...
首页> 外文期刊>Mineralogy and Petrology >Multi-stage evolution of kimberlite melt as inferred from inclusions in garnet megacrysts in the Grib kimberlite (Arkhangelsk region, Russia)
【24h】

Multi-stage evolution of kimberlite melt as inferred from inclusions in garnet megacrysts in the Grib kimberlite (Arkhangelsk region, Russia)

机译:Kimberlite融化的多阶段演变,从Grib Kimberlite(Arkhangelsk Region,俄罗斯)的石榴石甲酰胺中的夹杂物推断

获取原文
获取原文并翻译 | 示例

摘要

To provide new insights into the origin of garnet megacrysts and evolution of kimberlite melts, we studied in detail the polymineralic and monomineralic inclusions and their host garnets from the Grib kimberlite (Arkhangelsk diamond province, Russia). Low-Cr and high-Cr garnet megacrysts and eclogitic garnets contain abundant polymineralic and rare monomineralic inclusions. Monomineralic inclusions presented by clinopyroxene, ilmenite, olivine replaced by serpentine, were found exclusively within the low-Cr megacrysts. The composition of clinopyroxene exhibits geochemical equilibrium with the host garnet, indicating its primary origin during the formation of the megacryst assemblage. The low-Cr garnet-clinopyroxene mineral assemblage formed as a result of high-temperature, melt-associated mantle metasomatism by failed kimberlite within the lithospheric mantle (T = 1150 degrees C and P = 5.5 GPa). Polymineralic inclusions are characterised by a silicate or silicate-sulphate matrix. The central part of the silicate inclusions is filled by serpentine and contains ilmenite, spinel, perovskite, calcite and apatite. At the contact with host garnets, phlogopite, spinel and amphibole occur as reaction minerals. Composition of spinel and other minerals within inclusions with silicate matrix suggests that kimberlite melt was trapped at mantle pressures. Inclusions with silicate matrix were found in all garnets. The matrix of silicate-sulphate inclusions consists of silicate cryptocrystalline phases and sulphate minerals (celestine-barite) and contains calcite grains. The inclusions are distributed in some low-Cr garnet megacrysts and eclogitic garnet. The silicate-sulphate inclusions were crystallised from the late-stage kimberlite melt. Diverse reaction textures are evidences of disequilibrium between the host crystals and polymineralic inclusions and indicate that garnet and the hosted inclusions reacted with the ascending kimberlite melt. The silicate-sulphate inclusions with a thin rim of epidote within eclogitic garnets indicate that a kimberlite melt invaded the garnet and induced partial melting. The studied inclusions allow us to propose three stages of the Grib kimberlite evolution: 1) generation of garnet megacrysts and primary inclusions due to melt metasomatism, 2) reaction of the high-Ti kimberlite melt with garnet megacrysts (including their dissolution) and 3) alteration of the inclusions in garnet after kimberlite ascent.
机译:为了向石榴石甲克里克里斯特的起源和金伯利岩熔体的演变提供新的见解,我们详细研究了Grib kimberlite(Arkhangelsk钻石省,俄罗斯)的聚合物和单体夹杂物及其宿主夹带。 Low-Cr和High-Cr Garnet Megacrysts和eClogitic Garnet含有丰富的聚合物和罕见的单体夹杂物。由Clinopyroxene,Ilmenite,Olivine呈现的单体夹杂物,仅在低Cr甲酰基中发现。 Clinococexene的组成表现出Geochemical平衡与宿主石榴石,表明其在甲锭组合形成过程中的主要来源。由于高温,岩石罩内的失效金伯利钛矿,由高温,熔体相关的搭腔偏索术而形成的低CR石榴石 - 临床矿物组合物(T = 1150℃和P = 5.5GPa)。聚合物夹杂物的特征在于硅酸盐或硅酸盐 - 硫酸盐基质。硅酸盐夹杂物的中心部分由蛇形填充,含有钛铁矿,尖晶石,钙钛矿,方解石和磷灰石。在与主菜的接触时,植物,尖晶石和锥形晶片作为反应矿物。尖晶石和含有硅酸盐基质内夹杂物内的尖晶石和其他矿物质的组成表明Kimberlite熔体被困在地幔压力下。在所有装甲中发现含有硅酸盐基质的夹杂物。硅酸盐硫酸盐夹杂物的基质由硅酸盐密集阶段和硫酸盐矿物(Celestine-Barite)组成,含有方解石颗粒。夹杂物分布在一些低CR石榴石芒果和野生石榴石中。硅酸盐 - 硫酸盐夹杂物从后期的金伯勒钛矿熔体中结晶。不同的反应纹理是宿主晶体和聚合物夹杂物之间的不平衡的证据,并表明石榴石和载体夹杂物与升中的金伯拉特熔体反应。在卵像肠动物胎粪内具有薄边缘的硅酸盐 - 硫酸盐夹杂物表明Kimberlite熔体侵入了石榴石并诱导部分熔化。学习的含量允许我们提出三个阶段的Grib Kimberlite演化:1)生成Garnet甲酰胺和熔体偏溶解的主要夹杂物,2)高Ti Kimberlite熔融与石榴石甲酰基(包括它们的溶解)和3)的反应。 Kimberlite Ascent后石榴石夹杂物的改变。

著录项

相似文献

  • 外文文献
  • 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