首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >A reappraisal of the metamorphic history of EH3 and EL3 enstatite chondrites
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A reappraisal of the metamorphic history of EH3 and EL3 enstatite chondrites

机译:重新评估EH3和EL3顽辉长晶陨石的变质历史

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摘要

The thermal history of a series of EH3 and EL3 chondrites has been investigated by studying the degree of structural order of the organic matter (OM) located and characterized in matrix areas by Raman micro-spectroscopy. By comparison with unequilibrated ordinary chondrites (UOCs) and CO and CV carbonaceous chondrites, the following petrologic types have been assigned to various E chondrites: Sahara 97096 and Allan Hills 84206: 3.1-3.4; Allan Hills 85170 and Parsa: 3.5; Allan Hills 85119: 3.7; Qingzhen, MacAlpine Hills 88136 and MacAlpine Hills 88184: 3.6-3.7. The petrologic type of Qingzhen is consistent with the abundance of the P3 noble gas component, a sensitive tracer of the grade of thermal metamorphism. The petrologic types are qualitatively consistent with the abundance of fine-grained matrix for the whole series. No significant effects of shock processes on the structure of OM were observed. However such processes certainly compete with thermal metamorphism and the possibility of an effect cannot be fully discarded, in particular in the less metamorphosed objects. The OM precursors accreted by the EH3 and EL3 parent bodies appear to be fairly similar to those of UOCs and CO and CV carbonaceous chondrites. Raman data however show some slight structural differences that could be partly accounted for by shock processes. The metamorphic history of EH3 and EL3 chondrites has often been described as complex, in particular regarding the combined action of shock and thermal metamorphism. Because OM maturity is mostly controlled by the temperature of peak metamorphism, it is possible to distinguish between the contributions of long duration thermal processes and that of shock processes. Comparison of the petrologic types with the closure temperatures previously derived from opaque mineral assemblages has revealed that the thermal history of EH3 and EL3 chondrites is consistent with a simple asteroidal onion shell model. Thermal metamorphism in enstatite chondrites appears to be fairly similar to that which takes place in other chondrite classes. The complex features recorded by mineralogy and petrology and widely reported in the literature appear to be mostly controlled by shock processes.
机译:通过研究拉曼显微光谱法对基质区域中定位并表征的有机物(OM)的结构有序程度,研究了一系列EH3和EL3球粒陨石的热历史。与未平衡的普通球粒陨石(UOC)以及CO和CV碳质球粒陨石相比,以下岩石学类型已分配给各种E球粒陨石:Sahara 97096和Allan Hills 84206:3.1-3.4;亚伦山85170和帕萨:3.5;艾伦·希尔斯85119:3.7;青镇,MacAlpine Hills 88136和MacAlpine Hills 88184:3.6-3.7。清镇的岩石类型与P3稀有气体组分的含量一致,P3稀有气体组分是热变质等级的敏感示踪剂。在整个系列中,岩石学类型与细颗粒基质的含量在质量上是一致的。没有观察到冲击过程对OM结构的显着影响。但是,此类过程肯定会与热变质竞争,并且无法完全消除影响的可能性,尤其是在变质程度较小的物体中。 EH3和EL3母体分泌的OM前驱物似乎与UOC和CO和CV碳质球粒陨石相当。然而,拉曼数据显示出一些细微的结构差异,这可能是冲击过程造成的。 EH3和EL3球粒陨石的变质历史常常被描述为复杂的,特别是关于冲击和热变质的组合作用。由于OM成熟度主要受峰变质温度的控制,因此可以区分长时间热过程和冲击过程的贡献。将岩石学类型与先前从不透明矿物组合中获得的闭合温度进行比较后发现,EH3和EL3球粒陨石的热历史与简单的小行星洋葱壳模型一致。顽辉辉石球粒陨石的热变质似乎与其他球粒陨石类别中的热变质非常相似。由矿物学和岩石学记录并在文献中广泛报道的复杂特征似乎主要受冲击过程控制。

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