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首页> 外文期刊>Mineralogical Magazine >Stability of naujakasite in hyperagpaitic melts, and the petrology of naujakasite lujavrite in the Ilimaussaq alkaline complex, South Greenland
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Stability of naujakasite in hyperagpaitic melts, and the petrology of naujakasite lujavrite in the Ilimaussaq alkaline complex, South Greenland

机译:高泥质熔体中的八面沸石的稳定性以及南格陵兰岛伊利马萨克碱性复合物中的八面沸石的岩石学

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摘要

Naujakasite (Na6(Fe,Mn)Al4Si8O26) is a characteristic, rock-forming mineral of hyperagpaitic naujakasite lujavrite (arfvedsonite + naujakasite + steenstrupine + albite ± relict nepheline ± microcline ± ussingite) from the Ilímaussaq complex, South Greenland, and is only known from this complex. The qualitative stability relationships of naujakasite-bearing, low-variance liquidus mineral assemblages at near-solidus conditions in lujavritic magma can be modelled within the six-component system Si-Al-Fe-Na-O-H. The modelling suggests that an uncommon combination of elevated water activity and low oxygen fugacity is needed to stabilize arfvedsonite + naujakasite mineral assemblages in highly sodic liquids. These conditions are incompatible with the stable coexistence of aegirine and arfvedsonite. They are met in the arfvedsonite-bearing lujavrites of Ilímaussaq, but apparently not in rocks of similar composition in the Khibina and Lovozero complexes, Kola Peninsula, where aegirine- or aegirine-arfvedsonite-bearing mineral assemblages are characteristic. Liquid lines of descent leading to crystallization of naujakasite have to pass through the albite+nepheline+arfvedsonite liquidus field in the Si-Al-Fe-Na-O-H system, reaching this field at the high-Na side of the albite-nepheline-arfvedsonite plane.
机译:Naujakasite(Na 6 (Fe,Mn)Al 4 Si 8 O 26 )是一种典型的岩石-从Ilímaussaq 复合体,南格陵兰岛,并且仅从该复合体中知道。 在接近固相线的条件下,含八面沸石的低定性液相线矿物组合的定性稳定性关系可以在六组分 系统Si-Al-Fe-Na-OH内对黄液岩浆中的 进行建模。该模型表明,需要在高碱度的液体中将水活度升高和低氧逸度 的不常见组合来稳定钠镁铝石+钠铁矿矿物组合。这些条件与 eg庚啶和Arfvedsonite的稳定共存不相容。它们在伊利马苏克(Ilímaussaq)的含arfvedsonite的黄闪石中 ,但显然不在Khibina 以及Lovozero络合物,可拉半岛的类似组成的岩石中,其中带有aegirine或aegirine-arfvedsonite的 矿物组合具有特征性。导致紫苏铁矿结晶的下降液体 必须通过Si-Al-Fe-Na-OH 中的钠长石+霞石+钠锂辉石液相线 / sup>系统,在钠长石,霞石-arfvedsonite 平面的高Na侧到达此场。

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