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  1. Yadanabon University
  1. Yadanabon University
  2. Department of Geology

Petrography and Provenance Study of the Moza Formation in Myindwin Shwebawgyun Area, Mahlaing and Wundwin Townships, Mandalay Region

https://meral.edu.mm/records/11163
https://meral.edu.mm/records/11163
f0a1acc8-4a70-45c0-8f94-93b6acd4db4b
021097a9-33f5-44cf-b437-65d21b664473
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Petrography Petrography and Provenance Study of the Moza Formation in Myindwin-Shwebawgyun Area, Mahlaing and Wundwin Townships, Mandalay Region.pdf (472 KB)
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Publication type
Journal article
Upload type
Publication
Title
Title Petrography and Provenance Study of the Moza Formation in Myindwin Shwebawgyun Area, Mahlaing and Wundwin Townships, Mandalay Region
Language en
Publication date 2025-06-16
Authors
Swe Swe Hlaing
Zaw Min Htwe
Khin May Thant
Description
The research area is situated in Mahlaing and Wundwin Townships of Meiktila District, Mandalay Region. This area lies in the Central Cenozoic Belt of Myanmar. It is low-land area and the rock units are trending in a north-south direction. It is bounded by Sagaing Fault to the east. The Moza Formation (Middle Miocene) is underlying the Khabo Formation (Middle Miocene) and the Khabo Formation also underlying the Irrawaddy Formation (Late Miocene to Pliocene). The Moza Formation is mainly composed of the alternating sequences of sandstone, shale, mudstone and clay. Petrographic studies of sandstone, the composition of detrital grains are microcrystalline quartz, feldspars, bifurcated biotite flakes and various compositions of rock fragments. On the basis of the petrofabric and mineralogical studies of sandstones of the Moza Formation is classified as Subarkose and Sublithicarenite. The overall assemblages of petrographic studies point out that the sandstones of the Moza Formation are considered to be derived from a mixed provenance comprising of sedimentary rocks, low- to high-grade metamorphic rocks and plutonic igneous source. Triangular plot of Moza Formation indicated that those sandstones are falling in the field of recycled orogeny.
Keywords
Moza Formation, Miocene, Subarkose, Sublithicarenite, recycled orogeny
Journal articles
1
Yadanabon University Research Journal
357-366
14
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