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首页> 外文期刊>Mineralogical Magazine >Clinoferrosilite-bearing kelyphite: a breakdown product of xenolithic garnet, Delegate breccia pipes, New South Wales, Australia
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Clinoferrosilite-bearing kelyphite: a breakdown product of xenolithic garnet, Delegate breccia pipes, New South Wales, Australia

机译:含斜铁硅铁矿的硬脂石:异石石榴石的分解产物,澳大利亚新南威尔士州的代表角砾岩管道。

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摘要

Garnet pyroxenite xenoliths from the Delegate nephelinitic breccia pipes, New South Wales, Australia, contain relict garnets (py_(40) a1m_(39) gr_(21)) which are replaced by dark kelyphitic rims resulting from garnet breakdown. The kelyphite is composed of a lamellar intergrowth of secondary minerals, in which the lamellae are <1 #mu# m in width. Analyses by SEM and ICPMS reveal that the kelyphite has an identical bulk chemical composition to the primary garnet. Kelyphitic rims on garnet are well known from xenoliths and xenocrysts in kimberlite pipes and from tectonically-uplifted mafic and ultramafic rocks in some metamorphic terranes. Orthopyroxene occurs in metamorphic kelyphites and it has been assumed that orthopyroxene is also the breakdown product of garnet transported in basic-ultrabasic magmas. However, TEM study of Delegate kelyphite shows that the ultrafine lamellae do not contain orthopyroxene but are instead composed of magnesian clinoferrosilite (Fn_(45)Fs_(53)), and lesser ferroan spinel and anorthite. The clinoferrosilite is probably the inversion product of initially-formed magnesian protoferrosilite. The breakdown reaction is believed to result from a sudden change to lower temperature and pressure conditions when the xenoliths were transported in the Delegate magma from approx 40 km depth to the surface.
机译:来自澳大利亚新南威尔士州Delegate霞石角砾岩管道的石榴石辉绿岩异岩含有残骸石榴石(py_(40)a1m_(39)gr_(21)),这些石榴石被石榴石分解后形成的深色怪异轮辋取代。陨石由次生矿物的层状共生组成,其中片状体的宽度<1#μm。 SEM和ICPMS的分析表明,该钙铝石具有与初级石榴石相同的整体化学组成。石榴石上的凯夫特岩缘从金伯利岩管中的异岩和异变体以及某些变质地层中构造抬升的镁铁质和超镁铁质岩石中众所周知。邻苯二甲酚存在于变质的陨石中,据推测,邻苯二甲酚也是在碱性-超碱性岩浆中运输的石榴石的分解产物。然而,对代表硬脂石的TEM研究表明,超细薄片不包含邻苯二茂,而是由镁质斜铁硅铁矿(Fn_(45)Fs_(53))以及较小的亚铁尖晶石和钙长石组成。斜铁硅铁矿可能是最初形成的镁质原铁硅铁矿的反演产物。据信这种分解反应是由于异种石料在代表岩浆中从大约40 km的深度输送到地面时突然转变为较低的温度和压力条件引起的。

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