首页> 外文期刊>The island arc >SHRIMP U-Pb zircon dating of the Kinshozan Quartz Diorite from the Kanto Mountains, Japan: Implications for late Paleozoic granitic activity in Japanese Islands
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SHRIMP U-Pb zircon dating of the Kinshozan Quartz Diorite from the Kanto Mountains, Japan: Implications for late Paleozoic granitic activity in Japanese Islands

机译:日本关东山金正山石英闪长岩的SHRIMP U-Pb锆石年代:对日本群岛晚古生代花岗岩活动的影响

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摘要

The new result of SHRIMP U-Pb zircon dating of the Kinshozan Quartz Diorite from the Kanto Mountains, Japan, provides 281.5 1.8 Ma. The age is 30 m.y. older than the available age of the Kinshozan Quartz Diorite obtained by hornblende K-Ar method. The new U-Pb zircon age represents the time of crystallization of the Kinshozan Quartz Diorite. The hornblende K-Ar age indicates the time that the Kinshozan Quartz Diorite cooled down to 500 degrees C which is the closure temperature of the systematics. Permian granites are found in small exposures in Japan, and frequently referred to as 250 Ma granites. The Kinshozan Quartz Diorite is considered as a type of the 250 Ma granites, and the age was influential in establishing a model of Paleozoic tectonic evolution for the Japanese Islands. The new age of the Kinshozan Quartz Diorite provides the opportunity to re-examine the model. The Kinshozan Quartz Diorite and other Permian granites in the south of the Median Tectonic Line of Japan were constituents of the Paleo-Ryoke Belt. The geochemical characteristics of the granitic rocks in the Paleo-Ryoke Belt indicated that the granitic rocks were formed in a primitive island arc environment, and the new trace element data also support this interpretation. Examination of the available data and results of the present study suggests the late Paleozoic granitic activity in Japan as follows. At about 310-290 Ma, arc magmatism generated adakitic granites and other granites in the South Kitakami Belt. Quartz diorite and tonalites of primitive characteristic, such as the Kinshozan Quartz Diorite and granites in the Maizuru Belt appear to have been formed at the immature island arc, and accreted to the Japanese Islands at the end of Paleozoic or early Mesozoic era. During 260-240 Ma, granitic activity took place in the Hida and Maizuru Belts as a part of the Asian continent.
机译:来自日本关东山的金正山石英闪长石的SHRIMP U-Pb锆石测年的新结果为281.5 1.8 Ma。年龄是30毫米。比通过角闪石K-Ar法获得的Kinshozan石英闪长石的可用年龄还早。新的U-Pb锆石年龄代表了Kinshozan石英Diorite的结晶时间。角闪石的K-Ar年龄表明Kinshozan石英闪长石冷却至500摄氏度的时间,这是系统的关闭温度。在日本,少量的二叠纪花岗岩被发现,通常被称为250 Ma花岗岩。金正山石英闪长岩被认为是250 Ma花岗岩的一种,其年龄对建立日本群岛古生代构造演化模型具有影响。 Kinshozan石英Diorite的新时代提供了重新检查模型的机会。日本中构造线以南的金正山石英闪长岩和其他二叠纪花岗岩是古洛克带的组成部分。古洛克带花岗岩岩的地球化学特征表明,花岗岩岩是在原始的岛弧环境中形成的,新的痕量元素数据也支持这种解释。对现有数据和本研究结果的研究表明,日本晚古生代花岗岩活动如下。在约310-290 Ma处,弧岩浆作用在南北上带产生了adakitic花岗岩和其他花岗岩。原始的石英闪长岩和同辉岩,例如舞鹤带中的金正山石英闪长岩和花岗岩,似乎是在不成熟的岛弧上形成的,并在古生代末期或中生代早期被吸收到日本群岛。在260-240 Ma期间,作为亚洲大陆一部分的Hida和Maizuru Belts发生了花岗岩活动。

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