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Genesis of melilitolite from Colle Fabbri: inferences from melt inclusions

机译:科勒·法布里(Colle Fabbri)的硅铁矿的成因:熔体包裹体的推论

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摘要

Melilite and wollastonite from the Colle Fabbri stock contain silicate melt and silicate-carbonate inclusions. The homogenization temperatures of silicate inclusions are within the magmatic temperature range of mantle ultrabasic melts: about 1,320 ± 15 °С. Their composition is melilititic and evolves to the composition of leucite tephrite and phonolite. The composition of silicate-carbonate inclusions are high SiO2, Ca-rich, enriched in alkalies and are similar to that of inclusions of carbonatite melts in the minerals of melilitolites of other intrusive ultramafic complexes. They are also similar to the compositions of metasomatized travertine covering the melilitolite stock. The presence of primary silicate and silicate-carbonate inclusions evidences that the melilitite magma from which melilitolites of Colle Fabbri crystallized was associated with carbonatite liquid. This liquid was highly fluidized, mobile and aggressive. Actively interacting with overlying travertine, the liquid enriched them with alkalies, aluminosilicates and incompatible elements, which resulted in the equalization of their compositions. Heterogeneous compositional dominions were formed at the contact between melilitolite and wall pelites. In the minerals of these contact facies high-Si melt inclusions of varying composition have been observed. Their occurrence is related to the local assimilation by the high-temperature melilitite magma of pelitic country rocks. The content of incompatible elements in melilitite melts and melilitolites is higher than the mantle norm and they have peculiar indicator ratios, spectra, Eu/Eu* ratio, which suggest a peculiar mantle source.
机译:来自Colle Fabbri原料的硅铁矿和硅灰石含有硅酸盐熔体和硅酸盐-碳酸盐夹杂物。硅酸盐包裹体的均质温度在地幔超基性熔岩的岩浆温度范围内:约1,320±15°C。它们的组成是熔变的,并演变成白云石,辉石和方沸石的组成。硅酸盐-碳酸盐包裹体的成分是高SiO2,富含Ca,富含碱金属,并且与其他侵入性超镁铁矿配合物的黑云母矿物中的碳酸盐熔体包裹体相似。它们也类似于覆盖桑蚕丝原材的交化钙华的组成。原生硅酸盐和硅酸盐-碳酸盐夹杂物的存在表明,Colle Fabbri的melilitolite从中结晶的硅镁石岩浆与碳酸盐岩液体有关。该液体高度流态化,流动和侵蚀性强。液体与上层的钙华有效相互作用,使它们富含碱,铝硅酸盐和不相容的元素,从而使它们的组成均等。异硅藻土和壁质石之间的接触形成了异质成分。在这些接触相的矿物中,观察到了各种成分的高硅熔体夹杂物。它们的发生与高岭土乡村岩石的高温陨石岩浆的局部同化有关。陨石熔体和melilitolite中不相容元素的含量高于地幔范数,并且它们具有特殊的指示剂比率,光谱,Eu / Eu *比,这表明地幔来源奇特。

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  • 来源
    《Mineralogy and Petrology》 |2013年第6期|897-914|共18页
  • 作者单位

    V.S. Sobolev Institute of Geology and Mineralogy: Siberian Branch Russian Academy of Sciences">(1);

    V.S. Sobolev Institute of Geology and Mineralogy: Siberian Branch Russian Academy of Sciences">(1);

    Novosibirsk State University">(3);

    Dipartimento di Scienze Università G.d’Annunzio">(2);

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  • 入库时间 2022-08-18 00:12:40

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