首页> 外文期刊>Russian Geology and Geophysics >Geochemical evidence for the fractionation of iridium group elements at the early stages of crystallization of the Dovyren magmas
【24h】

Geochemical evidence for the fractionation of iridium group elements at the early stages of crystallization of the Dovyren magmas

机译:Dovyren岩浆结晶早期铱群元素分馏的地球化学证据

获取原文
获取原文并翻译 | 示例
           

摘要

We have first generalized geochemical and mineralogical data indicating the important role of crystallization of Os-Ir-Ru phases and fractionation of refractory indium subgroup of PGE (IPGE) at the early stages of the evolution of parental magmas and primitive cumulates from the Yoko-Dovyren layered massif (northern Baikal area, Russia). The object of study was two types of plagioclase peridotites from the lower part of the intrusion, differing in the porosity of primary olivine cumulates: less melanocratic (but more primitive) type I and more melanocratic type II. Inclusions of refractory IPGE (Os, Ir, and Ru) discovered during LA-ICP-MS studies of aluminochromite from type I rocks are the first evidence for the presence of Os-Ir-Ru phases. Subsequent electron microscopy examinations revealed more than 25 grains of laurite and Ir-containing osmium in aluminochromite from plagioperidotites of both types. Attention is focused on the importance of the Ru/Cr2O3 and Ir/Cr2O3 ratios in rocks for the separation of IPGE at early and late fractionation stages. The conclusion is drawn that the higher Ru/Cr2O3 and Ir/Cr2O3 ratios in type I plagioperidotites indicate higher enrichment of aluminochromite in inclusions of refractory IPGE minerals. This is consistent with the fact that these rocks are assigned to the most primitive high-temperature ultramafites genetically related to the parental magma, which was in equilibrium with olivine Foss at similar to 1290 degrees C. We have established that the parental Dovyren magma was already depleted in IPGE and rhodium before its entrance into a chamber. No signs of early sulfide-silicate immiscibility have been detected. (C) 2018, V.S. Sobolev IGM, Siberian Branch of the RAS. Published by Elsevier B.V. All rights reserved.
机译:我们具有首次推广地球化学和矿物学数据,表明OS-IR-ru阶段结晶的重要作用和难敏铟亚群的难敏铟亚群的分馏在父母岩浆的演变的早期阶段和yoko-dovyren的原始累积分层的Massif(北贝加尔地区,俄罗斯)。研究对象是来自侵入的下部的两种类型的Plagioclase恒星,在原代橄榄石累积的孔隙率不同:较少的素质(但更原始)I类和更多的甜发酰型II。从I型岩石的La-ICP-MS研究期间发现的难敏iPGE(OS,IR和Ru)的含量是OS-IR-ru阶段存在的第一种证据。随后的电子显微镜检查显示,来自两种类型的Plagioperidites的铝晶沸石中含有25个以上的月桂石和IR锇粒子。注意力关注Ru / Cr2O3和Ir / Cr2O3比率在岩石中的重要性,以便在早期和晚期分馏阶段分离iPge。得出的结论是,I型Plagioperidotites中的较高的Ru / Cr2O3和Ir / Cr2O3比表明耐火iPGE矿物质的夹杂物中铝晶醇的富集程度较高。这与这些岩石被分配给最重要的高温超空间的事实是一致的,这些岩石与父母岩浆遗传相关的最重要的高温超空间,这与橄榄石骨骼相似的橄榄石骨骼相似,我们已经确定了父母的Dovyren Magma已经存在在入口进入腔室之前在iPGE和铑中耗尽。没有检测到不混溶硫化物硅酸盐的迹象。 (c)2018,五。 Sobolev IgM,Ras的西伯利亚分支。 elsevier b.v出版。保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号