Lower Tertiary planktonic biostratigraphy of the Salt Range, Northern Pakistan

2000 ◽  
Vol 2000 (12) ◽  
pp. 721-747 ◽  
Author(s):  
Jamil Afzal ◽  
Aftab A. Butt
2013 ◽  
Author(s):  
Shahid Jamil Sameeni ◽  
Hafiz Muhammad Siddique ◽  
Rabia Imtiaz ◽  
Sara Sikandar ◽  
Ali Aftab ◽  
...  
Keyword(s):  

2015 ◽  
Vol 168 ◽  
pp. 265-275 ◽  
Author(s):  
Ismail Ahmad Abir ◽  
Shuhab D. Khan ◽  
Abduwasit Ghulam ◽  
Shahina Tariq ◽  
Mohammad Tahir Shah

2021 ◽  
Author(s):  
Lachlan Richards ◽  
Fred Jourdan ◽  
Alan Stephen Collins ◽  
Rosalind Clare King

Abstract. The Salt Range Formation is an extensive evaporite formation in northern Pakistan that has acted as the primary detachment accommodating Himalayan orogenic deformation from the north. This rheologically weak formation forms a mylonite in the Khewra mines, where it accommodates approximate 40 km displacement and is comprised of intercalated halite and potash salts and gypsiferous marls. Polyhalite [K2Ca2Mg(SO4)4•2H2O] grains taken from potash marl and crystalline halite samples are used as geochronometers to date the formation and identify the closure temperature of the mineral polyhalite using the 40Ar/39Ar step heating method. The diffusion characteristics measured for two samples of polyhalite are diffusivity (D0), activation energy (Ea), and %39Ar. These values correspond to a closure temperature of ca. 281 and 296 °C for a cooling rate of 10 °C/Ma. 40Ar/39Ar age results for both samples did not return any reliable crystallization age. This is not unexpected as polyhalite is prone to 40Ar* diffusion loss and the evaporites have experienced numerous phases of deformation resetting the closed K/Ar system. An oldest minimum heating step age of 514 ± 3 Ma from sample 06-3.1 corresponds relatively well to the established early Cambrian age of the formation. Samples 05-P2 and 05-W2 have apparent step ages and represent a deformation event that partially reset the K/Ar system based on oldest significant ages between ca. 381 Ma and 415 Ma. We interpret the youngest apparent step ages, between ca. 286 Ma and 292 Ma, to represent the maximum age of deformation-induced recrystallisation. Both the youngest and oldest apparent step ages for Samples 05-P2 and 05-W2 occur within the time of a major unconformity in the area. These dates may reflect partial resetting of the K/Ar system from meteoric water infiltration and recrystallisation during this non-depositional time. Else, they may result from mixing of Ar derived by radiogenic decay after Cambrian precipitation with partially reset Ar from pervasive Cenozoic deformation and physical recrystallisation.


1982 ◽  
Vol 37 (1) ◽  
pp. 1-15 ◽  
Author(s):  
N.D. Opdyke ◽  
N.M. Johnson ◽  
G.D. Johnson ◽  
E.H. Lindsay ◽  
R.A.K. Tahirkheli

1997 ◽  
Vol 15 ◽  
Author(s):  
S. J. Sameeni ◽  
A. A. Butt

Study of the Sakesar Limestone of the lower Eocene age in the Nammal Gorge in western Salt Range is carried out. During the field investigation eight samples were collected from an 80 ft. thick limestone horizon, at equal interval. A new Alveolinid, foraminifera assemblage is identified.


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