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Geochemical and Organic Petrological Characteristics of the Bituminous Carbonate Succession (Upper Cretaceous Shu'ayb Formation) in Northern Jordan: Implications for Organic Matter Input and Paleosalinity, Paleoredox, and Paleoclimatic Conditions

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Journal ACS Omega
Specialty Chemistry
Date 2024 Jul 1
PMID 38947829
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Abstract

Bituminous carbonate rocks of the Upper Cretaceous Shu'ayb Formation from the Ajloun outcrop in Northern Jordan were geochemically and petrologically analyzed in this study. This study integrates kerogen microscopy results with geochemical results (i.e., biomarker, stable carbon isotope, and major elemental compositions) to understand the organic matter (OM) inputs and to reveal the dispositional setting and its effect on the occurrence of OM. The Shu'ayb bituminous carbonate rocks have high total organic carbon (TOC) and sulfur (S) contents, with average values of 12.3 and 4.59 wt %, respectively, indicating redox conditions during their precipitation. The high abundance of alginite (i.e., ) in the Shu'ayb bituminous carbonate sediments is a further evidence for redox conditions. The finding of mainly marine-derived OM was also demonstrated by the biomarker distribution and carbon isotope composition. The biomarkers are represented by a narrow Pr/Ph ratio of up to 0.97, abundance of tricyclic terpanes, and high C regular sterane, indicating that the OM was primarily derived from phytoplankton algae, along with small amounts of land plant-derived materials, and were accumulated under reducing conditions. The studied Shu'ayb bituminous carbonate facies is composed of mainly calcium (CaO; average, 45.10 wt %), with significant amounts of silicon (SiO; avg., 9.35 wt %), aluminum (AlO; avg., 6.91 wt %), and phosphorus (PO; avg., 1.47 wt %) and low amounts of iron (FeO) and titanium (TiO) of less than 1 wt %, indicating that the detrital influx was low in an open water depth system with higher primary bioproductivity. The geochemical proxy suggests that the Shu'ayb bituminous carbonate facies was established in a saline water environment, with Ca/Ca + Fe and S/TOC values of more than 0.9 and 0.50, respectively, which could be attributed to the increase in reducing conditions of the water column. The chemical index of alteration values of more than 0.8 also indicate that the Shu'ayb bituminous carbonate facies formed during warm and humid climatic conditions, thereby resulting in intense subaerial weathering.

References
1.
Sinninghe Damste J, Kenig F, Koopmans M, Koster J, Schouten S, Hayes J . Evidence for gammacerane as an indicator of water column stratification. Geochim Cosmochim Acta. 1995; 59(9):1895-900. DOI: 10.1016/0016-7037(95)00073-9. View

2.
Beckmann B, Flogel S, Hofmann P, Schulz M, Wagner T . Orbital forcing of Cretaceous river discharge in tropical Africa and ocean response. Nature. 2005; 437(7056):241-4. DOI: 10.1038/nature03976. View

3.
Kennedy M, Wagner T . Clay mineral continental amplifier for marine carbon sequestration in a greenhouse ocean. Proc Natl Acad Sci U S A. 2011; 108(24):9776-81. PMC: 3116409. DOI: 10.1073/pnas.1018670108. View

4.
Alqudah M, Al Alaween M, Fermor A, Ali E, Wagner T, Alhakimi M . Impact of Thermal Maturation of the Upper Cretaceous Bituminous Limestone of Attarat Um Ghudran Central Jordan on Calcareous Nannofossil Preservation. ACS Omega. 2023; 8(42):39830-39846. PMC: 10601442. DOI: 10.1021/acsomega.3c06033. View