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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Northwest Africa 773: Lunar mare breccia with a shallow-formed olivine-cumulate component, inferred very-low-Ti (VLT) heritage, and a KREEP connection
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Northwest Africa 773: Lunar mare breccia with a shallow-formed olivine-cumulate component, inferred very-low-Ti (VLT) heritage, and a KREEP connection

机译:西北非洲773:月色母角角砾岩,具有浅层橄榄石堆积成分,推断的极低Ti(VLT)遗产和KREEP连接

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摘要

Lunar meteorite Northwest Africa 773 (herein referred to as NWA773) is a breccia composed predominantly of mafic volcanic components, including a prominent igneous clast lithology. The clast lithology is an olivine-gabbro cumulate, which, on the basis of mineral and bulk compositions, is a hypabyssal igneous rock related compositionally to volcanic components in the meteorite. The olivine-gabbro lithology exhibits cumulus textures and, in our largest section of it, includes some 48% olivine (Fo(64) to Fo(70), average Fo(67)) 27% pigeonite (En(60)Fs(14)Wo(16) to En(67)Fs(27)Wo(6)), 11% augite (En(50)Fs(17)Wo(33) to En(47)Fs(13)Wo(40)), 2% orthopyroxene (En(70)Fs(16)Wo(4)), 11% plagioclase (An(80) to An(94)), and trace barian K-feldspar, ilmenite, Cr-spinel. RE-merrillite, troilite, and Fe-Ni metal. The Mg/Fe ratios of the mafic silicates indicate equilibration of Fe and Mg; however, the silicates retain compositional variations in minor and trace elements that are consistent with intercumulus crystallization. Accessory mineralogy reflects crystallization of late-stage residual melt. Both lithologies (breccia and olivine cumulate) of the meteorite have very-low-Ti (VLT) major-element compositions, but with an unusual trace-element signature compared to Most lunar VLT volcanic compositions. i.e., relative enrichment in light REE and large-ion-lithophile elements, and greater depletion in Eu than almost all other known lunar volcanic rocks. The calculated composition of the melt that was in equilibrium with pyroxene and plagioclase of the cumulate lithology exhibits a KREEP-like REE pattern, but at lower concentrations. Melt of a composition calculated to have been in equilibrium with the cumulate assemblage, plus excess olivine, yields a major-element composition that is similar to known green volcanic glasses. One volcanic glass type from Apollo 14 in particular, green glass B, type 1, has a very low Ti concentration and REE characteristics, including extremely low Eu concentration, that make it a candidate parent melt for the olivine-gabbro cumulate. We infer an origin for the parent melt of NWA773 volcanic components by assimilation of a trace-element-rich partial or residual melt by a magnesian, VLT magma deep in the lunar crust or in the mantle prior to transportation to the near-surface, accumulation of olivine and pyroxene in a shallow chamber, eruption onto a volcanic surface, and incorporation of components into local, predominantly volcanic regolith, prior to impact mixing of the volcanic terrain and related hypabyssal setting, and ejection from the surface of the Moon. Volcanic components such as these probably occur in the Oceanus Procellarum region near the site of origin of the green volcanic glasses found in the Apollo 14 regolith. Copyright (C) 2003 Elsevier Ltd. [References: 73]
机译:西北非洲月球陨石773(以下简称NWA773)是角砾岩,主要由镁铁质火山岩成分组成,包括明显的火成岩岩性。克拉斯特岩性为橄榄石-粗粒堆积物,其基于矿物和大块成分,是组成与陨石中火山成分有关的海底火成岩。橄榄石-鹰嘴石质岩表现出积云质构,并且在我们最大的剖面中包括约48%的橄榄石(Fo(64)至Fo(70),平均Fo(67))27%的皂石(En(60)Fs(14 )Wo(16)至En(67)Fs(27)Wo(6)),11​​%的辉石(En(50)Fs(17)Wo(33)至En(47)Fs(13)Wo(40)) ,2%的邻二甲苯(En(70)Fs(16)Wo(4)),11​​%的斜长石碱(An(80)至An(94))和微量的钡剂K长石,钛铁矿,Cr-尖晶石。稀土-镁铝石,三菱铁矿和铁镍金属。镁铁质硅酸盐的Mg / Fe比表明Fe和Mg达到平衡;但是,硅酸盐保留了微量和微量元素的组成变化,这些变化与积屑间结晶相一致。辅助矿物学反映了后期残余熔体的结晶。陨石的两种岩性(角砾岩和橄榄石堆积)都具有非常低的Ti(VLT)主元素组成,但与大多数月球VLT火山组成相比,具有异常的痕量元素特征。即,相对于几乎所有其他已知的月球火山岩,轻质稀土元素和亲脂性大离子的相对富集以及Eu的耗竭更大。与堆积的岩性的辉石和斜长石平衡的熔体的计算组成显示出KREEP样的REE模式,但浓度较低。经计算已与累积组合物达到平衡的成分的熔体,再加上过量的橄榄石,产生的主要元素组成与已知的绿色火山玻璃相似。一种来自阿波罗14号的火山玻璃类型,特别是绿色玻璃B,类型1,具有极低的Ti浓度和REE特性,包括极低的Eu浓度,这使其成为橄榄石堆积物的候选母体熔体。我们通过在月桂壳或地幔深处的镁质VLT岩浆同化富含痕量元素的部分或残余熔体,然后运往近地表,积累来推断NWA773火山组分的母体熔体的起源。在火山岩地形和相关的海伏背景撞击混合以及从月球表面喷出之前,先将其置于浅室中,将橄榄石和辉石冲刷到火山表面上,然后喷发到火山岩表面,然后将成分掺入当地的主要火山灰岩中。诸如此类的火山成分可能发生在阿波罗14号砾岩中发现的绿色火山玻璃起源点附近的大洋洲Procellarum地区。版权所有(C)2003 Elsevier Ltd. [引用:73]

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