印度南部花岗岩地貌达玛普里断裂带塞瓦图尔碳酸盐岩碱性复合体中方解石-碳酸盐岩的橄榄石成分

Tushar Meshram , Kirtikumar Randive
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引用次数: 0

摘要

世界各地碳酸盐岩中的橄榄石主要是富镁成分(钙钛矿:Fo85 和 Fo99)。然而,除少数地方外,辉绿岩(Fo<50)的出现极为罕见。Sevvattur 碳酸盐岩碱性复合体(SCAC)是印度南部大型 Tirrupattur 碳酸盐岩碱性复合体(TCAC)的一部分,该复合体由早期到晚期的分异/分馏产物组成,从白云石-魏长石-霰石-碳酸盐岩到铁闪长岩。在TCAC中,橄榄石成分显示出从早期的白云石到更进化的铁闪长岩,Fo93到Fo06含量不断下降。我们在此报告了 SCAC 中出现的 Fo60-65 含量中等、100*Mn/Fe、Ni/Co、V/Sc 比值较低的低镍橄榄石。纹理和成分证据揭示了橄榄石的异晶(奇异)性质,可能与TCAC地区低温浅层橄榄岩岩石圈与碳酸盐岩岩浆相互作用过程中漫长的岩浆演化和相关的变质过程中多个阶段的晶体熔体相互作用有关。结论是塞瓦图碳酸盐岩橄榄石中的橄榄石提供了TCAC从白云岩(Fo90-91)-辉绿岩(Fo70-72)-褐铁矿(Fo72-77)-碳酸盐岩(Fo∼90和63-65本研究)到铁闪长岩(Fo03-06)早期到晚期分化产物演化过程中缺失的环节或成分差距。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Olivine composition of calcite-carbonatite from Sevvattur carbonatite alkaline complex, Dharmapuri Rift Zone, Southern Granulite Terrain, India

Olivine composition of calcite-carbonatite from Sevvattur carbonatite alkaline complex, Dharmapuri Rift Zone, Southern Granulite Terrain, India
Olivine in carbonatites worldwide is mainly of Mg-rich composition (forsterite: Fo85 and Fo99). However, the occurrence of fayalite (Fo<50) is extremely rare except few localities. The Sevvattur carbonatite alkaline complex (SCAC) is part of large Tirrupattur carbonatite-alkaline complex (TCAC), Southern India, which consists of early to late differentiated/fractionated products from dunite-wehrlite-shonkinite-carbonatite to ferrosyenite. In TCAC olivine composition shows decreasing Fo93 to Fo06 contents from early dunite to more evolved ferrosyenite. We report here an occurrence of low-Ni, olivine with intermediate Fo60-65 content and low 100*Mn/Fe, Ni/Co, V/Sc ratios from the SCAC. Textural and compositional evidence reveals the xenocrystic (exotic) nature of olivine and possibly linked with multiple stages of crystal melt interaction in the protracted magmatic evolution and associated metasomatic processes during the interaction of peridotite lithosphere with carbonatite magma in the TCAC at low temperature and shallow depth. It is concluded that the olivine in the Sevvattur Carbonatite Olivine provide the missing link or compositional gap during the evolution of the TCAC of early to late differentiated products from dunite (Fo90-91)-wehrlite (Fo70-72)-shonkinite (Fo72-77)-carbonatite (Fo∼90 and 63–65 present study) to ferrosyenite (Fo03-06).
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