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  • 1
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    PANGAEA
    In:  Supplement to: Blanchet, Cécile L; Frank, Martin; Schouten, Stefan (2014): Asynchronous changes in vegetation, runoff and erosion in the Nile River watershed during the Holocene. PLoS ONE, 9, https://doi.org/10.1371/journal.pone.0115958
    Publication Date: 2023-01-13
    Description: The termination of the African Humid Period in northeastern Africa during the early Holocene was marked by the southward migration of the rain belt and the disappearance of the Green Sahara. This interval of drastic environmental changes was also marked by the initiation of food production by North African huntergatherer populations and thus provides critical information on human-environment relationships. However, existing records of regional climatic and environmental changes exhibit large differences in timing and modes of the wet/dry transition at the end of the African Humid Period. Here we present independent records of changes in river runoff, vegetation and erosion in the Nile River watershed during the Holocene obtained from a unique sedimentary sequence on the Nile River fan using organic and inorganic proxy data. This high-resolution reconstruction allows to examine the phase relationship between the changes of these three parameters and provides a detailed picture of the environmental conditions during the Paleolithic/Neolithic transition. The data show that river runoff decreased gradually during the wet/arid transition at the end of the AHP whereas rapid shifts of vegetation and erosion occurred earlier between 8.7 and about 6 ka BP. These asynchronous changes are compared to other regional records and provide new insights into the threshold responses of the environment to climatic changes. Our record demonstrates that the degradation of the environment in northeastern Africa was more abrupt and occurred earlier than previously thought and may have accelerated the process of domestication in order to secure sustainable food resources for the Neolithic African populations.
    Type: Dataset
    Format: application/zip, 7 datasets
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  • 2
    Publication Date: 2023-01-13
    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: deoxygenation; Geochemistry; Nile River; Sapropel S1
    Type: Dataset
    Format: application/zip, 6 datasets
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  • 3
    Publication Date: 2023-03-03
    Keywords: Age model; DEPTH, sediment/rock; GC; Gravity corer; Mediterranean Sea; Neodymium-143/Neodymium-144 ratio; Neodymium-143/Neodymium-144 ratio, error; POS362/2; POS362-2_33; Poseidon; Strontium-87/Strontium-86 ratio; Strontium-87/Strontium-86 ratio, error; ε-Neodymium
    Type: Dataset
    Format: text/tab-separated-values, 142 data points
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  • 4
    Publication Date: 2023-03-03
    Keywords: Age model; DEPTH, sediment/rock; GC; Gravity corer; Mediterranean Sea; Neodymium-143/Neodymium-144 ratio; Neodymium-143/Neodymium-144 ratio, error; POS362/2; POS362-2_33; Poseidon; Strontium-87/Strontium-86 ratio; Strontium-87/Strontium-86 ratio, error; ε-Neodymium
    Type: Dataset
    Format: text/tab-separated-values, 183 data points
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  • 5
    Publication Date: 2023-03-03
    Keywords: Age model; DEPTH, sediment/rock; GC; Gravity corer; Mediterranean Sea; Neodymium-143/Neodymium-144 ratio; Neodymium-143/Neodymium-144 ratio, error; POS362/2; POS362-2_33; Poseidon; Strontium-87/Strontium-86 ratio; Strontium-87/Strontium-86 ratio, error; ε-Neodymium
    Type: Dataset
    Format: text/tab-separated-values, 12 data points
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  • 6
    Publication Date: 2023-03-03
    Keywords: Age model; C4 plant; DEPTH, sediment/rock; GC; Gravity corer; Mediterranean Sea; POS362/2; POS362-2_33; Poseidon; Standard deviation; δ13C, n-alkanes
    Type: Dataset
    Format: text/tab-separated-values, 164 data points
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  • 7
    Publication Date: 2023-03-03
    Keywords: Age model; DEPTH, sediment/rock; GC; Gravity corer; Mediterranean Sea; POS362/2; POS362-2_33; Poseidon; Sea surface temperature; δ18O; δ18O, ice volume effect; δ18O, water
    Type: Dataset
    Format: text/tab-separated-values, 1032 data points
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  • 8
    Publication Date: 2023-03-03
    Keywords: Age model; DEPTH, sediment/rock; GC; Gravity corer; Mediterranean Sea; POS362/2; POS362-2_33; Poseidon; Sea surface temperature
    Type: Dataset
    Format: text/tab-separated-values, 78 data points
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  • 9
    Publication Date: 2023-03-03
    Keywords: Acyclic glycerol dialkyl glycerol tetraether; Acyclic glycerol dialkyl glycerol tetraether, flux; Age model; Branched and isoprenoid tetraether index; Branched and isoprenoid tetraether index, standard deviation; Branched glycerol dialkyl glycerol tetraether; Branched glycerol dialkyl glycerol tetraether, flux; Branched glycerol dialkyl glycerol tetraether, standard deviation; Crenarchaeol; Crenarchaeol, flux; DEPTH, sediment/rock; GC; Gravity corer; Mediterranean Sea; POS362/2; POS362-2_33; Poseidon; Standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 492 data points
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  • 10
    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: AGE; Age, error; deoxygenation; DEPTH, sediment/rock; GC; Geochemistry; Gravity corer; log-ratio; Nile River; POS362/2; POS362-2_99; Poseidon; Sapropel S1; Score
    Type: Dataset
    Format: text/tab-separated-values, 2860 data points
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