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Magnesian anorthosites and a deep crustal rock from the farside crust of the moon

机译:镁质斜长岩和月球远端地壳深层的地壳岩石

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Among over thirty lunar meteorites recovered from the hot deserts and Antarctica, Dhofar 489 is the most depleted in thorium (0.05 ppm), FeO, and rare earth elements (REE). Dhofar 489 is a crystalline matrix anorthositic breccia and includes clasts of magnesian anorthosites and a spine] troctolite. The Mg/(Mg+Fe) mol% (Mg numbers=75-85) of olivine and pyroxene grains in this meteorite are higher than those of the Apollo ferroan anorthosites. Such materials were not recovered by the Apollo and Luna missions. However, remote sensing data suggest that the estimated concentrations of Th and FeO are consistent with the presence of such samples on the farside of the Moon. The differentiation trend deduced from the mineralogy of the anorthositic clasts define a magnesian extension of the ferroan anorthosite (FAN) trend constructed from the Apollo samples. The presence of magnesian anorthositic clasts in Dhofar 489 still offers a possibility that the farside trend with magnesian compositions is more primitive than the FAN trend, and may require a revision of this classical differentiation trend. The Ar-Ar age of Dhofar 489 is 4.23 +/- 0.034 Gyr, which is older than most Ar ages reported for highland rocks returned by Apollo. The old Ar-Ar age of impact formation of this breccia and the presence of a fragment of spinel troctolite of deep crustal origin suggest that a basin forming event on the farside excavated the deep crust and magnesian anorthosites before formation of Imbrium. (c) 2006 Elsevier B.V. All rights reserved.
机译:在从炎热的沙漠和南极洲回收的三十多个月球陨石中,Dhofar 489的th(0.05 ppm),FeO和稀土元素(REE)最贫乏。 Dhofar 489是一种结晶基质的钙硅钙石斜角砾岩,包括成片的镁质钙硅钙石和脊柱状的斜方晶石。该陨石中橄榄石和辉石颗粒的Mg /(Mg + Fe)mol%(Mg数量= 75-85)高于阿波罗亚铁正钙钛矿。阿波罗和露娜特派团没有回收这些材料。但是,遥感数据表明,估计的Th和FeO浓度与在月球远处存在的此类样品一致。从无钙硅藻岩的矿物学推断出的分化趋势定义了由阿波罗样品构造的亚铁钙硅铁矿(FAN)趋势的镁质延伸。在Dhofar 489中存在镁质钙硅石的消融碎片仍然提供了这样一种可能性,即镁质成分的远侧趋势比FAN趋势更原始,并且可能需要修改这种经典的差异化趋势。 Dhofar 489的Ar-Ar年龄为4.23 +/- 0.034 Gyr,比报告的由阿波罗返回的高地岩石的大多数Ar年龄要大。角砾岩撞击形成的Ar-Ar年代较早,并且存在深地壳起源的尖晶石斜晶石碎片的存在,表明在形成岩层之前,在远处的盆地形成事件开挖了深层地壳和镁质无钙铁矿。 (c)2006 Elsevier B.V.保留所有权利。

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