首页> 外文期刊>Journal of Mineralogical and Petrological Sciences >~(40)ar-~(39)ar And K-ar Geochronology For Plutonic Rocks In The Central Abukuma Plateau, Northeastern Japan
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~(40)ar-~(39)ar And K-ar Geochronology For Plutonic Rocks In The Central Abukuma Plateau, Northeastern Japan

机译:日本东北中部高原岩浆岩的〜(40)ar-〜(39)ar和Kar年代学

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The Abukuma Plateau is one of the major granitic terranes in the Japan Arc. Older granitic rocks (foliated and intermediate), younger granitic rocks (massive and felsic), and minor gabbroic rocks are complexly distributed in this region. In order to examine the cooling histories of the plutons, we have determined four ~(40)Ar-~(39)Ar hornblende ages and five K-Ar biotite ages of the plutonic rocks in the central Abukuma Plateau. The results are as follows:rnUtsushiga-take gabbroic body: 103.8 ± 0.5 Ma (hbl) Nagaya body (older): 97.3 ± 0.6 Ma (hbl), 93.4 ± 3.1 Ma (bt) Shikayama body (older): 103.0 ± 0.4 Ma (hbl), 86.1 ± 3.8 Ma (bt) Ishimori body (older): 99.0 ± 0.5 Ma (hbl), 94.2 ± 2.6 Ma (bt) Miharu body (younger): 91.3 ± 2.3 Ma (bt) Hatsumori body (younger): 90.5 ± 2.6 Ma (bt) (hbl, ~(40)Ar-~(39)Ar hornblende age; bt, K-Ar biotite age).rnOn the basis of these analytical results and the petrography of the samples, we made the following observations:rn(1) The cooling rates of the Nagaya and Ishimori bodies (56 and 46 ℃/m.y.) are equivalent to the common cooling rates of the Japanese granitic batholiths. The cooling rate of the Shikayama body (13 ℃/m.y.) is slow because its volume is large.rn(2) The excellent ~(40)Ar-~(39)Ar plateau age of and the scarcity of metamorphic minerals in the Utsushiga-take gabbroic body suggest that the hornblende age is not a rejuvenated age but the original cooling age.rn(3) We were unable to detect any distinct geochronological boundary between the older and younger granitic rocks in the central Abukuma Plateau, in terms of the K-Ar biotite ages.
机译:Abukuma高原是Japan Arc中主要的花岗岩地层之一。较早的花岗质岩石(叶状和中层),较年轻的花岗质岩石(块状和长质质)和次生辉长岩复杂地分布在该区域。为了研究云母的冷却历史,我们确定了阿布库玛高原中部深部岩石的四个〜(40)Ar-〜(39)Ar角闪石年龄和五个K-Ar黑云母年龄。结果如下:U鹿茸腾飞的天体:103.8±0.5 Ma(hbl)长谷体(旧):97.3±0.6 Ma(hbl),93.4±3.1 Ma(bt)鹿山山体(旧):103.0±0.4 Ma (hbl),86.1±3.8 Ma(bt)石森琴身(旧):99.0±0.5 Ma(hbl),94.2±2.6 Ma(bt)三春琴身(年轻):91.3±2.3 Ma(bt)初森琴身(年轻) :90.5±2.6 Ma(bt)(hbl,〜(40)Ar-〜(39)Ar角闪石年龄; bt,K-Ar黑云母年龄).rn根据这些分析结果和样品的岩石学,我们得出以下观察结果:(1)Nagaya和Ishimori体的冷却速率(56和46℃/ my)等于日本花岗岩基岩层的常见冷却速率。 Shikayama体的冷却速度(13℃/ my)由于体积大而较慢。rn(2)Utsushiga极好的〜(40)Ar-〜(39)Ar高原年龄和变质矿物的稀缺性(3)我们无法检测到阿布库玛高原中部较早和较年轻的花岗岩岩石之间的任何明显的年代学边界,这表明角闪闪时代不是恢复青春的年龄,而是原始的冷却年龄。 K-Ar黑云母年龄。

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