Tab. 1: Mineralogical composition and chemical analyses of major and trace elements of Ameghino Formation rocks

Scasso, R A;Grunenberg, Thomas;Bausch, W M

Description

As a result of a petrographical, mineralogical and geochemical characterization of the Ameghino Formation mudstones (Upper Jurassic- Lower Cretaceous, Antarctic Peninsula), "epiclastic" radiolaria-rich and mixed (radiolaria-rich + tuff) mudstone types were recognized. Contents of clastic material in the mudstones generally increase with younger paleontological age, but local exceptions to this trend have been found. The anoxic environment of the lower part of the sequence changes to more oxidizing conditions towards the top, in transition to the Hauterivian - Barrêmian conglomerates. Element to element correlations show good agreement with the normal differentiation trends of volcanic (andesite-rhyolite) rocks, suggesting that the overall sequence is mainly volcanic in origin with various grade of reworking. For example, the radiolaria-rich mudstone matrix could have been originated from very fine touffaceous suspensions deposited very slowly after the main fall of the tuffs. However, in the upper part of the sequence, some epiclastic supply is revealed by petrographic evidence and illite crystallinity index. The clay mineral association (illite, chlorite and illite-smectite mixed layers) is mainly of diagenetic origin in the stratigraphically lower sections. Low percentages of expandable layers in the illite-smectite mixed layers, as well as the general mineralogical association, suggest a late mesodiagenetic stage, and together with geological evidence, a relatively deep burial (> 1000 m - probably > 2500 m) and temperatures exceeding 100°C.

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Metrics

Dataset Index

0.5

FAIR Score

94%

Citations

0

Mentions

0

Metrics Over Time

Publication Details

DOI

Publisher

PANGAEA

License

Creative Commons Attribution 3.0 Unported

Assigned Domain

Subfield

Artificial Intelligence

Field

Computer Science

Domain

Physical Sciences

Confidence Score

80%

Source

Open Alex

Keywords

Sample code/labelSample IDQuartzPlagioclaseFeldsparPyriteCalciteSmectiteIlliteChloriteMineralsLithology/composition/faciesSilicon dioxideAluminium oxideIron oxide, Fe2O3Manganese oxideMagnesium oxideCalcium oxideSodium oxidePotassium oxideTitanium dioxidePhosphorus pentoxideSulfur, totalRubidiumStrontiumZincZirconiumGeological sample

Normalization Factors

FT

57.69

CTw

1.00

MTw

1.00