Metamorphic titanite–zircon pseudomorphs after igneous zirconolite

IF 1.8 3区 地球科学 Q2 MINERALOGY European Journal of Mineralogy Pub Date : 2023-09-19 DOI:10.5194/ejm-35-773-2023
Cindy L. Urueña, Charlotte Möller, Anders Plan
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Abstract

Abstract. The formation of metamorphic zircon after baddeleyite is a well-known reaction that can be used to date the metamorphism of igneous silica-undersaturated rocks. By contrast, metamorphic minerals formed after igneous zirconolite have rarely been reported. In this paper, we document metamorphic titanite + zircon pseudomorphs formed from the metamorphic breakdown of igneous zirconolite in syenodiorite and syenite, in the southeastern Sveconorwegian Province, Sweden. Water-rich fluid influx during tectonometamorphism in epidote–amphibolite-facies metamorphic conditions caused the release of silica during a metamorphic reaction involving igneous feldspar and pyroxene and the simultaneous breakdown of igneous Zr-bearing phases. Typical titanite + zircon intergrowths are elongated or platy titanite crystals speckled with tiny inclusions of zircon. Most intergrowths are smaller than 15 µm; some are subrounded in shape. Locally, bead-like grains of titanite and zircon are intergrown with silicate minerals. The precursor igneous zirconolite was found preserved only in a sample of near-pristine igneous syenodiorite, as remnant grains of mainly < 2 µm in size. Two somewhat larger crystals, 8 and 12 µm, allowed semiquantitative confirmation using microprobe analysis. Analogous with zircon pseudomorphs after baddeleyite, titanite + zircon pseudomorphs after zirconolite potentially offer dating of the metamorphic reaction, although the small size of the crystals makes dating with today's techniques challenging. The scarcity of reports of zirconolite and pseudomorphs reflects that they are either rare or possibly overlooked.
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火成岩锆石后的变质钛-锆石伪晶
摘要变质锆石的形成是一个众所周知的反应,可以用来确定火成岩硅质欠饱和岩石的变质作用。相比之下,在火成岩锆石之后形成的变质矿物鲜有报道。本文记录了瑞典Sveconorwegian省东南部正长闪长岩和正长岩中火成岩锆石变质破碎形成的变质钛矿+锆石伪晶。在绿帘石-角闪岩相变质条件下,构造变质过程中富水流体的流入导致了火成岩长石和辉石变质反应过程中二氧化硅的释放,火成岩含锆相同时破裂。典型的钛矿+锆石共生体是细长或片状的钛矿晶体,带有微小的锆石包裹体。大部分共生体小于15µm;有些是圆形的。在局部,钛矿和锆石的珠状颗粒与硅酸盐矿物共生。前体火成岩锆石仅在一个接近原始的火成岩正长闪长岩样本中被发现,主要为<尺寸为2µm。两个稍大的晶体,8和12µm,允许使用微探针分析进行半定量确认。类似于坏辉石之后的锆石假晶,锆石之后的钛矿+锆石假晶可能提供变质反应的定年,尽管晶体的小尺寸使得用今天的技术定年具有挑战性。关于锆石和假晶的报道很少,这表明它们要么很罕见,要么可能被忽视。
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来源期刊
CiteScore
2.80
自引率
9.50%
发文量
40
审稿时长
6-12 weeks
期刊介绍: EJM was founded to reach a large audience on an international scale and also for achieving closer cooperation of European countries in the publication of scientific results. The founding societies have set themselves the task of publishing a journal of the highest standard open to all scientists performing mineralogical research in the widest sense of the term, all over the world. Contributions will therefore be published primarily in English. EJM publishes original papers, review articles and letters dealing with the mineralogical sciences s.l., primarily mineralogy, petrology, geochemistry, crystallography and ore deposits, but also biomineralogy, environmental, applied and technical mineralogy. Nevertheless, papers in any related field, including cultural heritage, will be considered.
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