解开印度Koraput碱性杂岩的前变质冷却史:来自长石溶出结构的限制

IF 1.4 4区 地球科学 Q3 GEOCHEMISTRY & GEOPHYSICS Mineralogy and Petrology Pub Date : 2022-09-30 DOI:10.1007/s00710-022-00795-x
Manojit Koley, Biswajit Ghosh, Debaditya Bandyopadhyay, Sankhadeep Roy, Archisman Dhar, Soumi Chattopadhaya, Rajib Kar, Samarendra Bhattacharya
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引用次数: 0

摘要

在印度东高止特麻粒岩带(EGGB)的碱性杂岩中,碱长石的晶内溶出结构是常见的岩型。然而,这些织构的来源及其成分演化尚未在麻粒岩带得到很好的记录。本文对EGGB中的Koraput碱性杂岩(KAC)进行了研究,记录了几种岩性的溶蚀结构,确定了它们的火成岩成因,并将它们的成分修饰与该杂岩的演化历史联系起来。研究的溶出结构属于透长岩和中透长岩。为了估计这些织构的形成温度,我们使用了几种模型的双长石测温法和单长石测温法。在双长石测温中,采用了溶出的碱长石和相邻的斜长石对组成。在单长石测温中,采用了溶出碱长石的重积分成分。根据双长石测温法,在7 kbar压力下,霞石正长岩中中透长岩析出片层的最高形成温度为841℃,而透长岩的最高形成温度为759℃。初步形成的斜长石片长石和寄主长石的成分比观测到的成分更富正长石和钠长石。用单长石测温法计算出碱性辉长岩、正长岩和碱性长石花岗岩的温度分别为870℃、810℃和730℃。还对这些岩石中碱长石在溶出之前的组成进行了估计。中长岩中钠长石和正长石含量基本相等;另一方面,在斑长石中,正长石含量高于钠长石。以往的研究用KAC经历的变质作用的最低温度来进行测温,但本研究用长石测温得到的超高温(UHT)记录很难与这些变质事件相关联。相反,这些高温可能代表火成岩条件,在后来的变质事件中没有受到影响,从霞石正长岩记录下来。
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Unraveling the pre-metamorphic cooling history of the Koraput Alkaline Complex, India: constraints from feldspar exsolution texture

Intracrystalline exsolution textures in alkali feldspar are common in lithotypes from many alkaline complexes of the Eastern Ghats Granulite Belt (EGGB), India. However, the parentage of these textures and their compositional evolution is not well documented from this granulite belt. This study on the Koraput Alkaline Complex (KAC) in the EGGB documents the exsolution textures from several lithologies, establishes their igneous origin and finally links their compositional modifications with the evolutionary history of the complex. The studied exsolution textures belong to both perthite and mesoperthite. To estimate the temperature of formation of these textures, we used both two-feldspar thermometry, and one-feldspar thermometry following several models. In two-feldspar thermometry, compositions of exsolved alkali feldspar and the adjacent plagioclase feldspar pairs were used. In one-feldspar thermometry, the reintegrated compositions of exsolved alkali feldspars were used. The maximum temperature of formation of exsolution lamellae estimated from two-feldspar thermometry for mesoperthites in nepheline syenite is > 841 °C, and for perthites is > 759 °C, at 7 kbar pressure. Compositions of initially formed plagioclase feldspar lamellae and the host feldspar were more orthoclase rich and more albite rich respectively compared to the observed compositions. Using one-feldspar thermometry the calculated temperatures for alkali gabbro, syenite and alkali feldspar granite are > 870 °C, > 810 °C and > 730 °C, respectively. Compositions of alkali feldspars immediately before exsolution in these rocks were also estimated. Albite and orthoclase contents were nearly equal in mesoperthites; on the other hand, orthoclase content was higher than albite in perthites. Previous studies assigned their thermometric estimation with the minimum temperature of metamorphism that the KAC experienced, but the Ultra High Temperature (UHT) record obtained from the feldspar thermometry of the present study is difficult to correlate with these metamorphic events. Instead, these high temperatures may represent an igneous condition, which remained unaffected throughout the later metamorphic event as documented from nepheline syenite.

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来源期刊
Mineralogy and Petrology
Mineralogy and Petrology 地学-地球化学与地球物理
CiteScore
2.60
自引率
0.00%
发文量
0
审稿时长
1 months
期刊介绍: Mineralogy and Petrology welcomes manuscripts from the classical fields of mineralogy, igneous and metamorphic petrology, geochemistry, crystallography, as well as their applications in academic experimentation and research, materials science and engineering, for technology, industry, environment, or society. The journal strongly promotes cross-fertilization among Earth-scientific and applied materials-oriented disciplines. Purely descriptive manuscripts on regional topics will not be considered. Mineralogy and Petrology was founded in 1872 by Gustav Tschermak as "Mineralogische und Petrographische Mittheilungen". It is one of Europe''s oldest geoscience journals. Former editors include outstanding names such as Gustav Tschermak, Friedrich Becke, Felix Machatschki, Josef Zemann, and Eugen F. Stumpfl.
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