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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Petrogenesis of Cenozoic, alkalic volcanic lineages at Mount Morning, West Antarctica and their entrained lithospheric mantle xenoliths: Lithospheric versus asthenospheric mantle sources
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Petrogenesis of Cenozoic, alkalic volcanic lineages at Mount Morning, West Antarctica and their entrained lithospheric mantle xenoliths: Lithospheric versus asthenospheric mantle sources

机译:西南极山莫纳尔晨新生代,碱性火山世系的岩石成因及其夹带的岩石圈地幔异岩:岩石圈与软流圈地幔源

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摘要

Two volcanic lineages are identified at Mount Morning, a Cenozoic to recent, eruptive centre in the Ross Sea, West Antarctica, which is part of the McMurdo Volcanic Group. Both the older (at least 18.7-11.4Ma), mildly alkalic, nepheline- or quartz-normative Mason Spur Lineage, and the younger (at least 6-0.02Ma), nepheline normative, strongly alkalic Riviera Ridge Lineage evolved by fractional crystallization from nominally anhydrous (<0.5wt% H_2O) parental magmas. Both lineages are analogous to other, relatively anhydrous lineages in the McMurdo Volcanic Group and distinctly different from those in which kaersutite is present on the liquid line of descent. Sub-continental lithospheric mantle (SCLM) xenoliths entrained in Riviera Ridge lineage rocks show trace element and isotopic Sr-Nd-Pb variation that is consistent with four-component mixing whereby depleted mantle has been refertilised by enriched, HIMU-like and Nb-enriched (carbonatite) components. Refertilization may have occurred c. 530-490Ma ago when fluids derived from subduction associated with Gondwanaland amalgamation infiltrated the SCLM. Similar trace element and isotope variation (Sr-Nd-Pb) in Mount Morning basaltic rocks and entrained xenoliths suggests that the source for the basaltic magmas lies (at least in part) in the lithospheric mantle. It has long been recognized that Cenozoic volcanic rocks in Antarctica (Victoria Land - including Mount Morning - and Marie Byrd Land), Zealandia and eastern Australia share common chemical and isotopic source characteristics and they have been argued to collectively constitute a single diffuse alkaline magmatic province (DAMP). Source characteristic similarities suggest DAMP volcanic rocks inherit at least some of their trace element and isotopic characteristics from the lithospheric mantle. Super-chondritic Nb/Ta values measured in some SCLM xenoliths and volcanic rocks at Mount Morning, and in volcanic rocks across the DAMP, can be explained by addition of ≤5wt% carbonatite to the source. The DAMP SCLM is a significant Nb reservoir that offers an explanation for the Nb paradox.
机译:在晨曦山发现了两个火山世系,这是西极南极罗斯海新生喷发中心的新生代,该中心是麦克默多火山群的一部分。较老的(至少18.7-11.4Ma),轻度碱性,霞石或石英规范的梅森马刺谱系和较年轻的(至少6-0.02Ma)的霞石,规范碱性,强碱性的里维埃拉岭谱系都是通过从标称无水(<0.5wt%H_2O)亲本岩浆。两种谱系都类似于麦克默多火山群中的其他相对无水的谱系,并且与下降液体线上存在钾铝矾的谱系明显不同。里维埃拉山脊谱系夹带的次大陆岩石圈地幔(SCLM)异岩显示了微量元素和同位素Sr-Nd-Pb的变化,这与四组分混合相一致,贫化的地幔被富集,类似HIMU和富Nb的物质所替代(碳酸盐)成分。可能发生了转殖c。 530-490Ma以前,当与冈瓦纳大陆合并产生的俯冲作用产生的流体渗入SCLM时。早上山玄武岩和夹带的异岩中类似的痕量元素和同位素变化(Sr-Nd-Pb)表明,玄武岩浆的来源(至少部分)位于岩石圈地幔中。长期以来,人们已经认识到南极洲(维多利亚州的土地-包括莫宁山-和玛丽·伯德土地),西兰西亚和澳大利亚东部的新生代火山岩具有共同的化学和同位素源特征,并被认为共同构成了一个单一的弥散性碱性岩浆区。 (潮湿)。烃源岩特征的相似性表明,DAMP火山岩至少从岩石圈地幔中继承了其痕量元素和同位素特征。在源岩中添加≤5wt%的碳酸盐岩可以解释在早晨山的某些SCLM异质岩和火山岩中以及在DAMP上的火山岩中测得的超软骨状Nb / Ta值。 DAMP SCLM是重要的Nb储层,为Nb悖论提供了解释。

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