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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Contrasting types of metasomatism in dunite, wehrlite and websterite xenoliths from Kimberley, South Africa
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Contrasting types of metasomatism in dunite, wehrlite and websterite xenoliths from Kimberley, South Africa

机译:南非金伯利的Dunite,Wehrlite和Websterite异岩中不同交代作用的类型

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Dunite, wehrlite and websterite are rare members of the mantle xenolith suite in the Kimberley kimberlites or the Kaapvaal Craton in southern Africa. All three types were originally residues of extensive melt extraction and experienced varying amounts and types of melt re-enrichment. The melt depletion event, dated by Re-Os isotope systematics at 2.9 Ga or older, is evidenced by the high Mg# (Mg/(Mg + Fe)) of silicate minerals (olivine (0.89-0.93); pyroxene (0.88-0.93); garnet (0.72-0.85)), high Cr# (Cr/(Cr + Al)) of spinel (0.53-0.84) and mostly low whole-rock SiO2, CaO and Al2O3 contents. Shortly after melt depletion, websterites were formed by reaction between depleted peridotites and silica-rich melt (>60 wt% SiO2) derived by partial melting of eclogite before or during cratonization. The melt-peridotite interaction converted olivine into orthopyroxene. All three xenolith types have secondary metasomatic clinopyroxene and garnet, which occur along olivine grain boundaries and have an amoeboid texture. As indicated by the preservation of oxygen isotope disequilibrium in the minerals and trace-element concentrations in clinopyroxene and garnet, this metasomatic event is probably of Mesozoic age and was caused by percolating alkaline basaltic melts. This melt metasomatism enriched the xenoliths in CaO, Al2O3, FeO and high-field-strength-elements, and might correspond to the Karoo magmatism at 200 Ma. The websterite xenoliths experienced both the orthoyproxene-enrichment and clinopyroxene-garnet metasomatic events, whereas dunite and wehrlite xenoliths only saw the later basaltic melt event, and may have been situated further away from the source of melt migration channels. (C) 2008 Elsevier Ltd. All rights reserved.
机译:在南非南部的金伯利金伯利岩或Kaapvaal Craton中,地幔异种岩套件中稀有的是Dunite,Wehrlite和Websterite。这三种类型最初都是大量熔体萃取的残留物,并且经历了不同数量和类型的熔体再富集。硅酸盐矿物(橄榄石(0.89-0.93);辉石(0.88-0.93)的高Mg#(Mg /(Mg + Fe))证明了Re-Os同位素系统在2.9 Ga或更旧日期上的熔体耗竭事件);石榴石(0.72-0.85)),尖晶石的Cr#高(Cr /(Cr + Al))(0.53-0.84),全岩中SiO2,CaO和Al2O3含量低。熔体贫化后不久,贫化的橄榄岩和通过在辉石化之前或之中进行榴辉岩的部分熔融而产生的富硅石熔体(> 60 wt%SiO2)之间的反应形成了维斯特石。熔融-橄榄岩的相互作用将橄榄石转变为邻苯二甲酚。所有这三种异种岩都具有次生交代的次氯环己烯和石榴石,它们沿橄榄石晶界出现,并具有变形虫质地。正如矿物中氧同位素不平衡的保留以及斜生辉石和石榴石中痕量元素的浓度所表明的那样,这种交代事件可能是中生代,是由碱性玄武质熔体渗滤引起的。这种熔体交代作用丰富了CaO,Al2O3,FeO和高场强元素中的异岩,并且可能对应于200 Ma的Karoo岩浆作用。韦氏体异种石经历了邻苯二酚富集和斜向四边形-石榴石的交代事件,而榴辉岩和白云母异种石只经历了较晚的玄武质熔融事件,并且可能位于远离熔融物迁移通道的位置。 (C)2008 Elsevier Ltd.保留所有权利。

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