Głuszyca Górna(波兰苏德海内盆地)早二叠世火山岩的溢出作用——绿泥石测温和磷灰石裂变径迹测年(AFT)的约束

T. Powolny, A. Anczkiewicz, Dumańska-Słowik Magdalena
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摘要

苏德海内盆地是位于波西米亚地块东北侧的晚古生代山间槽,由大量早二叠世大陆(与伸展有关)火山岩露头组成,通常蚀变为细碧岩。在这篇论文中,我们基于磷灰石裂变径迹测年(AFT)的矿物学和微观结构研究,对波兰下西里西亚Gluszyca采石场的裂晶化(富含钠长石和绿泥石)粗质山岩的形成进行了深入研究。我们的研究结果表明,粗面山岩作为一个浅层的绿岩型体,受到了强烈的绿岩化作用,同时也受到了火山玻璃的偶尔的青瓷化作用的影响。此外,钠辉石的绿绿化一定释放了大量的Na+,这可能参与了后来原生安山岩-拉布拉长石普遍的钠长石化。根据各种化学和半经验温度计,在124-170°C范围内形成替代绿泥石。Gluszyca的粗面山岩含有丰富的氟磷灰石,其特征是出现了燕子型末端,表明其形成条件迅速冷却。样品的中心AFT年龄在161 ~ 182 Ma之间,对应于中侏罗世。同时,这些年龄明显小于中罗特列属期火成岩侵位(~299 ~ 271 Ma)。然而,岩石的地层年龄与AFT结果之间的差异不能用岩浆体的缓慢冷却速率、磷灰石的成分变化或晚中生代沉积物下的埋藏来解释。因此,可以认为获得的AFT年龄(161 ~ 182 Ma)反映了来自苏德海内盆地磷灰石部分退火带(70 ~ 110℃)上方的火山岩的spili石化和部分再加热的时间。
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Spilitzation of Early-Permian Volcanics from Głuszyca Górna (the Intra-Sudetic Basin, Poland) - Constraints from Chlorite Thermometry Coupled with Apatite Fission-Track Dating (AFT)
The Intra-Sudetic Basin, a Late-Paleozoic intramontane trough located on the NE flank of the Bohemian Massif, comprises numerous outcrops of continental (extension-related) Early-Permian volcanogenic rocks that are commonly altered to spilites. In this contribution, we provide insights into the formation of spilitized (albite- and chlorite-rich) trachyandesites from Gluszyca quarry (Lower Silesia, Poland) based on mineralogical and micro-textural investigations supported by apatite fission-track dating (AFT). Our results indicate that the trachyandesites, emplaced as a shallow-level laccolith-type body, have been strongly affected by chloritization of both aegirine and augite, combined with an occasional celadonitization of volcanic glass. Furthermore, chlortitization of sodic pyroxenes must have released notable amounts of Na+, which could be involved during later pervasive albitzation of primary andesine-labradorite. According to various chemical and semi-empirical thermometers, the replacive chlorites formed in the range of 124-170°C. Trachyandesites from Gluszyca contain abundant fluorapatites marked by the occurrence of swallow-type terminations, which are indicative of rapid-cooling formation conditions. Central AFT ages of the samples vary between 161-182 Ma and correspond to the Middle-Jurassic period. Meanwhile, these ages are significantly younger than the emplacement of igneous rocks during Middle Rotliegendes period (~299-271 Ma). The discrepancy between the stratigraphic age of the rocks and the AFT results cannot be, however, explained by, for example, slow cooling rates of magmatic body, compositional variations of apatite, or burial under Late-Mesozoic sediments. Hence, it may be assumed that the obtained AFT ages (161-182 Ma) reflect the timing of spilitization and associated partial reheating of volcanic rocks from the Intra-Sudetic Basin above the apatite partial annealing zone (70-110°C).
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