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  • PANGAEA  (10)
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  • 1
    Publication Date: 2023-01-30
    Description: This study presents the physical oceanography analysis in the NE Aegean Sea. Stations were located along a north-south transect in the area receiving the inflowing surface Black Sea Water (BSW) over the deeper Levantine Water (LW) layer. 6 different sample depths were sampled.
    Keywords: Aegaeo_2013-10_AMT-2; Aegaeo_2013-10_AMT-3; Aegaeo_2013-10_AMT-6; Aegaeo_2013-10_AMT-7; Aegaeo_2014-03_AMT-2; Aegaeo_2014-03_AMT-3; Aegaeo_2014-03_AMT-6; Aegaeo_2014-03_AMT-7; Aegaeo_2014-07_AMT-2; Aegaeo_2014-07_AMT-3; Aegaeo_2014-07_AMT-6; Aegaeo_2014-07_AMT-7; Aegean Sea; Black Sea; Chlorophyll a; Coccolithophores Abundance; CTD; CTD/Rosette; CTD-RO; DATE/TIME; DEPTH, water; diversity; Event label; Latitude of event; Longitude of event; Nitrate; Nitrite; Oxygen, dissolved; Phosphate; Salinity; Station label; Temperature, water; water masses
    Type: Dataset
    Format: text/tab-separated-values, 569 data points
    Location Call Number Expected Availability
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  • 2
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    PANGAEA
    In:  Supplement to: Athanasiou, Maria; Bouloubassi, Ioanna; Gogou, Alexandra; Klein, Vincent; Dimiza, Margarita D; Parinos, Constantine; Skampa, Elisavet; Triantaphyllou, Maria (2017): Sea surface temperatures and environmental conditions during the “warm Pliocene” interval (~ 4.1–3.2 Ma) in the Eastern Mediterranean (Cyprus). Global and Planetary Change, 150, 46-57, https://doi.org/10.1016/j.gloplacha.2017.01.008
    Publication Date: 2023-01-30
    Description: Organic geochemical (alkenones) and micropaleontological (nannofossil) data from the Pissouri South section (PPS) in the island of Cyprus provided a detailed description of the paleoclimatic (sea surface temperature- SST) and paleoenvironmental conditions during the "warm Pliocene" (c. 4.1-3.25Ma) in the EasternMediterranean. We found that the suite of sapropel events recorded in the studied interval took place under conditions of increased SST, enhanced water column stratification and development of a productive deep chlorophyll maximum (DCM), as witnessed by the dominance of Florisphaera profunda species. Such conditions are similar to those prevailing during Quaternary sapropel formation, triggered by freshwater discharges from the N. African margin due to insolation-driven intensification of the African monsoon. The absence of F. profunda in Pliocene sapropels fromcentralMediterranean records highlights the sensitive response of the eastern basin to freshwater perturbations. Comparisons between alkenone and calcareous nannofossil assemblage patterns infer Pseudoemiliania lacunosa as the main alkenone producer in sapropel layers; yet Reticulofenestra spp. contribution cannot be ruled out. The first Pliocene alkenone-SST record in the E. Mediterranean presented here documents the "warm Pliocene" period (~4.1-3.25 Ma) characterized by mean SST of c. 26 °C. Distinct SST minima at ~3.9 Ma, 3.58 Ma and between 3.34 and 3.31 Ma, correspond to the MIS Gi16, MIS MG12 and MIS M2 global cooling episodes, before the onset of the Northern Hemisphere glaciation. Our findings imply that the peak of the MIS M2 cooling in the Eastern Mediterranean may be up to ~40 kyrs older than the age attributed before to benthic stable oxygen isotopes records of this event.
    Keywords: AGE; Alkenone, unsaturation index UK'37; alkenone SST; Calculated from UK'37 (Müller et al, 1998); Core; CORE; Cyprus; Height; Sample ID; Sea surface temperature
    Type: Dataset
    Format: text/tab-separated-values, 260 data points
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  • 3
    Publication Date: 2023-07-10
    Description: This study presents the species composition of living coccolithophore communities in the NE Aegean Sea. 72 water samples from 4 different sampling stations were investigated. Stations were located along a north-south transect in the area receiving the inflowing surface Black Sea Water (BSW) over the deeper Levantine Water (LW) layer. 6 different sample depths were sampled. Coccolithophores in the area were diverse and a total of 95 species over 3 sampling periods were recognized using Scanning Electron Microscope (SEM) techniques.
    Keywords: Acanthoica acanthifera; Acanthoica quattrospina; Aegaeo_2013-10_AMT-2; Aegaeo_2013-10_AMT-3; Aegaeo_2013-10_AMT-6; Aegaeo_2013-10_AMT-7; Aegaeo_2014-03_AMT-2; Aegaeo_2014-03_AMT-3; Aegaeo_2014-03_AMT-6; Aegaeo_2014-03_AMT-7; Aegaeo_2014-07_AMT-2; Aegaeo_2014-07_AMT-3; Aegaeo_2014-07_AMT-6; Aegaeo_2014-07_AMT-7; Aegean Sea; Algirosphaera cucullata; Algirosphaera robusta; Alisphaera gaudii; Alisphaera unicornis; Anacanthoica acanthos; Black Sea; Calcidiscus leptoporus; Calcidiscus quadriperforatus; Calciosolenia brasiliensis; Calciosolenia murrayi; Calicasphaera concava; Calyptrolithina divergens; Calyptrolithina multipora; Canistrolithus sp.; Coccolithophores Abundance; Corisphaera gracilis; Corisphaera sp.; Corisphaera strigilis; Corisphaera tyrrheniensis; CTD/Rosette; CTD-RO; Cyrtosphaera aculeata; Cyrtosphaera lecaliae; DEPTH, water; Discosphaera tubifera; diversity; Emiliania huxleyi; Event label; Florisphaera profunda; Gephyrocapsa ericsonii; Gephyrocapsa oceanica; Gladiolithus flabellatus; Gliscolithus amitakareniae; Helicosphaera carteri; Helicosphaera pavimentum; Helladosphaera cornifera; Heterococcolithophores; Holococcolithophora adenensis; Holococcolithophora dentata; Holococcolithophora dermitzakii; Holococcolithophora heimdaliae; Holococcolithophora sphaeroidea; Holococcolithophora youngii; Holococcolithophore spp.; Homozygosphaera spinosa; Homozygosphaera triarcha; Homozygosphaera vercelli; Hymenomonas spp.; Latitude of event; Longitude of event; Michaelsarsia adriaticus; Observation; Ophiaster hydroideus; Palusphaera vandelii; Polycrater galapagensis; Pontosphaera syracusana; Poricalyptra aurisinae; Poricalyptra gaarderae; Poricalyptra isselii; Rhabdosphaera clavigera; Rhabdosphaera xiphos; Scanning electron microscope (SEM); Station label; Syracolithus bicorius; Syracolithus dalmaticus; Syracosphaera amoena; Syracosphaera ampliora; Syracosphaera anthos; Syracosphaera arethusae; Syracosphaera borealis; Syracosphaera corolla; Syracosphaera dilatata; Syracosphaera epigrosa; Syracosphaera halldalii; Syracosphaera histrica; Syracosphaera marginoporata; Syracosphaera mediterranea; Syracosphaera molischii; Syracosphaera nana; Syracosphaera nodosa; Syracosphaera ossa; Syracosphaera prolongata; Syracosphaera protrudens; Syracosphaera pulchra; Syracosphaera rotula; Syracosphaera spp.; Syracosphaera squamigera; Syracosphaera tumularis; Umbellosphaera tenuis; Umbilicosphaera hulburtiana; Umbilicosphaera sibogae; water masses
    Type: Dataset
    Format: text/tab-separated-values, 7200 data points
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  • 4
    Publication Date: 2023-11-25
    Description: Coccolithophores are globally important marine calcifying phytoplankton. They contribute to the organic carbon pump through the primary production and the ballast of organic matter, and to the carbonate pump through the production of calcium carbonate. Here we compiled all available scanning electron microscopy (SEM) coccolithophore abundance observations. Taxa were standardized following NannoTax3 to a species level where possible. Subspecies (e.a. C. leptoporus subsp. leptoporus and C. leptoporus subsp. quadriperforatus) were grouped as single species. The database contains 2556 abundance observations from 35 different publications. The data span the period of 1993-2017, with observations from all ocean basins and all seasons, and at depths ranging from the surface to 5000 m. We limited our compilation to SEM observations (or observations which further identified samples with SEM) because SEM provides greater detail of coccolithophore diversity than more commonly used polarized light microscopy. Although this limits the number of observations, this allows for a more in-depth analysis of coccolithophore ecology, such as the ecological significance of the coccolithophore life cycle.
    Keywords: Acanthoica acanthifera; Acanthoica acanthos; Acanthoica biscayensis; Acanthoica maxima; Acanthoica quattrospina; Acanthoica spp.; Algirosphaera cucullata; Algirosphaera robusta; Algirosphaera spp.; Alisphaera capulata; Alisphaera extenta; Alisphaera gaudii; Alisphaera ordinata; Alisphaera pinnigera; Alisphaera quadrilatera; Alisphaera spp.; Alisphaera unicornis; Anthosphaera lafourcadii; Anthosphaera periperforata; Anthosphaera spp.; Balaniger virgulosa; Braarudosphaera bigelowii; Calcidiscus leptoporus; Calcidiscus spp.; Calciopappus caudatus; Calciopappus spp.; Calciosolenia brasiliensis; Calciosoleniaceae spp.; Calciosolenia murrayi; Calciosolenia spp.; Calicasphaera blokii; Calicasphaera concava; Calicasphaera diconstricta; Calyptrolithina multipora; Calyptrosphaera cialdii; Calyptrosphaera dentata; Calyptrosphaera heimdalae; Calyptrosphaera sphaeroidea; Canistrolithus spp.; Canistrolithus valliformis; Ceratolithus cristatus; Ceratolithus spp.; Chrysotila carterae; Chrysotila roscoffensis; Coccoliths, other; Coccolithus pelagicus; Corisphaera gracilis; Corisphaera spp.; Corisphaera tyrrheniensis; Coronosphaera maxima; Coronosphaera mediterranea; Coronosphaera spp.; Cyrtosphaera aculeata; Cyrtosphaera cidaris; Cyrtosphaera spp.; DATE/TIME; DEPTH, water; Discosphaera tubifera; Emiliania huxleyi; Ericiolus sp.; Florisphaera profunda; Flosculosphaera calceolariopsis; Formonsella pyramidosa; Gephyrocapsa ericsonii; Gephyrocapsa muellerae; Gephyrocapsa oceanica; Gephyrocapsa ornata; Gephyrocapsa spp.; Gladiolithus flabellatus; Gliscolithus amitakareniae; Hayaster perplexus; Helicosphaera carteri; Helicosphaera cornifera; Helicosphaera hyalina; Helicosphaera pavimentum; Helicosphaera spp.; Helicosphaera wallichii; Helladosphaera cornifera; Helladosphaera pienaarii; Helladosphaera vavilovii; Heterococcolithophores; Holococcolithophora kastriensis; Holococcolithophore spp.; Homozygosphaera spinosa; Homozygosphaera spp.; Homozygosphaera triarcha; Homozygosphaera vercelli; Hughesius youngii; Hymenomonas lacuna; Hymenomonas roseola; Hymenomonas spp.; Jomonlithus spp.; LATITUDE; LONGITUDE; Michaelsarsia adriaticus; Michaelsarsia elegans; Michaelsarsia spp.; Ochrosphaera neapolitana; Oolithotus antillarum; Oolithotus fragilis; Oolithotus spp.; Ophiaster formosus; Ophiaster hydroideus; Ophiaster minimus; Ophiaster reductus; Ophiaster spp.; Palusphaera sp.; Palusphaera spp.; Palusphaera vandelii; Pappomonas borealis; Pappomonas flabellifera; Pappomonas sp.; Pappomonas spp.; Papposphaera arctica; Papposphaera lepida; Papposphaera sagittifera; Papposphaera sp.; Papposphaera spp.; Papposphaera thomsenii; Picarola margalefii; Placorhombus ziveriae; Polycrater sp.; Polycrater spp.; Pontosphaera discopora; Pontosphaera japonica; Pontosphaera multipora; Pontosphaera spp.; Pontosphaera syracusana; Poricalyptra aurisinae; Poricalyptra isselii; Poricalyptra magnaghii; Poritectolithus maximus; Poritectolithus poritectum; Pseudowigwamma scenozonion; Reference/source; Reticulofenestra parvula; Reticulofenestra sessilis; Reticulofenestra spp.; Rhabdosphaera clavigera; Rhabdosphaera spp.; Rhabdosphaera xiphos; Sample method; Scyphosphaera apsteinii; Scyphosphaera spp.; see sample method; Solisphaera helianthiformis; Solisphaera spp.; Sphaerocalyptra adenensis; Sphaerocalyptra dermitzakii; Sphaerocalyptra quadridentata; Sphaerocalyptra sp.; Sphaerocalyptra spp.; Syracolithus bicorium; Syracolithus quadriperforatus; Syracolithus schilleri; Syracolithus sp.; Syracolithus spp.; Syracosphaera amoena; Syracosphaera ampliora; Syracosphaera anthos; Syracosphaera arethusae; Syracosphaera bannockii; Syracosphaera borealis; Syracosphaera castellata; Syracosphaera corolla; Syracosphaera delicata; Syracosphaera dilatata; Syracosphaera epigrosa; Syracosphaera exigua; Syracosphaera florida; Syracosphaera gaarderae; Syracosphaera halldalii; Syracosphaera hastata; Syracosphaera histrica; Syracosphaera lamina; Syracosphaera leptolepis; Syracosphaera marginiporata; Syracosphaera molischii; Syracosphaera nana; Syracosphaera nodosa; Syracosphaera noroitica; Syracosphaera orbiculus; Syracosphaera ossa; Syracosphaera prolongata; Syracosphaera protrudens; Syracosphaera pulchra; Syracosphaera reniformis; Syracosphaera rotula; Syracosphaera sp.; Syracosphaera spp.; Syracosphaera squamosa; Syracosphaera strigilis; Syracosphaera tumularis; Tergestiella adriatica; Tetralithoides quadrilaminata; Turrilithus latericioides; Turrisphaera spp.; Umbellosphaera irregularis; Umbellosphaera spp.; Umbellosphaera tenuis; Umbilicosphaera anulus; Umbilicosphaera foliosa; Umbilicosphaera hulburtiana; Umbilicosphaera sibogae; Umbilicosphaera spp.; Wigwamma antarctica; Wigwamma spp.; Wigwamma triradiata; Zygosphaera amoena; Zygosphaera marsilii
    Type: Dataset
    Format: text/tab-separated-values, 685008 data points
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  • 5
    Publication Date: 2024-03-25
    Keywords: Age; AGE; Braarudosphaera spp.; Coccoliths, warm; DEPTH, sediment/rock; Eastern Mediterranean Sea; Emiliania huxleyi; Florisphaera profunda; Helicosphaera spp.; MEDECOS_II_M2; MUC; MultiCorer
    Type: Dataset
    Format: text/tab-separated-values, 558 data points
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  • 6
    Publication Date: 2024-03-25
    Keywords: Age; AGE; DEPTH, sediment/rock; Eastern Mediterranean Sea; Index; MEDECOS_II_M2; MUC; MultiCorer; Sea surface temperature, annual mean
    Type: Dataset
    Format: text/tab-separated-values, 417 data points
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  • 7
    Publication Date: 2024-03-25
    Keywords: Age; Age, 14C AMS; Age, 14C calibrated; Age, dated; Age, dated material; Age, dated standard deviation; Age, error; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Eastern Mediterranean Sea; MEDECOS_II_M2; MUC; MultiCorer
    Type: Dataset
    Format: text/tab-separated-values, 44 data points
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  • 8
    Publication Date: 2024-03-25
    Keywords: Age; AGE; Carbon, organic, total; Carbon Preference Index, n-Alkanes; Carbon Preference Index, n-Alkanols; DEPTH, sediment/rock; Eastern Mediterranean Sea; Long-chain n-alkanes, C27+C29+C31, per unit mass total organic carbon; MEDECOS_II_M2; MUC; MultiCorer; n-Alkanol long chain alcohols C26+C28+C30, per unit mass total organic carbon; Sum lipid biomarkers, per unit mass total organic carbon; δ13C, organic carbon
    Type: Dataset
    Format: text/tab-separated-values, 765 data points
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  • 9
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    Unknown
    PANGAEA
    In:  Supplement to: Gogou, Alexandra; Triantaphyllou, Maria; Xoplaki, Elena; Izdebski, Adam; Parinos, Constantine; Dimiza, Margarita D; Bouloubassi, Ioanna; Luterbacher, Jürg; Kouli, Katerina; Martrat, Belén; Toreti, Andrea; Fleitmann, Dominik; Rousakis, Gregory; Kaberi, Helen; Athanasiou, Maria; Lykousis, Vasilios (2016): Climate variability and socio-environmental changes in the northern Aegean (NE Mediterranean) during the last 1500 years. Quaternary Science Reviews, 136, 209-228, https://doi.org/10.1016/j.quascirev.2016.01.009
    Publication Date: 2024-03-25
    Description: We provide new evidence on sea surface temperature (SST) variations and paleoceanographic/paleoenvironmental changes over the past 1500 years for the north Aegean Sea (NE Mediterranean). The reconstructions are based on multiproxy analyses, obtained from the high resolution (decadal to multi-decadal) marine record M2 retrieved from the Athos basin. Reconstructed SSTs show an increase from ca. 850 to 950 AD and from ca. 1100 to 1300 AD. A cooling phase of almost 1.5 °C is observed from ca. 1600 AD to 1700 AD. This seems to have been the starting point of a continuous SST warming trend until the end of the reconstructed period, interrupted by two prominent cooling events at 1832 ± 15 AD and 1995 ± 1 AD. Application of an adaptive Kernel smoothing suggests that the current warming in the reconstructed SSTs of the north Aegean might be unprecedented in the context of the past 1500 years. Internal variability in atmospheric/oceanic circulations systems as well as external forcing as solar radiation and volcanic activity could have affected temperature variations in the north Aegean Sea over the past 1500 years. The marked temperature drop of approximately ~2 °C at 1832 ± 15 yr AD could be related to the 1809 AD 'unknown' and the 1815 AD Tambora volcanic eruptions. Paleoenvironmental proxy-indices of the M2 record show enhanced riverine/continental inputs in the northern Aegean after ca. 1450 AD. The paleoclimatic evidence derived from the M2 record is combined with a socio-environmental study of the history of the north Aegean region. We show that the cultivation of temperature-sensitive crops, i.e. walnut, vine and olive, co-occurred with stable and warmer temperatures, while its end coincided with a significant episode of cooler temperatures. Periods of agricultural growth in Macedonia coincide with periods of warmer and more stable SSTs, but further exploration is required in order to identify the causal links behind the observed phenomena. The Black Death likely caused major changes in agricultural activity in the north Aegean region, as reflected in the pollen data from land sites of Macedonia and the M2 proxy-reconstructions. Finally, we conclude that the early modern peaks in mountain vegetation in the Rhodope and Macedonia highlands, visible also in the M2 record, were very likely climate-driven.
    Keywords: Eastern Mediterranean Sea; MEDECOS_II_M2; MUC; MultiCorer
    Type: Dataset
    Format: application/zip, 5 datasets
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  • 10
    Publication Date: 2024-03-25
    Keywords: -; Age; AGE; Eastern Mediterranean Sea; Index; MEDECOS_II_M2; MUC; MultiCorer; Pinus; Pollen; Quercus
    Type: Dataset
    Format: text/tab-separated-values, 481 data points
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