Javascript must be enabled to continue!
Origin of the basal lherzolite of the Muslim Bagh Ophiolite, Pakistan, deduced from the trace element characteristics of clinopyroxene
View through CrossRef
The origin of basal lherzolites in the mantle section of harzburgite‐dominated ophiolites is enigmatic. The basal part of the mantle section is well exposed in the Muslim Bagh Ophiolite, Pakistan, which is one of the harzburgite‐dominated ophiolites of the Tethys Ophiolite Belt. In this contribution, we describe the basal lherzolite of the Muslim Bagh Ophiolite, Pakistan, and discuss its origin based on the trace‐element characteristics of its clinopyroxenes. The basal lherzolite exhibits porphyroclastic to mylonitic textures. Primitive mantle‐normalized trace‐element patterns of the porphyroclastic clinopyroxenes were characterized by low ratios of light rare‐earth elements (LREEs) to heavy rare‐earth elements (HREEs), low abundances of HREEs, and positive Sr anomalies. These geochemical characteristics are not consistent with a lherzolite and its clinopyroxenes, which is formed by a residue after a low degree of partial melting and melt extraction from peridotites in a mid‐ocean ridge setting. Instead, the compositions of the clinopyroxenes are consistent with open‐system melting induced by the infiltration of slab‐derived fluids into residual peridotites that had been depleted in REEs. The compositions of chromian spinels in the chromitites of the basal peridotite sequence are also consistent with their formation in an arc setting. We conclude that the basal lherzolites of the Muslim Bagh Ophiolite represent a residue after a relatively high degree of partial melting, and that the clinopyroxenes were added as metasomatic crystallization from slab‐derived arc‐related melts to this residual depleted peridotite in a subduction setting.
Title: Origin of the basal lherzolite of the Muslim Bagh Ophiolite, Pakistan, deduced from the trace element characteristics of clinopyroxene
Description:
The origin of basal lherzolites in the mantle section of harzburgite‐dominated ophiolites is enigmatic.
The basal part of the mantle section is well exposed in the Muslim Bagh Ophiolite, Pakistan, which is one of the harzburgite‐dominated ophiolites of the Tethys Ophiolite Belt.
In this contribution, we describe the basal lherzolite of the Muslim Bagh Ophiolite, Pakistan, and discuss its origin based on the trace‐element characteristics of its clinopyroxenes.
The basal lherzolite exhibits porphyroclastic to mylonitic textures.
Primitive mantle‐normalized trace‐element patterns of the porphyroclastic clinopyroxenes were characterized by low ratios of light rare‐earth elements (LREEs) to heavy rare‐earth elements (HREEs), low abundances of HREEs, and positive Sr anomalies.
These geochemical characteristics are not consistent with a lherzolite and its clinopyroxenes, which is formed by a residue after a low degree of partial melting and melt extraction from peridotites in a mid‐ocean ridge setting.
Instead, the compositions of the clinopyroxenes are consistent with open‐system melting induced by the infiltration of slab‐derived fluids into residual peridotites that had been depleted in REEs.
The compositions of chromian spinels in the chromitites of the basal peridotite sequence are also consistent with their formation in an arc setting.
We conclude that the basal lherzolites of the Muslim Bagh Ophiolite represent a residue after a relatively high degree of partial melting, and that the clinopyroxenes were added as metasomatic crystallization from slab‐derived arc‐related melts to this residual depleted peridotite in a subduction setting.
Related Results
The Role of the Judiciary in Constitutional Interpretation in Pakistan
The Role of the Judiciary in Constitutional Interpretation in Pakistan
This study examines the evolving role of the judiciary in Pakistan in interpreting the Constitution, exploring how the courts have come to terms with their position as the primary ...
Study on the Tectonic Setting for the Ophiolites in Xigaze, Tibet
Study on the Tectonic Setting for the Ophiolites in Xigaze, Tibet
Abstract:The Xigaze ophiolite is located in the middle section of the Yarlung Zangbo River ophiolite belt and includes a well‐preserved sequence section of seven ophiolite blocks. ...
Trace element composition of clinopyroxene in gabbros and dolerites of the Tortuga Ophiolitic Complex, southernmost Patagonia.
Trace element composition of clinopyroxene in gabbros and dolerites of the Tortuga Ophiolitic Complex, southernmost Patagonia.
<p>During the Upper Jurassic-Lower Cretaceous times the western margin of Gondwana in southern Patagonia experienced extreme lithospheric extension and generation of ...
The Josephine ophiolite: an ancient analogue for slow- to intermediate-spreading oceanic ridges
The Josephine ophiolite: an ancient analogue for slow- to intermediate-spreading oceanic ridges
AbstractThe 162 Ma Josephine ophiolite, NW California and SW Oregon, consists of harzburgite tectonite (>800 km2), cumulates, high-level gabbro, a sheeted dyke complex having a ...
Geochemical Characteristics of Mafic Rocks from the Xinlin Ophiolite, NE China
Geochemical Characteristics of Mafic Rocks from the Xinlin Ophiolite, NE China
Located in the northern part of the Xinlin–Xiguitu suture zone, geochemistry and geochronology of the Xinlin ophiolite provide a unique opportunity to determine the the evolution o...
Pyroxenite from Diavik, Canada: metasomatic origin from eclogite
Pyroxenite from Diavik, Canada: metasomatic origin from eclogite
Major and trace element contents, including H2O, of garnet and clinopyroxene were determined in eclogite and pyroxenite xenoliths from the Diavik diamond mine, Slave Craton, Canada...
Ancient Urban Gardens of Persia: Concept, History, and Influence on Other World Gardens
Ancient Urban Gardens of Persia: Concept, History, and Influence on Other World Gardens
The history of Persian gardens goes back to a few millennia before the emergence of Islam in Iran (Persia). Designs of Persian gardens have influenced and are used extensively in t...
The Trinity ophiolite (California): the strange association of fertile mantle peridotite with ultra-depleted crustal cumulates
The Trinity ophiolite (California): the strange association of fertile mantle peridotite with ultra-depleted crustal cumulates
AbstractThis paper addresses the question of the petrological relationships between the mantle section and the crustal section of the Trinity ophiolite. Our conclusions are based o...

