首页> 外文期刊>Journal of the Geological Society of India >Crustal accretion and metamorphism of Mesoarchean granulites in Palghat-Cauvery Shear Zone, Southern India
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Crustal accretion and metamorphism of Mesoarchean granulites in Palghat-Cauvery Shear Zone, Southern India

机译:印度南部Palghat-Cauvery剪切带Mesoarchean粒岩的地壳增生和变质作用

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This work provides unequivocal evidence of the existence of Mesoarchean granulite facies metamorphic event in the Palghat-Cauvery Shear Zone (PCSZ) of South India. Charnockite samples from two prominent hills at Kollaimalai (KM) and Pachchaimalai (PM) as well as from two quarries within the Bhavani Shear Zone (BSZ) have been analyzed for their Sm-Nd and Rb-Sr ages to investigate the existence or otherwise of the Archean granulite facies events within the PCSZ. The Rb-Sr whole-rock isochron ages for massive charnockites from both the hills appear to be contemporaneous at 2.9 Ga with the initial Sr isotopic ratios of 0.7012 and 0.7014, respectively. However, the Rb-Sr data for whole-rock samples of basic granulites from one of the quarries within the BSZ indicate open system behavior, while the charnockites from the other quarry have insufficient spread in 87Rb/86Sr ratios and do not yield any isochron. The Sm-Nd data, on the other hand, do not distinguish between the massive charnockite and the lowland charnockite and yield Depleted Mantle model ages in the range 2.98±0.3 Ga for all of them. The ɛT CHUR for all of these rocks are highly positive. Both the Sr isotopic ratios and positive ɛT CHUR values for these rocks strongly suggest a mantle source for all of them. An upper age limit of ∼3.28 Ga may be assigned to the crustal accretion of the protolith of all these rocks on the basis of their Nd model ages. The Rb-Sr isochron ages of 2.9 Ga for the two massifs could be the age of granulite facies metamorphism. Thus, the metamorphism in the KM and PM Hills took place within ∼100 Ma of crustal accretion of these rocks and probably was part of the same geological event of crust formation and metamorphism. The open system behavior with respect to Rb-Sr isotopes in the basic granulite from Bhavani is possibly due to the migration of Sr isotopes, triggered during the later shearing of these rocks.
机译:这项工作提供了明确的证据,表明印度南部的帕尔格哈特洞穴剪切带(PCSZ)中存在着中古统的花岗岩相变质事件。分析了Kollaimalai(KM)和Pachchaimalai(PM)两个著名山丘以及Bhavani Shear Zone(BSZ)内两个采石场的Charnockite样品的Sm-Nd和Rb-Sr年龄,以调查其存在与否。 PCSZ内的太古宙花岗岩相事件。来自两个山丘的块状霞石的Rb-Sr全岩石等时年龄在2.9 Ga时是同时期的,初始Sr同位素比分别为0.7012和0.7014。但是,来自BSZ内一个采石场的基本花岗石全岩样品的Rb-Sr数据表明系统开放,而另一个采石场的霞石在87 Rb / 86 Sr比,不产生任何等时同步。另一方面,Sm-Nd数据不能区分块状菱镁矿和低地菱镁矿,并且所有这些都产生了2.98±0.3 Ga范围内的耗尽幔模型年龄。所有这些岩石的ɛT CHUR 都是高度正的。这些岩石的Sr同位素比和ɛT CHUR 正值都强烈暗示了所有岩石的地幔来源。根据这些岩石的Nd模型年龄,可以将这些岩石的原生质体的地壳堆积指定为约3.28 Ga的年龄上限。两个断层的Rb-Sr等时年龄为2.9 Ga,可能是粒相相变质的年龄。因此,KM和PM Hills的变质作用发生在这些岩石的地壳堆积约100 Ma之内,并且可能是同一地壳形成和变质作用的地质事件的一部分。在Bhavani的基本花岗石中,相对于Rb-Sr同位素的开放系统行为可能是由于Sr同位素的迁移引起的,这些迁移是在这些岩石的后期剪切过程中触发的。

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