首页> 外文期刊>Minerals >Non-Metamict Aeschynite-(Y), Polycrase-(Y), and Samarskite-(Y) in NYF Pegmatites from Arvogno, Vigezzo Valley (Central Alps, Italy)
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Non-Metamict Aeschynite-(Y), Polycrase-(Y), and Samarskite-(Y) in NYF Pegmatites from Arvogno, Vigezzo Valley (Central Alps, Italy)

机译:来自Vigezzo谷(意大利中部阿尔卑斯山)的Arvogno的NYF伟晶岩中的非陨石Aeschynite-(Y),Polycrase-(Y)和Samarskite-(Y)

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At Arvogno, Vigezzo valley in the Central Alps, Italy, pegmatite dikes are unique in the scenario of a tertiary alpine pegmatite field because they show marked geochemical and mineralogical niobium–yttrium–fluorine features. These pegmatites contain AB 2 O 6 aeschynite group minerals and ABX 2 O 8 euxenite group minerals as typical accessory minerals including aeschynite-(Y), polycrase-(Y), and samarskite-(Y). They are associated with additional typical minerals such as fluorite, Y-dominant silicates, and xenotime-(Y). The Y–Nb–Ti–Ta AB 2 O 6 and ABX 2 O 8 oxides at the Arvogno pegmatites did not exhibit any textural and compositional features of oxidation or weathering. They are characterized by low self-radiation-induced structural damage, leading to the acquisition of unit-cell data for aeschynite-(Y), polycrase-(Y), and samarskite-(Y) by single-crystal X-ray diffraction. Aeschynite-(Y) and polycrase-(Y) crystals allowed for both to provide space groups whereas samarskite-(Y) was the first crystal from pegmatites for which cell-data were obtained at room temperature but did not allow for the accurate determination of the space group. According to the chemical compositions defined by Ti-dominant content at the B-site, the cell parameters, respectively, corresponded to polycrase-(Y), aeschynite-(Y), and the monoclinic cell of samarskite-(Y). Emplacement of Alpine pegmatites can be related to the progressive regional metamorphic rejuvenation from east to west in the Central Alps, considering the progressive cooling of the thermal Lepontine Barrovian metamorphic dome. Previous studies considered magmatic pulses that led to emplace the pegmatite field in the Central Alps. As an example, the pegmatites that intruded the Bergell massif were aged at 28–25 millions of years or younger, around 20–22 m.y.
机译:在意大利中部阿尔卑斯山维格佐谷的Arvogno,伟晶岩堤在第三纪伟晶岩田中是独特的,因为它们显示出明显的地球化学和矿物学上的铌-钇-氟特征。这些伟晶岩含有AB 2 O 6钠锰矿类矿物和ABX 2 O 8钠锌矿类矿物作为典型的辅助矿物,包括钠锰矿-(Y),多晶型-(Y)和sa(-)。它们与其他典型的矿物相关,例如萤石,Y型硅酸盐和Xenotime-(Y)。 Arvogno伟晶岩中的Y–Nb–Ti–Ta AB 2 O 6和ABX 2 O 8氧化物没有任何氧化或风化的组织和成分特征。它们的特征在于低的自辐射诱导的结构破坏,从而导致通过单晶X射线衍射获得水滑石(Y),多晶型(Y)和and石(Y)的晶胞数据。 Aeschynite-(Y)和polycrase-(Y)晶体都可以提供空间基团,而samarskite-(Y)是伟晶岩的第一个晶体,其晶胞数据是在室温下获得的,但无法准确测定空间群。根据B处Ti占主导地位的含量定义的化学组成,细胞参数分别对应于多裂隙岩(Y),水滑石(Y)和闪锌矿岩(Y)的单斜晶系。考虑到Lepontine Barrovian热变质穹顶的逐渐冷却,高山伟晶岩的进驻可能与中部阿尔卑斯山从东向西的逐步变质复兴有关。先前的研究认为,岩浆脉冲导致在中部阿尔卑斯山出现伟晶岩场。例如,侵入贝尔格断层岩的伟晶岩年龄在28–25百万岁或更年轻,大约20–22m.y。

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