4.7 Article

Mineralogy and geochemistry of an organic- and V-Cr-Mo-U-rich siliceous rock of Late Permian age, western Hubei Province, China

期刊

INTERNATIONAL JOURNAL OF COAL GEOLOGY
卷 172, 期 -, 页码 19-30

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.coal.2016.12.006

关键词

Late Permian; Siliceous rock; Trace elements; Anoxic environment; Hydrothermal origin

资金

  1. National Key Basic Research Program of China [2014CB238900]
  2. National Natural Science Foundation of China [41672151]
  3. Programme of Introducing Talents of Discipline to Universities [B17042]

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Organic-rich siliceous rocks of Late Permian age from western Hubei Province, China are markedly high in trace elements including V (2031 mu g/g), Cr (856 mu g/g), Mo (245 mu g/g), and U (392 mu g/g). The mineralogy and geochemistry of these siliceous rocks were investigated using various petrological, mineralogical, and geochemical methods. The results show that the siliceous rocks are high in total organic carbon (TOC), which range from 3.88 to 46.99%, with a weighted average of 17.83%. TOC is dominated by amorphous organic debris, resulting from intense degradation, and lesser amounts of marine microfossils (e.g. foraminifera, algae, and poriferan). The minerals mainly consist of quartz, mixed layer illite/smectite (I/S), and small proportions of calcite, dolomite, K-feldspar, albite, pyrite, gypsum, apatite, marcasite, jarosite, kaolinite, and bassanite. Trace amounts of xenotime-(Y) ((Y,REE)PO4), rhabdophane-(Nd) ( (Nd, Ce, La,)PO4 center dot H2O), chalcopyrite, and sphalerite were observed using SEM-EDX. The SEM-EDX results indicate that V and Cr are mainly within the organic matter and mixed layer I/S; Mo is closely associated with organic matter and sulfides (e.g., pyrite, sphalerite, and chalcopyrite); U is only detected in P-bearing minerals, especially in xenotime-(Y) and rhabdophane-(Nd). The sampled interval was deposited in a transitional marine basin between a continental margin and open-ocean pelagic setting, where the anoxic environment was attributed to intense organic matter degradation and restricted water mass renewal. The enriched elements V, Cr, Mo, and U were mainly derived from submarine hydrothermal activities. (C) 2016 Published by Elsevier B.V.

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