and chronology, we showcase current methodological practice and achievements. We conclude with an outlook on likely future LA-ICP-MS developments relevant to palaeoclimatology.
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  • 3
    Publication Date: 2017-08-07
    Description: The origin of coastal and high-elevation marine gravels on the Hawaiian islands of Lanai and Molokai is controversial, because the vertical tectonics of these islands is poorly constrained. The gravels are either from eustatic highstands or were left by massive tsunamis from offshore giant landslides. In contrast, at Kohala on the island of Hawaii, where continuous subsidence is well established, lithofacies analysis and dating of a fossiliferous marine conglomerate 1.5–61 m above present sea level support a tsunami origin and indicate a runup of 〉400 m 〉6 km inland. The conglomerate age, 110 ± 10 ka, suggests a tsunami caused by the ca. 120 ka giant Alika 2 landslide from nearby Mauna Loa volcano.
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  • 4
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    GSA, Geological Society of America
    In:  Geology, 38 (1). pp. 27-30.
    Publication Date: 2017-05-18
    Description: Studies of paleo–sea level and past climate have focused upon proxy methods in ice and deep-sea cores and more direct information provided by past shorelines, in some cases preserved as raised or submerged reef deposits in tropical areas. Paleo-shorelines need to be constrained by accurate tectonic history because these environments and their marine deposits can be confused with past tsunami deposits and vice versa. A maximum 21-m-high extensive emerged reef on Oahu, Hawaii, U-series dated to 334 ± 17 ka, together with a mean U-series age of 335 ± 22 ka (n = 5) for slightly higher, energetic shoreline deposits nearby, suggest a marine isotope stage 9 (MIS 9) highstand, and extend the earlier work indicating a linear uplift for Oahu of 0.060 ± 0.001 mm/yr over the past 500 k.y. Five of the past six major emerged interglacial highstand reefs on Oahu have been identified, and these data provide little evidence for past maximum sea levels significantly greater than 2 m above the sea level datum at that time. There is currently no evidence for a MIS 11 highstand on Oahu.
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  • 5
    Publication Date: 2017-05-18
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