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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Baddeleyite-apatite-spinel-phlogopite (BASP) rock in Achankovil Shear Zone,South India,as a probable cumulate from melts of carbonatite affinity
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Baddeleyite-apatite-spinel-phlogopite (BASP) rock in Achankovil Shear Zone,South India,as a probable cumulate from melts of carbonatite affinity

机译:印度南部Achankovil剪切带中的Baddeleyite-磷灰石-尖晶石-金云母(BASP)岩石,可能来自碳酸盐亲和力熔体

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We report here the petrography,mineralogy and in-situ trace-element mineral geochemistry of a rare and hitherto unidentified baddeleyite-apatite-spinel-phlogopite (BASP) rock in Late Neoproterozoic Achankovil Shear Zone (ACSZ) in South India.The rock unit occurs as isolated outcrops and demarcates the western boundary of an ultramafic complex in ACSZ.The modal mineralogy of the BASP rock is baddeleyite< apatite < spinel hlogopite.Baddeleyite is found as inclusions within spinel and phlogopite.The spinel is highly aluminous with copious inclusions of high-T melts,pure CO_2-fluids,magnesite and graphite.Apatite is the major carrier of halogens such as F and Cl,LREEs,U and Th,and phlogopite is the robust reservoir of Ba and Rb.The concentrations of REE in apatite are quite variable (XREE approx 7646-13485 ppm),but the chondrite normalized patterns show a uniform negative sloped REE patterns with significant negative Eu anomaly,which is indicative of the crystallization of apatite in a reduced environment.The mineral assemblage of apatite-phlogopite-baddeleyite is typical of carbonatites from various carbonatite complexes.Moreover,the LREE enrichment and negative Eu anomaly of apatite,low Ti and Fe,and high Al,Mg,Ba and Rb of phlogopite,as well as actinide enrichment of baddeleyite relative to REEs,are characteristic signatures of carbonatites from various tectonic settings.Therefore,we argue that the BASP rock is probably formed by crystal precipitation from melts having carbonatite affinities derived from the upper mantle and emplaced into the lower crustal level during the extensional collapse of the orogen following the collisional assembly of the Gondwana supercontinent.The deep-rooted ACSZ acted as the pathway for the infiltrating melts.
机译:我们在这里报告了印度南部新元古代晚期Achankovil剪切带(ACSZ)中一种稀有且迄今尚未确定的Baddeleyite-磷灰石-Spinel-金云母(BASP)岩石的岩石学,矿物学和原位微量元素矿物地球化学。 BASP岩石的模态矿物学为Baddeleyite <磷灰石<尖晶石<金云母.Baddeleyite被发现是尖晶石和金云母中的夹杂物。磷灰石是卤素的主要载体,如F和Cl,LREEs,U和Th,而金云母是Ba和Rb的稳健储层。磷灰石是磷的主要吸附剂。球粒晶的归一化模式显示出均匀的负斜率REE模式,具有显着的负Eu异常,这表明球状磷灰石在砷中的结晶化是非常可变的(XREE约为7646-13485 ppm)。磷灰石-金云母-baddeleyite的矿物组合是各种碳酸盐岩配合物中典型的碳酸盐岩。此外,磷灰石的LREE富集和负Eu异常,低Ti和Fe以及金云母的高Al,Mg,Ba和Rb,以及相对于REEs的Baddeleyite的act系元素富集,是各种构造背景下碳酸盐岩的特征性特征。因此,我们认为BASP岩石可能是由上层地幔中碳酸盐岩亲和力并溶入下部的熔岩中的晶体沉淀形成的。冈瓦纳超大陆碰撞组装后造山带伸展塌陷期间的地壳水平。深根的ACSZ充当了熔体渗透的途径。

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