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  • 1
    Keywords: Tsunami ; Tsunami hazards ; natural hazards ; risk modelling ; Tsunami warning ; Tsunami geology ; earthquake
    Description / Table of Contents: Tsunamis: geology, hazards and risks – introduction / Ellie M. Scourse, Neil A. Chapman, David R. Tappin and Simon R. Wallis / Geological Society, London, Special Publications, 456, 1-3, 28 September 2017, https://doi.org/10.1144/SP456.13 --- Tsunami hazards globally --- The importance of geologists and geology in tsunami science and tsunami hazard / David R. Tappin / Geological Society, London, Special Publications, 456, 5-38, 28 June 2017, https://doi.org/10.1144/SP456.11 --- Geological studies in tsunami research since the 2011 Tohoku earthquake / Simon R. Wallis, Osamu Fujiwara and Kazuhisa Goto / Geological Society, London, Special Publications, 456, 39-53, 18 July 2017, https://doi.org/10.1144/SP456.12 --- Tsunami simulations of mega-thrust earthquakes in the Nankai–Tonankai Trough (Japan) based on stochastic rupture scenarios / Katsuichiro Goda, Tomohiro Yasuda, P. Martin Mai, Takuma Maruyama and Nobuhito Mori / Geological Society, London, Special Publications, 456, 55-74, 22 February 2017, https://doi.org/10.1144/SP456.1 --- Spatial variability in sediment lithology and sedimentary processes along the Japan Trench: use of deep-sea turbidite records to reconstruct past large earthquakes / Ken Ikehara, Kazuko Usami, Toshiya Kanamatsu, Kazuno Arai, Asuka Yamaguchi and Rina Fukuchi / Geological Society, London, Special Publications, 456, 75-89, 3 March 2017, https://doi.org/10.1144/SP456.9 --- Tsunami hazard in Central America: history and future / Conrad Lindholm, Wilfried Strauch and Mario Fernández / Geological Society, London, Special Publications, 456, 91-104, 23 February 2017, https://doi.org/10.1144/SP456.2 --- Block and boulder accumulations on the southern coast of Crete (Greece): evidence for the 365 CE tsunami in the Eastern Mediterranean / Sarah J. Boulton and Michael R. Z. Whitworth / Geological Society, London, Special Publications, 456, 105-125, 9 February 2017, https://doi.org/10.1144/SP456.4 --- Tsunami landfalls in the Maltese archipelago: reconciling the historical record with geomorphological evidence / Derek N. Mottershead, Malcolm J. Bray and Philip J. Soar / Geological Society, London, Special Publications, 456, 127-141, 23 February 2017, https://doi.org/10.1144/SP456.8 --- Cataloguing tsunami events in the UK / Dave Long / Geological Society, London, Special Publications, 456, 143-165, 29 June 2017, https://doi.org/10.1144/SP456.10 --- The application of microtextural and heavy mineral analysis to discriminate between storm and tsunami deposits / Pedro J. M. Costa, G. Gelfenbaum, S. Dawson, S. La Selle, F. Milne, J. Cascalho, C. Ponte Lira, C. Andrade, M. C. Freitas and B. Jaffe / Geological Society, London, Special Publications, 456, 167-190, 23 February 2017, https://doi.org/10.1144/SP456.7 --- Risk modelling --- Risk-informed tsunami warnings / Gordon Woo / Geological Society, London, Special Publications, 456, 191-197, 23 January 2017, https://doi.org/10.1144/SP456.3 --- The New Zealand Probabilistic Tsunami Hazard Model: development and implementation of a methodology for estimating tsunami hazard nationwide / William Power, Xiaoming Wang, Laura Wallace, Kate Clark and Christof Mueller / Geological Society, London, Special Publications, 456, 199-217, 3 March 2017, https://doi.org/10.1144/SP456.6 --- A global probabilistic tsunami hazard assessment from earthquake sources / Gareth Davies, Jonathan Griffin, Finn Løvholt, Sylfest Glimsdal, Carl Harbitz, Hong Kie Thio, Stefano Lorito, Roberto Basili, Jacopo Selva, Eric Geist and Maria Ana Baptista / Geological Society, London, Special Publications, 456, 219-244, 23 February 2017, https://doi.org/10.1144/SP456.5
    Pages: Online-Ressource (VIII, 252 Seiten) , Diagramme, Karten
    ISBN: 9781786203182
    Language: English
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  • 2
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    In:  Supplement to: Krause-Nehring, Jacqueline; Brey, Thomas; Thorrold, Simon R (2012): Centennial records of lead contamination in northern Atlantic bivalves (Arctica islandica). Marine Pollution Bulletin, 64(2), 233-240, https://doi.org/10.1016/j.marpolbul.2011.11.028
    Publication Date: 2023-01-13
    Description: In the study, we establish centennial records of anthropogenic lead pollution at different locations in the North Atlantic (Iceland, USA, and Europe) by means of lead deposited in shells of the long-lived bivalve Arctica islandica. Due to local oceanographic and geological conditions we conclude that the lead concentrations in the Icelandic shell reflect natural influxes of lead into Icelandic waters. In comparison, the lead profile of the US shell is clearly driven by anthropogenic lead emissions transported from the continent to the ocean by westerly surface winds. Lead concentrations in the European North Sea shell, in contrast, are dominantly driven by local lead sources resulting in a much less conspicuous 1970s gasoline lead peak. In conclusion, the lead profiles of the three shells are driven by different influxes of lead, and yet, all support the applicability of Pb/Ca analyses of A. islandica shells to reconstruct location specific anthropogenic lead pollution.
    Keywords: Grab; GRAB; HELG; ICEL; Iceland; off Helgoland, North Sea; VIRG; Virginia, USA
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 3
    Publication Date: 2023-01-13
    Keywords: Age; AGE; Grab; GRAB; LA-ICP-MS Thermo Finnigan Element 2; Lead/Calcium ratio; Lead/Calcium ratio, standard deviation; Lead/Calcium ratio, standard error; VIRG; Virginia, USA
    Type: Dataset
    Format: text/tab-separated-values, 184 data points
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  • 4
    Publication Date: 2023-01-13
    Keywords: Age; AGE; Grab; GRAB; ICEL; Iceland; LA-ICP-MS Thermo Finnigan Element 2; Lead/Calcium ratio; Lead/Calcium ratio, standard deviation; Lead/Calcium ratio, standard error
    Type: Dataset
    Format: text/tab-separated-values, 188 data points
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  • 5
    Publication Date: 2023-01-13
    Keywords: Age; AGE; Grab; GRAB; HELG; LA-ICP-MS Thermo Finnigan Element 2; Lead/Calcium ratio; Lead/Calcium ratio, standard deviation; Lead/Calcium ratio, standard error; off Helgoland, North Sea
    Type: Dataset
    Format: text/tab-separated-values, 152 data points
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  • 6
    Publication Date: 2023-01-30
    Keywords: climate; Clumped isotopes; Continental; Eocene; LATITUDE; Oxygen isotopes; Paleocene; siderite; Temperature, annual mean; Temperature, annual mean, maximum; Temperature, annual mean, minimum; Vapour saturation pressure; Vapour saturation pressure, maximum; Vapour saturation pressure, minimum
    Type: Dataset
    Format: text/tab-separated-values, 60 data points
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  • 7
    Publication Date: 2023-01-30
    Keywords: Area/locality; Average temperature; climate; Clumped isotopes; Confidence value; Continental; DATE/TIME; Eocene; Isotopic fractionation factor; LATITUDE; Number; Offset; Oxygen isotopes; Paleocene; siderite; Time zone; Uncertainty; Δ47; Δ47, standard deviation; Δ47, uncertainty; Δ48 offset; Δ49; δ13C, siderite; δ18O, precipitation; δ18O, siderite
    Type: Dataset
    Format: text/tab-separated-values, 1975 data points
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  • 8
    Publication Date: 2023-01-30
    Keywords: Calcium carbonate; climate; Clumped isotopes; Continental; Eocene; Iron carbonate, siderite; Location; Magnesium carbonate, magnesite; Manganese carbonate; Microprobe; Oxygen isotopes; Paleocene; Sample ID; siderite
    Type: Dataset
    Format: text/tab-separated-values, 216 data points
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  • 9
    Publication Date: 2023-06-21
    Description: To document distinct sources of particulate organic carbon (POC) to the Río Bermejo, we collected 15 soil and 13 leaf litter samples from the local floodplain, and 10 bedrock (predominantly outcroppings of fine-grained sedimentary bedrock) and 2 soil samples from the Río Bermejo headwaters. Leaf litter and soil were oven-dried at 40°C for 〉48 hours. We shredded leaf litter in an industrial blender, homogenized soil samples in an agate mortar and manually removed root and plant debris 〉1 cm, and pulverized bedrock samples to 〈63 µm.
    Keywords: AR15DS-001; AR15DS-005a; AR15DS-005b; AR15DS-008; AR15DS-010b; AR15DS-013; AR15DS-015; AR15DS-016; AR15DS-018; AR15DS-021; AR15DS-045-S; AR15DS-052-S; AR17MR-18; AR17MR-37; AR17MR-38; AR17MR-48; AR17MR-49; Argentina; biogeochemistry; Bucket, plastic; Calculated; Carbon, organic, total; Carbon, organic/Nitrogen, total ratio; DATE/TIME; DEPTH, sediment/rock; Distance; El Colgado; Element analyser (EA); Element analyser isotope ratio mass spectrometer (EA-IRMS); Element analyzer coupled to an accelerator mass spectrometer (EA-AMS); Event label; Fraction modern carbon; Latitude of event; Longitude of event; meandering river; Median, grain size; Nitrogen, total; Nitrogen, total/Carbon, organic ratio; organic carbon (OC); Particle size analyser (Retsch/Horiba LA-950V2); PLV_LL11032018; Puerto lavalle; Reserva Natural Formosa; river sediment; RNF_LL12_3_18; RSF-RB confluence; Sample comment; Sample ID; Sample type; ST15-52; ST15-71; StRATEGy; StRATEGy international research training group; SZ_LL12_3_18; Villa Rio Bermejito; WB; δ13C, organic carbon
    Type: Dataset
    Format: text/tab-separated-values, 222 data points
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  • 10
    Publication Date: 2023-06-21
    Description: These data were collected from the Río Bermejo in northern Argentina. To determine the seasonal variability in the particulate organic carbon composition of exported river sediment, we collected weekly suspended sediment samples (March 2016 to March 2018) at the Puente Lavalle (PLV) monitoring site, ~870 river km downstream of the mountain front (-25.655°S, -60.130°W). Surface water samples were collected from a bridge using a river-rinsed bucket and were filtered through a 0.22 µm polyethersulfone membrane. Samples were stored on site at ambient temperatures for up to one year, transferred to Germany and subsequently stored at ~4°C until processing. Suspended sediment was rinsed from filters into pre-combusted glass evaporating dishes using ultra-pure (18.2 M) water, oven-dried at 40°C for 〉48 hr, and homogenized in an agate mortar without crushing. Geochemical and grain size analyses required 0.8 g sediment; for samples 〈0.8 g, we combined consecutive weekly samples to create a new bulk sample of 〉0.8 g (Table S1). We split sediment samples into aliquots for grain size analysis via laser diffraction and geochemical analyses. Sediment particle size distributions were measured on ~0.2 g aliquots using a laser diffraction particle size analyzer (Retsch/Horiba LA-950V2). Aliquots for geochemical analyses were ground to 〈63 µm. The homogenized suspended sediment, bedrock, soil and leaf litter aliquots were further split for total nitrogen measurement (TN, wt%) and organic carbon analyses including total organic carbon (TOC, wt%), stable carbon isotope composition (δ13COC), and radiocarbon fraction modern (Fm). We decarbonated the aliquots for POC measurements using a liquid HCl leach following Galy et al., (2007). TOC and TN measurements were split between facilities at the German Research Centre for Geosciences (GFZ), Durham University, and University of Nevada Reno (UNR) using an elemental analyzer (EA). δ13COC was measured with a coupled EA-isotope ratio mass spectrometer (EA-IRMS). All isotopic compositions are reported using standard delta (δ) notation in per mil (‰) relative to Vienna PeeDee Belemnite (VPDB). Calibration and accuracy were monitored through analyses of in-house standards (Glutamic Acid, 40.82% C, 9.52% N at Durham; Boden3, HEKATECH at GFZ), which were calibrated against international standards (e.g., USGS 40, USGS 24, IAEA 600, IAEA CH3, IAEA CH7, IAEA N1, IAEA N2). Radiocarbon content was measured for a subset of 29 samples at ETH Zürich using a combined EA and accelerator mass spectrometer (EA-AMS) (Ruff et al. 2010; McIntyre et al., 2017). All 14C /12C ratios are reported as fraction modern (Fm, equivalent to F14C as defined by Reimer et al. (2004)) relative to 95% of the 14C activity of NBS Oxalic Acid II in 1950 (δ13COC = -17.8‰) and normalized to δ13COC = -25‰ of VPDB.\n\nThis geochemical dataset is supported by hydrologic measurements of daily water discharge at the El Colorado gauging station (river km 1086, SNIH, https://snih.hidricosargentina.gob.ar/) collected between 2016 and 2018.
    Keywords: biogeochemistry; Bucket, plastic; Calculated; Carbon, organic, total; Carbon, organic/Nitrogen, total ratio; DATE/TIME; Element analyser (EA); Element analyser isotope ratio mass spectrometer (EA-IRMS); Element analyzer coupled to an accelerator mass spectrometer (EA-AMS); Event label; Fraction modern carbon; Latitude of event; Longitude of event; meandering river; Median, grain size; Nitrogen, total; Nitrogen, total/Carbon, organic ratio; organic carbon (OC); Particle size analyser (Retsch/Horiba LA-950V2); PLV_01042016; PLV_01062016; PLV_01062017; PLV_01122017; PLV_02012018; PLV_02092016; PLV_02122016; PLV_04052017; PLV_06012017; PLV_06052016; PLV_06072016; PLV_06082016; PLV_07022018; PLV_07042017; PLV_07102016; PLV_08042016; PLV_08052017; PLV_08122016; PLV_09062017; PLV_09082017; PLV_09112017; PLV_10062016; PLV_11122017; PLV_12012018; PLV_12042016; PLV_12062017; PLV_12072016; PLV_12072017; PLV_12082016; PLV_13012017; PLV_14042017; PLV_14052016; PLV_16022018; PLV_16092016; PLV_16122016; PLV_17062016; PLV_18012017; PLV_18032016; PLV_19012018; PLV_19052017; PLV_19082016; PLV_20052016; PLV_20122017; PLV_21022018; PLV_21042017; PLV_22042016; PLV_22072016; PLV_23122016; PLV_24012018; PLV_24032016; PLV_24032017; PLV_24062016; PLV_24102016; PLV_24112016; PLV_26072017; PLV_26082016; PLV_27012017; PLV_27052016; PLV_27062016; PLV_28042017; PLV_28062017; PLV_28122017; PLV_29042016; PLV_29072016; PLV_29092017; PLV_30032017; PLV_30122016; PLV_31012018; PLV_31082017; Puerto lavalle; River discharge, daily; river sediment; Sample comment; Sample ID; Sampling date; Season; StRATEGy; StRATEGy international research training group; WB; δ13C, organic carbon
    Type: Dataset
    Format: text/tab-separated-values, 696 data points
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