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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Petrology and trace element geochemistry of Robert Massif 04261 and 04262 meteorites, the first examples of geochemically enriched lherzolitic shergottites
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Petrology and trace element geochemistry of Robert Massif 04261 and 04262 meteorites, the first examples of geochemically enriched lherzolitic shergottites

机译:罗伯特·Massif 04261和04262陨石的岩石学和微量元素地球化学,这是地球化学富集的锂沸石黑云母的首例

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摘要

Shergottites sampled two distinct geochemical reservoirs on Mars. Basaltic and olivine-phyric shergottites individually sampled both geochemically enriched and depleted reservoirs, whereas lherzolitic shergottites are previously known only to exhibit a relatively limited intermediate geochemical signature that may have resulted from the mixing of the two geochemical end-member reservoirs. Here we show that recently discovered shergottites Robert Massif (RBT) 04261 and RBT 04262 are the first examples of lherzolitic shergottites originating from the enriched reservoir.RBT 04261 and RBT 04262, initially identified as olivine-phyric shergottites, are actually lherzolitic shergottites. Both meteorites exhibit nearly identical textures and mineral compositions, suggesting that they should be paired. Each consists of two distinct textures: poikilitic and non-poikilitic. The poikilitic areas are composed of pyroxene oikocrysts enclosing olivine grains; all pyroxene oikocrysts have pigeonite cores mantled by augite. The non-poikilitic areas are composed of olivine, pyroxene, maskelynite and minor amounts of merrillite, chromite and ilmenite. Olivine and pyroxene show the lowest Mg-number, and maskelynite has the lowest anorthite component among the lherzolitic shergottites. Moreover, the modal abundances of maskelynite in these two meteorites are distinctly higher than the other lherzolitic shergottites.The rare earth element (REE) budgets of RBT 04261 and RBT 04262 are dominated by merrillite. The slightly light rare earth element (LREE)-enriched pattern of this mineral is similar to that of merrillite in the geochemically enriched basaltic shergottites Shergotty and Zagami, and unlike the LREE-depleted pattern of merrillite in the other lherzolitic shergottites. The REE patterns of both high- and low-Ca pyroxenes are also similar to those in Shergotty and Zagami. The REE pattern of a melt calculated to be in equilibrium with the core of a pyroxene oikocryst is parallel to that of the RBT 04262 whole-rock as well as whole-rock compositions of other geochemically enriched basaltic shergottites. These observations imply that RBT 04262 sampled an enriched and oxidized reservoir similar to that sampled by some of the basaltic shergottites and are consistent with an oxidizing condition for the formation of RBT 04262 (logfO_2=QFM-1.6).The petrographic and geochemical observations presented here suggest that RBT 04261 and RBT 04262 represent the most evolved magma among the lherzolitic shergottites and that this magma originated from a geochemically enriched reservoir on Mars. Based on an evaluation of the relationship between petrographic, geochemical and chronological signatures for shergottites including RBT 04261 and RBT 04262, we propose that both geochemically enriched and depleted shergottites were ejected from the same launch site on Mars.
机译:Shergottites在火星上采样了两个不同的地球化学储层。玄武质和橄榄石质斜长岩分别从地球化学富集和贫化的储层中取样,而斜长石斜长岩仅已知具有相对有限的中间地球化学特征,这可能是由于两个地球化学末段储层的混合所致。在这里,我们显示最近发现的斜方锰矿(RBT)04261和RBT 04262是源自富集储层的斜方沸石斜方锰矿的最初实例.RBT 04261和RBT 04262最初被鉴定为橄榄石-天然斜方锰矿,实际上是斜方沸石斜方锰矿。两种陨石都具有几乎相同的质地和矿物质组成,这表明它们应该配对。每种都包含两种不同的纹理:弹性和非弹性。滑石质区域由包裹橄榄石晶粒的辉石o晶构成。所有的辉石方晶都具有由辉石包裹的皂石芯。非政治地区由橄榄石,辉石,蒙脱石和少量的绢云母,铬铁矿和钛铁矿组成。橄榄石和辉石的Mg值最低,而钙锰矿的钙长石成分最少。此外,这两个陨石中的蒙脱石的模态丰度明显高于其他锂沸石斜铁矿.RBT 04261和RBT 04262的稀土元素(REE)预算以斑岩为主。这种矿物的略轻稀土元素(LREE)富集模式类似于地球化学富集的玄武岩赤铁矿Shergotty和Zagami中的菱铁矿,与其他锂沸石榴辉岩中的贫稀土的富硒模式不同。高钙和低钙辉石的REE模式也与Shergotty和Zagami中的相似。计算出与辉石ox晶的核处于平衡状态的熔体的REE模式与RBT 04262全岩石以及其他地球化学富集的玄武岩黑云母的全岩石成分平行。这些观察结果表明,RBT 04262采样了富集和氧化储层,类似于某些玄武岩斜方岩采样的储集层,并且与形成RBT 04262的氧化条件一致(logfO_2 = QFM-1.6)。认为RBT 04261和RBT 04262代表了叶绿石型斜方岩中最演化的岩浆,该岩浆起源于火星上富含地球化学成分的储层。基于对包括RBT 04261和RBT 04262在内的斜方岩的岩石学,地球化学和年代学特征之间的关系的评估,我们建议从火星上的同一发射场中喷出富含地球化学成分和贫化的斜方岩。

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