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April 1, 2026Minerals0 citationsOpen Access

Deciphering Middle–Late Eocene Paleoenvironmental Conditions Using Geochemical Trends: Insights from the Beni Suef Area, Northeastern Desert, Egypt

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MSMostafa M. SayedMWMichael WagreichPHPetra Heinz

Key Points

  • This study aims to reconstruct Middle–Late Eocene paleoenvironmental conditions through geochemical analysis of sediments.
  • Conducted geochemical analyses of sediment samples from the Beni Suef and Maadi Formations.
  • Evaluated detrital proxies (Si/Al, Ti/Al, Zr/Al) to assess sediment influx.
  • Analyzed paleoclimate indicators (Sr/Ba, Rb/Sr) to identify climatic shifts.
  • Used paleosalinity proxies (Ca/Al, Mg/Al) to evaluate marine influences and freshwater input.
  • Assessed primary productivity using geochemical proxies such as P/Al and Ni/Al.
  • Indicated a shift from humid to arid climatic conditions during late Eocene.
  • Showed increased terrigenous sediment influx in certain members of the Beni Suef Formation.
  • Highlighted episodic intensification of open-marine influence based on paleosalinity proxies.
  • Revealed generally low primary productivity with some intervals of enhanced productivity.

Abstract

The reconstruction of detrital flux, paleoclimate, paleosalinity, paleo-primary productivity, paleohydrodynamic conditions, and paleo-water depth enhances understanding of sedimentary processes and their drivers during deep-time greenhouse-icehouse transitions, such as the Eocene–Oligocene transition. This study uses detailed geochemical analyses of major oxides and trace elements in sediment samples collected from the Beni Suef Formation (Bartonian–Priabonian) and the Maadi Formation (Priabonian) in the southern Tethys shelf (Egypt, northeastern Desert). Detrital proxies, including Si/Al, Ti/Al, and Zr/Al, indicate an enhanced influx of terrigenous sediments in the middle portion of the Qurn Member of the Beni Suef Formation, as further supported by noticeable facies variations, particularly the transition from shale to coarser silt- and sand-sized fractions. Paleoclimate indicators (Sr/Ba, Rb/Sr, K2O/Al2O3, and Sr/Cu) point to a climatic shift from humid to arid conditions, consistent with the regional Late Eocene aridification across the Tethyan realm. Paleosalinity proxies (Sr/Ba, Ca/Al, and Mg/Al×100) suggest episodic intensification of open-marine influence and a reduction in freshwater input, with an upsection increase in Sr/Ba ratios, reflecting phases of enhanced marine water settings or decreased terrestrial runoff. Primary productivity was evaluated using multiple geochemical proxies, including P, Ni/Al, Cu/Al, P/Al, P/Ti, and Babio ratios. These collectively indicate generally low primary productivity interrupted by intervals of enhanced paleoproductivity or increased organic matter export to the sediments. This interpretation is further supported by the low total organic carbon (TOC) values. These results highlight the sensitivity of the southern Tethys shelf to Middle–Late Eocene climatic variability and the key role of prevailing paleoenvironmental conditions in controlling sediment supply, water chemistry, and biological productivity.

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Cite This Study

Sayed et al. (2026) studied this question.

synapsesocial.com/papers/69ccb5f716edfba7beb87a8chttps://doi.org/10.3390/min16040361
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