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首页> 外文期刊>The Journal of Geology: a semi-quarterly magazine of geology and related sciences >Precise Time and Conditions of Peak Taconian Granulite Facies Metamorphism in the Southern Appalachian Orogen,U.S.A.,with Implications for Zircon Behavior during Crustal Melting Events
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Precise Time and Conditions of Peak Taconian Granulite Facies Metamorphism in the Southern Appalachian Orogen,U.S.A.,with Implications for Zircon Behavior during Crustal Melting Events

机译:美国南部阿巴拉契亚造山带塔科期花岗岩颗粒相变质的精确时间和条件,对地壳融化过程中锆石行为的影响

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The time of peak thermal conditions in the granulite facies zone of the southern Appalachian orogen corresponds to the time of formation of garnet-bearing leucosomes generated by biotite dehydration melting in garnet-sillimanite gneisses.Leucosomes contain unusually abundant zircon occurring as inclusions in euhedral plagioclase phenocrysts and garnet.Isotope dilution thermal-ionization mass spectrometric analysis of 13 elongate,euhedral zircon crystals from the leucosome yields a concordant U-Pb age of 458(+-)1.0 Ma(MSWD=0.095).Ion microprobe U-Pb analysis of 11 euhedral zircons yields a weighted age of 460(+-)12 Ma {2sigma); 458 Ma is taken as the time of partial melting and peak thermal conditions attending melting.Only two of 39 leucosome zircons exhibit Proterozoic inheritance typical of most zircons in metapelitic rocks and granitic intrusions in the southern Blue Ridge.Mineralogic thermobarometry,oxygen isotope thermometry,and experimental studies constrain melting to have occurred at approx850°C and 8 kbar.The garnet-rich leucosomes are unfoliated,crosscut the dominant regional fabric in sillimanite gneisses,and contain kyanite as a late or subsolidus phase.Leucosome textures(euhedral plagioclase phenocrysts with interstitial quartz)and major and trace element concentrations(low SiO_2 and K_2O,high Zr)suggest that the leucosomes are not primary melts,they appear to be plagioclase-rich cumulates remaining after fractionation of a more felsic melt component.The Zr concentration of the leucosome is excessively high(1500-4000 ppm)for melts with compositions equivalent to the leucosome.The Zr enrichment in the leucosome resulted primarily from physical concentration of zircon by inclusion in plagioclase and garnet that remained after loss of the felsic component of the melt.
机译:阿巴拉契亚南部造山带花岗质相带的热条件达到峰值的时间对应于黑榴石-硅线石片麻岩中黑云母脱水融化生成的石榴石形脂质体的形成时间。类脂体中含有异常丰富的锆石,作为包埋在真面体斜长石斑状表皮中。同位素稀释热电离质谱分析隐色体中的13个细长的,全平面锆石晶体产生的一致U-Pb年龄为458(+-)1.0 Ma(MSWD = 0.095)。离子微探针U-Pb分析为11真面锆石的加权年龄为460(+-)12 Ma(2sigma);以458 Ma作为部分融化的时间,以及处于融化的峰值温度条件的时间.39个隐性锆石中只有两个表现出元古代的特征,这是蓝岭南部变质岩和花岗岩侵入体中大多数锆石的典型特征。矿物热压法,氧同位素测温法和实验研究将熔化限制在约850°C和8 kbar的温度下进行。富含石榴石的leucosomes是无叶的,在硅线石片麻岩中横切了主要的区域性织物,并以蓝晶石为晚期或亚固相相。leucosome纹理(具有间质性的软化斜长石斑状现象)石英)和主要和微量元素浓度(低SiO_2和K_2O,高Zr)暗示着脂质体不是主要的熔体,它们似乎是富含斜纹酶的累积物,在分馏出更多的长质熔体成分后仍保留下来。 Zr富集度过高(1500-4000 ppm),对于熔体而言,其组成与无色脂质体相当。 n隐色体主要是由于锆石的物理浓缩而产生的,而锆石的物理浓缩是通过包含在斜长石和石榴石中,在熔体的长丝成分丧失后仍然存在。

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