Distribution of late Neogene age calcareous nannofossils in ODP Hole 111-677A (Table 2)

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Main Author: Houghton, Simon D
Format: Dataset Open Access
Language:en
Published: PANGAEA 1989
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_version_ 1867169977698615296
author Houghton, Simon D
author_facet Houghton, Simon D
collection Datos científicos de ciencias marinas y ambientales
contents The calcareous nannofossil assemblages recovered from Site 677A range in age from latest Miocene (NN11) to latest Pleistocene. The consistently high sediment-accumulation rate (mean of 48 m/m.y.) coupled with little dissolution of carbonate has ensured that generally rich, well-preserved coccolith assemblages occur at this site. Exceptions are the Pliocene/Pleistocene boundary sediments, which show evidence of dissolution, and upper Miocene basement sediments, which show evidence of diagenetic overgrowths. The apparent paradox of the occurrence of large numbers of the cool-water species Coccolithus pelagicus together with subtropical and tropical nannofossil species is thought to represent increased seasonality in the degree of upwelling in the Panama Basin. Seasonal upwelling was particularly intense during the late Miocene, when common C. pelagicus occurred with Thalassionema diatoms. Populations of C. pelagicus probably bloomed during a winter period of upwelling that was associated with a shallow thermocline and depressed surface-water temperatures.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_745483
institution PANGAEA
language en
publishDate 1989
publisher PANGAEA
record_format pangaea
spellingShingle Distribution of late Neogene age calcareous nannofossils in ODP Hole 111-677A (Table 2)
Houghton, Simon D
111-677A; Amaurolithus amplificus; Amaurolithus delicatus; Amaurolithus primus; Amaurolithus tricorniculatus; Angulolithina arca; Calcidiscus leptoporus; Calcidiscus macintyrei; Ceratolithus acutus; Ceratolithus cristatus; Ceratolithus rugosus; Ceratolithus telesmus; Coccolithus pelagicus; Coccolithus streckeri; Dictyococcites antarcticus; Dictyococcites productus; Discoaster asymmetricus; Discoaster berggrenii; Discoaster brouweri; Discoaster intercalaris; Discoaster pentaradiatus; Discoaster pseudovariabilis; Discoaster quinqueramus; Discoaster stellulus; Discoaster surculus; Discoaster tamalis; Discoaster triradiatus; Discoaster variabilis; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Emiliania huxleyi; Epoch; Gephyrocapsa oceanica; Gephyrocapsa spp.; Helicosphaera carteri; Helicosphaera neogranulata; Helicosphaera sellii; Joides Resolution; Leg111; Nannofossil abundance; Nannofossils preservation; Nannofossil zone; Nannofossil Zone; Martini, 1971; Neosphaera coccolithomorpha; North Pacific Ocean; Ocean Drilling Program; ODP; Pontosphaera discopora; Pontosphaera japonica; Pontosphaera scutellum; Pseudoemiliania lacunosa; Reticulofenestra minuta; Reticulofenestra minutula; Reticulofenestra pseudoumbilicus; Rhabdosphaera clavigera; Sample code/label; Scyphosphaera globulata; Sphenaster metula; Sphenolithus abies; Sphenolithus neoabies; Thoracosphaera spp.; Umbellosphaera spp.; Umbilicosphaera sibogae
The calcareous nannofossil assemblages recovered from Site 677A range in age from latest Miocene (NN11) to latest Pleistocene. The consistently high sediment-accumulation rate (mean of 48 m/m.y.) coupled with little dissolution of carbonate has ensured that generally rich, well-preserved coccolith assemblages occur at this site. Exceptions are the Pliocene/Pleistocene boundary sediments, which show evidence of dissolution, and upper Miocene basement sediments, which show evidence of diagenetic overgrowths. The apparent paradox of the occurrence of large numbers of the cool-water species Coccolithus pelagicus together with subtropical and tropical nannofossil species is thought to represent increased seasonality in the degree of upwelling in the Panama Basin. Seasonal upwelling was particularly intense during the late Miocene, when common C. pelagicus occurred with Thalassionema diatoms. Populations of C. pelagicus probably bloomed during a winter period of upwelling that was associated with a shallow thermocline and depressed surface-water temperatures.
title Distribution of late Neogene age calcareous nannofossils in ODP Hole 111-677A (Table 2)
topic 111-677A; Amaurolithus amplificus; Amaurolithus delicatus; Amaurolithus primus; Amaurolithus tricorniculatus; Angulolithina arca; Calcidiscus leptoporus; Calcidiscus macintyrei; Ceratolithus acutus; Ceratolithus cristatus; Ceratolithus rugosus; Ceratolithus telesmus; Coccolithus pelagicus; Coccolithus streckeri; Dictyococcites antarcticus; Dictyococcites productus; Discoaster asymmetricus; Discoaster berggrenii; Discoaster brouweri; Discoaster intercalaris; Discoaster pentaradiatus; Discoaster pseudovariabilis; Discoaster quinqueramus; Discoaster stellulus; Discoaster surculus; Discoaster tamalis; Discoaster triradiatus; Discoaster variabilis; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Emiliania huxleyi; Epoch; Gephyrocapsa oceanica; Gephyrocapsa spp.; Helicosphaera carteri; Helicosphaera neogranulata; Helicosphaera sellii; Joides Resolution; Leg111; Nannofossil abundance; Nannofossils preservation; Nannofossil zone; Nannofossil Zone; Martini, 1971; Neosphaera coccolithomorpha; North Pacific Ocean; Ocean Drilling Program; ODP; Pontosphaera discopora; Pontosphaera japonica; Pontosphaera scutellum; Pseudoemiliania lacunosa; Reticulofenestra minuta; Reticulofenestra minutula; Reticulofenestra pseudoumbilicus; Rhabdosphaera clavigera; Sample code/label; Scyphosphaera globulata; Sphenaster metula; Sphenolithus abies; Sphenolithus neoabies; Thoracosphaera spp.; Umbellosphaera spp.; Umbilicosphaera sibogae
url https://doi.org/10.1594/PANGAEA.745483