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  • Accumulation rate, alkenones; Accumulation rate, mass; AGE; Age, error; C37:2-, C37:3-Alkenone; Carbon Preference Index; Concentration; Density, wet bulk; deoxygenation; DEPTH, sediment/rock; GC; Geochemistry; Gravity corer; Linear sedimentation rate; Mass; Mediterranean Sea; Nile River; POS362/2; POS362-2_33; Poseidon; Sapropel S1; Standard deviation  (1)
  • Major ions  (1)
  • 2020-2024  (2)
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  • 2020-2024  (2)
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  • 1
    Publication Date: 2023-06-12
    Description: Abstract
    Description: The crystalline aquifer in Ghana’s Pra Basin provides water for over 4 million people as many rivers are polluted by artisanal mining. The aim of the data collection was to understand the origin, quality and chemical evolution of surface water and ground water in order to improve the sustainable management of the resource. Here, we present data on major ions, trace metals, stable oxygen (δ18O) and hydrogen (δ2H) isotope ratios of surface water and ground water and mineralogical composition of rock outcrops from the Pra Basin in Ghana. The field campaign took place in March 2020 (water sampling) and August 2021 (outcrop sampling). A total of 34 surface water and 56 ground water samples were collected from rivers, public boreholes (depth 〉30 m) and hand-dug wells (depth 〈 10 m), respectively. The water samples were analysed for cations and trace metals using the Inductively Coupled Plasma Optical Emission Spectrometry (ICP-OES). The anions were analysed using the Ion Chromatography (IC). For the stable oxygen (δ18O) and hydrogen (δ2H) isotope ratios, a Picarro L-2140i Ringdown Spectrometer was used. The bulk elemental composition of the rock samples was analysed by X-ray fluorescence (XRF). The mineralogic composition was determined by X-ray diffraction (XRD) while the Zeiss Axiophot petrographic microscope was used for the petrographic thin section analysis. The data generated from all measurements are provided in a .zip folder consisting of four subfolders. Each folder contains Excel files discussed in the file inventory section.
    Keywords: Birimian Supergroup ; Cape Coast granitoid ; Major ions ; Trace metals ; Stable isotopes ; X-ray fluorescence ; X-ray diffraction ; Petrographic thin section ; EARTH SCIENCE 〉 SOLID EARTH 〉 GEOCHEMISTRY 〉 GEOCHEMICAL PROCESSES 〉 MINERAL DISSOLUTION
    Type: Dataset , Dataset
    Location Call Number Expected Availability
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  • 2
    Publication Date: 2023-03-03
    Description: Ocean deoxygenation is a rising threat to marine ecosystems and food resources under present climate warming conditions. Organic-rich sapropel layers deposited in the Mediterranean Sea provide a natural laboratory to study the processes that have controlled the changes in seawater oxygen levels in the recent geological past. Our study is based on three sediment cores spanning the last 10 thousand years (10 kyr BP) and located on a bathymetric transect offshore the western distributaries of the Nile delta. These cores are partly to continuously laminated in the sections recording sapropel S1, which is indicative of bottom-water anoxia above the western Nile deep-sea fan. We used a combination of microfacies analyses and inorganic and organic geochemical measurements to reconstruct changes in oxygenation conditions at seasonal to millennial time-scales. The regular alternations of detrital, biogenic and chemogenic sublayers in the laminated sequences are interpreted in terms of seasonal changes. Our microfacies analyses reveal distinct summer floods and subsequent plankton blooms preceding the deposition of inorganic carbonates formed in the water-column during spring-early summer. The isotopic signature of these carbonates suggests year-round anoxic to euxinic bottom waters resulting in high levels of anaerobic remineralisation of organic matter and highlights their potential to reconstruct seawater chemistry at times when benthic fauna was absent. Synchronous changes in terrigenous input, primary productivity and past oxygenation dynamics on millennial time-scales obtained by our multi-proxy study show that runoff-driven eutrophication played a central role in driving rapid changes in oxygenation state of the entire Levantine Basin. Rapid fluctuations of oxygenation conditions in the upper 700 m water depth occurred above the Nile deep-sea fan between 10 and 6.5 ka BP while deeper cores recorded more stable anoxic conditions. These findings are further supported by other regional records and reveal time-transgressive changes in oxygenation state driven by rapid changes in primary productivity during a period of long-term deep-water stagnation.
    Keywords: Accumulation rate, alkenones; Accumulation rate, mass; AGE; Age, error; C37:2-, C37:3-Alkenone; Carbon Preference Index; Concentration; Density, wet bulk; deoxygenation; DEPTH, sediment/rock; GC; Geochemistry; Gravity corer; Linear sedimentation rate; Mass; Mediterranean Sea; Nile River; POS362/2; POS362-2_33; Poseidon; Sapropel S1; Standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 1232 data points
    Location Call Number Expected Availability
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