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February 5, 2026The Depositional Record2 citationsOpen Access

An identity card for sabkha dolomite

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TBTomaso R. R. BontognaliZDZulfa Ali Al DisiMDMaria Dittrich

Key Points

  • This research aims to define the characteristics and formation conditions of dolomite in the Dohat Faishakh sabkha.
  • Conducted advanced techniques to analyze dolomite
  • Integrated new findings with previous data
  • Measured isotopic values and pore water characteristics
  • Assessed microbial diversity in dolomite layers
  • Dolomite shows a rhombohedral shape and 50.8 mol% Mg
  • Average annual subsurface temperature of 32.2°C
  • Pore water has an Mg/Ca ratio of 156 and salinity nine times that of seawater
  • Isotopic values: δ 13 C = 5.0‰, δ 18 O = 4.1‰, δ 26 Mg = −2.6‰ to −1.5‰
  • Microbial diversity mainly consists of Euryarchaeota

Abstract

Abstract The Dohat Faishakh sabkha in Qatar was among the first modern environments studied to understand low‐temperature dolomite formation in association with gypsum and other evaporites. Since the 1960s, research conducted in this sabkha has significantly influenced geological models that remain widely used today, helping in the interpretation of sedimentary sequences that dominated certain periods of Earth's history. Here, we present results of an investigation of the dolomite occurring in this sabkha using techniques more advanced than those available during the initial pioneering studies. By integrating our new results with previously published data, we establish an ‘identity card’ for this sabkha dolomite and the environment it forms. The dolomite exhibits a rhombohedral morphology, contains 50.8 mol% Mg, and has an ordering degree of 0.25 (poorly ordered). Isotopic values are approximately: δ 13 C = 5.0‰, δ 18 O = 4.1‰ and δ 26 Mg = −2.6‰ to −1.5‰ and Δ 47 = 0.611‰. Annual temperature data indicate an average of 32.2°C in the subsurface intervals with the highest dolomite content. The associated pore water has an Mg/Ca ratio of 156, a salinity roughly nine times that of sea water and a pH of 6.9. Sediment total organic carbon is ~2%. Microbial diversity in the dolomite‐bearing layers is dominated by Euryarchaeota—an extremophilic, opportunistic and metabolically versatile archaeal phylum. Together, these data provide a reference for identifying sabkha‐type dolomites in the geological record, calibrating paleoclimatic proxies and interpreting biomarker signals that may be recorded in ancient dolomites.

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Cite This Study

Bontognali et al. (2026) studied this question.

synapsesocial.com/papers/698436a5f1d9ada3c1fb5abahttps://doi.org/10.1002/dep2.70049
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Mg isotope fractionation during microbial dolomite formation in the Khor Al‐Adaid sabkha, Qatar2026
  2. 2Two‐Stage Dolomite Formation in Carbonate Platforms Revealed by Carbonate Clumped Isotope Thermometry2026 · 3 citations
  3. 3Understanding the origin of dolomite in the sedimentary record: the contribution of clumped isotope thermometry.2024
  4. 4Near surface generation, burial recrystallization, and structural overprinting of carbonate platform dolomites2026 · 1 citations
  5. 5Exploring Low-Temperature Dolomite as a Biosignature2024