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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Geochronology of granulite, charnockite and gneiss in the poly-metamorphosed Gaozhou Complex (Yunkai massif), South China: Emphasis on the in-situ EMP monazite dating
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Geochronology of granulite, charnockite and gneiss in the poly-metamorphosed Gaozhou Complex (Yunkai massif), South China: Emphasis on the in-situ EMP monazite dating

机译:中国南方多变质高州复合体(云海地块)中的花岗石,霞灰岩和片麻岩的年代学:强调原位EMP独居石定年

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摘要

The in-situ EMP (electron microprobe) monazite age dating performed directly in the polished sections, in addition to the conventional U-Pb zircon and EMP monazite age dating on grains from heavy mineral concentrates, has been applied to the granulite, charnockite and gneiss in the Gaozhou Complex of the Yunkai massif in South China. While the conventional dating systems all give Caledonian ages, the in-situ EMP monazite ages provide more information to reveal not only detailed age groups pertaining to the Caledonian orogeny but also traces of later thermal events overprinting these rocks. For granulites, although some monazites present zoning (concentric, patchy and complex) in the BSE images, no discernable age differences are observed. Resetting of the Th-U-Pb monazite dating system under the high temperature condition could be the reason. Ages of homogeneous monazite in garnet porphyroblast (ca. 440 Ma) of the garnet-cordierite granulite that match nicely with the U-Pb zircon ages are systematically older than those in the matrix (ca. 430 Ma). The same case of two age groups is also present in the orthopyroxene-biotite granulite as revealed by monazite inclusions in plagioclase and orthopyroxene and those in quartz, respectively. For charnockites, despite similar ages of ca. 430 Ma are given by monazite in biotite and zircon in the rock, significant younger ages are obtained from monazites with particular features. Relict monazites with a breakdown texture to form successive layers of apatite and allanite in the rim as well as those which are close to the biotite-chlorite microvein always show a similar age of ca. 230 Ma. Moreover, tiny monazites in close association with the garnetiferous corona mainly surrounding ortho-pyroxene give rise to another age group around 370 Ma. For gneissic rocks, monazites enclosed by quartz give 434 Ma and those setting in the chlorite-epidote microvein of a paragneiss yield 237 Ma, consistent with the U-Pb zircon core-rim age variations in the orthogneisses. With all these data, we suggest that the Gaozhou Complex is a Caledonian high-grade metamorphic terrain enduring initiation of granulites and paragneisses at the progressive metamorphism that predates intrusion of charnockites, formation of orthogneisses and modification of granulites and paragneisses at the peak time (436-432 Ma). It was then reactivated by the Hercynian and more vigorous Indosinian orogenies probably involving participation of fluid phases in the long course of retrogressive metamorphism during the early Phanerozoic. Such a tectonothermal evolution in the Yunkai massif may be comparable to the Kontum massif in central Vietnam.
机译:除了常规的U-Pb锆石和EMP独居石年龄在重矿物精矿的晶粒上定年之外,直接在抛光区域中执行的原位EMP(电子探针)独居石年龄定年法也已应用于花岗石,菱镁矿和片麻岩在华南云开地块的高州综合体中。尽管常规测年系统都给出了加里东时期,但原位EMP独居石年龄不仅提供了更多信息,以揭示与加里东造山运动有关的详细年龄组,而且还揭示了后来的热事件覆盖这些岩石的痕迹。对于花岗石,尽管某些独居石在BSE图像中显示出分区(同心,斑片和复杂),但未观察到明显的年龄差异。高温条件下重置Th-U-Pb独居石约会系统可能是原因。与U-Pb锆石年龄相匹配的石榴石-堇青石花岗石的石榴石成矿细胞(约440 Ma)中均质独居石的年龄系统地大于基质(约430 Ma)中的年龄。斜方镁矿和邻辉石中的独居石包裹体以及石英中的独居石包裹体也表明,原辉石-黑云母花岗石中也存在两个年龄组的相同病例。对于夏洛克人,尽管年龄相似。黑云母中的独居石和岩石中的锆石给了430 Ma,从具有特殊特征的独居石中获得了明显的年轻年龄。残存的独居石具有击穿纹理,在轮辋以及与黑云母-绿泥石微静脉相近的层中形成连续的磷灰石和尿囊层,它们的年龄大约相同。 230毫安。此外,微小的独居石与主要围绕邻二甲苯的石榴石状日冕密切相关,形成了另一个约370 Ma的年龄组。对于片麻岩,石英包裹的独居石产生434 Ma的能量,而安定石的亚氯酸盐-绿叶石微脉中凝结的独居石的产率为237 Ma,这与原片麻岩中U-Pb锆石的核缘年龄变化一致。根据所有这些数据,我们认为高州复合体是加里东阶的高变质地带,在高峰期持续经历麻石岩侵入,直生片麻岩的形成和麻粒岩和石蜡岩的变质之前的渐进变质作用,持久地由麻粒岩和石镁岩引发。 -432 Ma)。然后,它被海西时期和更活跃的印度支那造山运动重新激活,可能涉及流体相参与了远古生代早期回退变质作用的长期过程。 Yunkai断层的这种构造热演化可能与越南中部的Kontum断层相当。

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