Mineral chemistry and ages of the Eocene Gapdan granitoid pluton and related dykes (Sistan suture zone, eastern Iran): multi-stage emplacement of a zoned pluton during progressive deformation and exhumation

2021 ◽  
pp. 104813
Author(s):  
Mehdi Rezaei-Kahkhaei ◽  
Fernando Corfu ◽  
Marzieh Sheykhi ◽  
Habibollah Ghasemi ◽  
Yuruo Shi
Geotectonics ◽  
2020 ◽  
Vol 54 (1) ◽  
pp. 130-144 ◽  
Author(s):  
S. Samimi ◽  
E. Gholami ◽  
M. M. Khatib ◽  
S. Madanipour ◽  
F. Lisker

2020 ◽  
Vol 204 ◽  
pp. 104588
Author(s):  
Michael Jentzer ◽  
Hubert Whitechurch ◽  
Philippe Agard ◽  
Marc Ulrich ◽  
Benoit Caron ◽  
...  

Lithos ◽  
2005 ◽  
Vol 84 (1-2) ◽  
pp. 1-24 ◽  
Author(s):  
G.R. Fotoohi Rad ◽  
G.T.R. Droop ◽  
S. Amini ◽  
M. Moazzen
Keyword(s):  

Author(s):  
R. TIRRUL ◽  
I. R. BELL ◽  
R. J. GRIFFIS ◽  
V. E. CAMP
Keyword(s):  

2016 ◽  
Vol 60 ◽  
pp. 28-51 ◽  
Author(s):  
Aram Bayet-Goll ◽  
Paolo Monaco ◽  
Farah Jalili ◽  
Mohammad-Hossein Mahmudy-Gharaie

2021 ◽  
Vol 26 (53) ◽  
pp. 1-17
Author(s):  
Nomuulin Amarbayar ◽  
Noriyoshi Tsuchiya ◽  
Otgonbayar Dandar ◽  
Atsushi Okamoto ◽  
Masaoki Uno ◽  
...  

Serpentinization of ultramafic rocks in ophiolites is key to understanding the global cycle of elements and changes in the physical properties of lithospheric mantle. Mongolia, a central part of the Central Asian Orogenic Belt (CAOB), contains numerous ophiolite complexes, but the metamorphism of ultramafic rocks in these ophiolites has been little studied. Here we present the results of our study of the serpentinization of an ultramafic body in the Manlay Ophiolite, southern Mongolia. The ultramafic rocks were completely serpentinized, and no relics of olivine or orthopyroxene were found. The composition of Cr-spinels [Mg# = Mg/(Mg + Fe2+) = 0.54 and Cr# = Cr/(Cr + Al) = 0.56] and the bulk rock chemistry (Mg/Si = 1.21–1.24 and Al/Si < 0.018) of the serpentinites indicate their origin from a fore-arc setting. Lizardite occurs in the cores and rims of mesh texture (Mg# = 0.97) and chrysotile is found in various occurrences, including in bastite (Mg# = 0.95), mesh cores (Mg# = 0.92), mesh rims (Mg# = 0.96), and later-stage large veins (Mg# = 0.94). The presence of lizardite and chrysotile and the absence of antigorite suggests low-temperature serpentinization (<300 °C). The lack of brucite in the serpentinites implies infiltration of the ultramafic rocks of the Manlay Ophiolite by Si-rich fluids. Based on microtextures and mineral chemistry, the serpentinization of the ultramafic rocks in the Manlay Ophiolite took place in three stages: (1) replacement of olivine by lizardite, (2) chrysotile formation (bastite) after orthopyroxene and as a replacement of relics of olivine, and (3) the development of veins of chrysotile that cut across all previous textures. The complex texture of the serpentinites in the Manlay Ophiolite indicates multiple stages of fluid infiltration into the ultramafic parts of these ophiolites in southern Mongolia and the CAOB.


2019 ◽  
pp. 3-13
Author(s):  
FELIX SCHLAGINTWEIT ◽  
KOOROSH RASHIDI ◽  
HAMED YARAHMADZAHI ◽  
SHARAM HABIBIMOOD ◽  
MAHNAZ AMIRSHAHKARMI ◽  
...  

A new Dasycladale is described as Dissocladella? chahtorshiana Rashidi & Schlagintweit n. sp. from Selandian carbonates of Mount Chah Torsh, Central Iran (type locality). Other occurrence is from the Sistan Suture Zone of Eastern Iran (Selandian?, Thanetian?). The medium-sized taxon displays cylindrical to slightly claviform thalli with a relatively large main axis bearing alternating primaries of variable shape. The latter show either slowly widening towards the distal end or are club-shaped displaying very short secondaries. The morphological variability of the primaries, both typical and atypical for Dissocladella, account for some doubts on the generic assignment of the new species. Dissocladella? chahtorshiana occurs in bioclastic packstones with Cymopolia mayaense Johnson & Kaska, Acroporella cf. anceps Segonzac, Halimeda sp., and benthic foraminifera (e.g., soritiids) at its type locality.


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