首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Discovery of Hg-Cu-bearing metal-sulfide assemblages in a primitive H-3 chondrite: Towards a new insight in early solar system processes
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Discovery of Hg-Cu-bearing metal-sulfide assemblages in a primitive H-3 chondrite: Towards a new insight in early solar system processes

机译:在原始的H-3球粒陨石中发现含Hg-Cu的金属硫化物组合:对早期太阳系过程的新见解

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We report here the discovery of a novel meteoritic paragenesis consisting of sub-micrometric HgS, Cu sulfides, and Hg metal, associated with polycrystalline fine-grained native Cu in opaque mineral aggregates heterogeneously distributed in the matrix of the H-3 Tieschitz unequilibrated ordinary chondrite(UOC).The systematic association of Hg with Cu in Tieschitz chondrite provides a unique opportunity to place robust constraints on the origin of these assemblages either by condensation and sulfidation in a local nebular reservoir of non-solar composition, followed by gentle and fast accretion, or by sublimation of Hg from the hot interior of the asteroid and recondensation in its cold outer regions. The sulfide phase relations support low temperature conditions(<300 °C), implying that subsequent to accretion indigenous hydrothermal processing, oxidation/sulfidation, transportation, or shock-induced thermal processing of the assemblage on the parent body earlier proposed are very unlikely and unrealistic. Origin of HgS by sublimation of Hg from the hotter asteroid interior and precipitation as cinnabar in the colder surface regions is discrepant with our findings and can be ruled out because cinnabar occurs only in Tieschitz matrix in alternating rhythmic intergrowth with Cu-sulfide. The sublimation scenario calls for co-evaporation of both the highly volatile Hg as HgS and Hg metal and the moderately volatile Cu both as Cu metal, or their sulfides and deposition as sulfides in alternating episodes. Our findings provide further ample evidence refuting the repeated claim of formation of native copper in chondritic metal by shock-induced impact melting. Cold accretion is the only reasonable possibility to preserve the delicate accretionary intergrowth textures, the polycrystallinity of FeNi-metal, native Cu, Hg-Cu-sulfides and native Hg globules and the high Hg concentration retained in this meteorite. Our findings strongly suggest that Tieschitz resided near the cold surface of the parent asteroid.
机译:我们在此报告的发现了由亚微米级HgS,Cu硫化物和Hg金属组成的新型陨石共生,与不透明矿物聚集体中的多晶细粒天然Cu异质分布在H-3 Tieschitz未平衡的普通球粒陨石的基质中提契兹球粒陨石中Hg与Cu的系统结合提供了独特的机会,可以通过在非太阳组成的局部星云状储层中进行冷凝和硫化来对这些集合的起源施加强大的约束,然后缓慢而快速地吸积或通过从小行星的热内部升华汞并在其寒冷的外部区域再凝结。硫化物的相关系支持低温条件(<300°C),这意味着在先进行提议的母体上进行固有的水热加工,氧化/硫化,运输或冲击诱导的热处理之后,再进行原生水热加工是极不可能且不切实际的。 Hg从较热的小行星内部升华而产生HgS的起源,以及在较冷的表面区域以朱砂为沉淀物,这与我们的发现是相矛盾的,因此可以排除,因为朱砂仅在Tieschitz基质中与硫化铜交替有节奏地共生出现。升华方案要求高挥发度的Hg以HgS和Hg金属的形式共同挥发,而中度挥发性的Cu既以Cu金属的形式共同挥发,又以硫化物的形式交替蒸发。我们的发现提供了进一步的证据,驳斥了由冲击诱导的冲击熔化在软骨金属中形成天然铜的一再主张。冷积是保持微妙的增生共生纹理,FeNi-金属,天然Cu,Hg-Cu-硫化物和天然Hg球的多晶性以及保留在该陨石中的高Hg含量的唯一合理可能性。我们的发现有力地表明,泰切兹居住在小行星母体的冷表面附近。

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