花岗岩系统的奇特之处,包括稀有金属伟晶岩

Q4 Earth and Planetary Sciences
Semen M. Beskin, Бескин Семен Матвеевич, Y. Marin, Марин Юрий Борисович
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引用次数: 2

摘要

在大多数稀有金属伟晶岩中,通常显示出两代花岗质伟晶岩:含绿柱石的,通常含有铌酸钽、白云母,与脉状花岗浅花岗杂岩不可分离;钠锂(Li、Ta、Cs、Be、Sn)伟晶岩(或lct伟晶岩),可分为“复杂稀有金属”类,伟晶岩分带和主要矿化(锂辉石、钽酸盐、绿柱石、锡石、榴辉石、辉长石、辉长石的大晶体)在其身体的中心部位(Koktogay、Bernick Lake、Bikita、Karibib、Varutresk、Vishnyakovskoye、“钠长石-锂辉石”等),它们组成了许多广阔的伟晶岩岩脉,没有分区,在它们的领域内组合长达10-15公里甚至更多(Kings Mountain, Zavitinskoye, Goltsovoye, Kolmozero, Polmos Tundras, Tastygskoye等)。在某些情况下(Zavitinskoye, Vasin-Mylk, Shuckbjul),在“钠长石-锂辉石伟晶岩”输送脉的“头部”中出现了成熟的复杂稀有金属伟晶岩。寻找“钠辉石-锂辉石伟晶岩”的“母花岗岩”是没有意义的,因为它们不是伟晶岩,而是花岗岩,尽管是特殊的(事实上,它们是alakhinsky型的锂辉石花岗岩)。术语,似乎是重新调整:“花岗岩,而不是伟晶岩”,有其科学(a)和预测(b)的后果。首先,解决了(a)母花岗岩问题,消除了对“钠长辉石伟晶岩”伟晶岩地位的异议。这类伟晶岩在某些含伟晶岩地区的岩浆作用史上占据了独立的锂辉石-稀有金属-花岗岩阶段,最后形成了自己的真正的复伟晶岩。②(b)可以认为,在Koktogay、Bernick Lake、Bikita、Karibib、Vishnyakovskoye等复杂伟晶岩田下,赋存着一系列锂辉石—稀有金属花岗岩脉(即Li矿床),是复杂伟晶岩的分异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pecularites of granite sistems including rare-metal pegmatites
There are usually two generations of granitic pegmatites revealed in most of rare-metal pegmatite fields: beryl-bearing ones, often with tantalum-niobate, muscovite, inseparable from vein-shaped granite leucogranite complex, and sodium-lithium (Li, Ta, Cs, Be, Sn) pegmatites (or LCT-pegmatites), which are subdivided into «complex rare-metal» ones, with the pegmatite zonation and the major mineralization (large crystals of spodumene, tantalates, beryl, cassiterite, pollucite, petalite, amblygonite) in central parts of their body (Koktogay, Bernick Lake, Bikita, Karibib, Varutresk, Vishnyakovskoye, etc.), and «albite-spodumene» ones, composing numerous extensive pegmatite dykes without zoning, grouping in their fields as long as up to 10—15 km and more (Kings Mountain, Zavitinskoye, Goltsovoye, Kolmozero, Polmos Tundras, Tastygskoye, etc.). In some cases (Zavitinskoye, Vasin-Mylk, Shuckbjul), there are established complex rare-metal pegmatites occurring in «heads» of conveying dykes of «albite-spodumene pegmatites». The search of «parent granites» for «albite-spodumene pegmatites» is meaningless, because they are not pegmatites, but granites, although special ones (in fact, they are spodumene granites of the alakhinsky type). The terminological, as it seems to be, readjustment: «granite, not pegmatite», has its scientific ( a ) and prognostic ( b ) consequences. Firstly, there is resolving ( a ) the problem of parent granites, objections to the pegmatite status of «albite-spodumene pegmatites» become removed. This type of pegmatites occupies in history of magmatism over some pegmatite-bearing areas its independent, spodumene-rare-metal-granite stage, concluded by formation of their own — true — complex pegmatites. And secondly ( b ): it may be assumed that under such complex pegmatite fields as Koktogay, Bernick Lake, Bikita, Karibib, Vishnyakovskoye, there are occurring series of dikes of spodumene-rare-metal granites (i. e., Li ore deposits), which are differentiates of complex pegmatites.
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Zapiski Rossiiskogo Mineralogicheskogo Obshchestva
Zapiski Rossiiskogo Mineralogicheskogo Obshchestva Earth and Planetary Sciences-Economic Geology
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