首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Ancient metasomatism recorded by ultra-depleted garnet inclusions in diamonds from DeBeers Pool, South Africa
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Ancient metasomatism recorded by ultra-depleted garnet inclusions in diamonds from DeBeers Pool, South Africa

机译:南非DeBeers Pool钻石中石榴石中的超耗尽石榴石包裹体记录了古代交代作用

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Peridotitic garnet inclusions in diamonds from the DeBeers Pool mines resent samples from an extremely depleted mantle source. A large number of garnet inclusions have CaO contents of less than 1.8 wt.% and olivine inclusions are characterized by very high Mg-numbers (average : 94.6). These observations suggest that initial melt depletion in the protolith for the cratomc root beneath Kimberley (Kaapvaal Craton) exceeded orthopyroxene exhaustion (i.e. ≥50% melt extraction) and hence went farther than typically observed for cratonic peridotites worldwide. This signature of extreme depletion is not readily apparent from the study of mantle xenoliths from the same area and strongly underlines the unique role that diamond may play as a time capsule. Analyses of rare earth and other trace elements show that DeBers Pool garnet inclusions, despite their ultra depleted major element composition, were affected by metasomatic enrichment processes similar to those recorded by inclusions in diamonds worldwide. The DeBeers Pool garnet inclusions have a wide range of REE concentrations with variable sinuosity of their chondrite normalized abundance patterns. Sinuosity of gamet REE_N patterns generally decreases with increasing fertility (i.e.higher Ca Ti, Fe, Y, and Zr); however, distinction between the REE_N signatures of harzburgitic and lherzolitic garnets is not possible. The REE signatures indicate that the source rocks of these garnets were affected by two phases of metasomatism. LREE-MREE enrichment is preserved by all garnets indicates interaction with a fluid of of highly fractionated character. The variable LREE-MREE concentrations of the garnet inclusions result from progressive evolution of the fluid to higher LREE/HREE ratios during continued equilibration with of precipitation of garnet. This metasomatic fluid was pervasive and affected the entire depth section of the lithosphere represented by the DeBeers Pool inclusions. A second phase of enrichment by HREE- and other HFSE-carrying melts, that also transported major elements (Ca and Fe), affected only a portion of the diamond source region and was restricted to comparatively shallower lithosphere at depths <180 km. Diamond precipitation was likely associated with both styles of metasomatic re-enrichment. The similarity of lherzolitic and harzburgitic REE_N patterns and their similarly variable REE concentrations suggests diamond of both parageneses were formed concurrently during both phases of metasomatic re-enrichment.
机译:DeBeers Pool矿山钻石中的橄榄石石榴石夹杂物非常讨厌地幔来源中的样品。大量石榴石夹杂物的CaO含量低于1.8 wt。%,橄榄石夹杂物的特征是非常高的Mg值(平均:94.6)。这些观察结果表明,金伯利(Kaapvaal Craton)之下的Cratomc根在原生质体中的初始熔体耗竭超过了邻苯二甲exhaust耗尽(即熔体提取率≥50%),因此比全世界克拉通橄榄岩通常所观察到的要远。从对同一地区的地幔异种岩的研究中,这种极度耗竭的迹象并不十分明显,并强烈强调了钻石可能充当时间囊的独特作用。稀土和其他微量元素的分析表明,尽管DeBers Pool石榴石石榴石内含物的主要成分超耗尽,但它们却受到交代富集过程的影响,这一过程与全世界钻石中的夹杂物所记录的过程相似。 DeBeers Pool石榴石内含物具有广泛的REE浓度,其球粒陨石归一化丰度模式具有不同的正弦度。配子REE_N模式的正弦率通常随着生育力的增加而降低(即较高的Ca Ti,Fe,Y和Zr);但是,不可能区分哈兹堡型石榴石和莱索尔型石榴石的REE_N特征。稀土元素特征表明这些石榴石的烃源岩受到交代作用的两个阶段的影响。所有石榴石都保留了轻度至轻度的富集,表明与具有高度分馏特征的流体相互作用。石榴石夹杂物的可变LREE-MREE浓度是由于在与石榴石沉淀持续平衡期间,流体逐渐演变为较高的LREE / HREE比所致。这种交代流体普遍存在,并影响了以DeBeers Pool包裹体为代表的岩石圈的整个深度段。由HREE和其他携带HFSE的熔体进行的富集第二阶段,也转移了主要元素(Ca和Fe),仅影响了钻石源区的一部分,并被限制在深度小于180 km的较浅岩石圈中。钻石的沉淀可能与两种交代重富形式有关。变石质和变质岩REE_N模式的相似性以及它们相似的REE浓度表明,在交代重富化的两个阶段同时形成了两个同族的钻石。

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