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Journal ArticleDOI

Geochemical classification of terrigenous sands and shales from core or log data

Michael M. Herron
- 01 Sep 1988 - 
- Vol. 58, Iss: 5, pp 820-829
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TLDR
In this article, a means of relating geochemical concentrations to existing sandstone classification schemes is proposed based on three chemical parameters: the SiO2/Al2O3 ratio, the Fe 2O3/K2O ratio, and the Ca content.
Abstract
A means of relating geochemical concentrations to existing sandstone classification schemes is based on three chemical parameters: the SiO2/Al2O3 ratio, the Fe2O3/K2O ratio, and the Ca content. In terrigenous sands and shales, the SiO2/Al2O3 ratio separates Si-rich quartzarenites from Al-rich shales, with other sand types showing intermediate values. The ratio of total iron (as Fe2O3) to K2O separates lithic sands (litharenites and sublitharenites) from feldspathic sands (arkoses and subarkoses). In addition, very high Fe2O3/K2O ratios indicate Fe-rich shales (e.g., pyritic, sideritic, hematitic) or Fe-rich sands (e.g., gl uconitic) depending on the silica/alumina ratio. The Ca content is used to differentiate noncalcareous from calcareous sandstones and shales and to separate siliciclastic from carbonate rocks. Sandstones are classified the same by this scheme as by petrographic analysis about 84% of the time, and shales are effectively discriminated from sandstones. The requisite input data can be accurately supplied by geochemical well-logging measurements, enabling unbiased sandstone classification to be displayed on a continuous basis with depth.

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Journal ArticleDOI

Geochemistry of the sandstones of Punagarh basin: Implications for two source terranes and Arabian - Nubian connection of Aravalli craton?

TL;DR: In this article, the major and trace element contents of Sojat sandstones of the Trans Aravalli region, NW Indian shield were analyzed for their major element contents in conjunction with petrographic modes.
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Paleoenvironmental evolution of Central Paratethys Sea and Lake Pannon during the Cenozoic

TL;DR: In this paper, the authors focused on biotic and abiotic proxies discussed in terms of existing biostratigraphical, paleoenvironmental and sedimentological data, which helped to refine the knowledge about the changes in redox conditions, salinity, depositional system, and paleoclimate.
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Provenance analysis of the Permo-Carboniferous fluvial sandstones of the southern part of the Boskovice Basin and the Zöbing Area (Czech Republic, Austria): implications for paleogeographical reconstructions of the post-Variscan collapse basins

TL;DR: In this article, provenance analyses of Permo-Carboniferous sandstones of the southern part of the Boskovice Basin and the Zobing area are based on a wide spectrum of analytical techniques (petrography, heavy mineral assemblages, chemistry of garnet, rutile and spinel, zircon study, major and trace elements).
Journal ArticleDOI

Climatic and environmental conditions during the Pleistocene in the Central Qaidam Basin, NE Tibetan Plateau: Evidence from GDGTs, stable isotopes and major and trace elements of the Qigequan Formation

TL;DR: In this paper , the Qigequan Formation was used to decipher depositional conditions within the water column and the origin of kerogen, and the results showed that two completely different organic facies are present, representing vastly different lake environments.
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