北大别漫水河混合岩化片麻岩中锆石微区微量元素特征及其地质意义

被引:18
作者
吴元保
陈道公
郑永飞
夏群科
涂湘林
机构
[1] 中国科学技术大学地球与空间科学学院
[2] 中国科学院广州地球化学研究所 合肥
[3] 合肥
[4] 广州
基金
中国博士后科学基金;
关键词
漫水河; 锆石; 重结晶; 深熔:; 微量元素;
D O I
暂无
中图分类号
P588.345 [];
学科分类号
070901 ;
摘要
本文通过对北大别漫水河片麻岩的锆石进行阴极发光(CL)显微图像观察及激光剥蚀等离子体质谱(LA-ICP-MS)微区微量元素分析,试图对重结晶和深熔成因变质锆石的微量元素特征进行制约。CL图像显示该片麻岩锆石存在复杂的内部结构,有原岩岩浆锆石、重结晶变质锆石和深熔锆石。不同锆石区域的Hf、P、Ti、Nb、Ta和Ce等元素含量及Nb/Ta比值相似。但重结晶和深熔锆石的Th/U比值明显低于原岩锆石(分别为0.33~1.12、0.03~0.60和0.92~1.99),重结晶锆石区域低Th/U比值是由于重结晶过程中Th比U更易排出锆石晶格,而深熔锆石区域低Th/U比值是其结晶的熔体中低Th和高U含量的原因。不同锆石区域的稀土元素含量也不相同,原岩锆石稀土总量高(621.9~1331.6ppm),变化较大,而深熔锆石和重结晶锆石稀土总量低(分别为236.8~642.5ppm;98.5~435.6ppm)。不同锆石区域的稀土元素配分模式相似,但重结晶锆石的稀土元素含量比原岩锆石低3~4倍,可能是重结晶过程中稀土元素被逐出锆石晶格所致。深熔锆石的稀土元素含量受深熔熔体与残留体之间平衡与否的制约,如果熔体与残留体之间达到了平衡,则深熔锆石与原岩锆石有相似的稀土元素含量;反之,深熔锆石的稀土元素含量就会低于原岩锆石。漫水河片麻岩深熔锆石的稀土含量比原岩锆石低1~4倍,反映了深熔熔体与残留体之间没有达到平衡。结合已有的花岗岩与混合岩化岩石的年龄和同位素特征,说明北大别混合岩化片麻岩可能与同时代花岗岩的形成有成因关系。
引用
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页码:152 / 161
页数:10
相关论文
共 9 条
[1]  
In-situ trace element analyses and Pb-Pb dating of zircons in granulite from Huangtuling, Dabieshan by LAM-ICP-MS[J] . Yuanbao Wu,Daogong Chen,Qunke Xia,Xianglin Tu,Hao Cheng,Xiaozhi Yang.Science in China Series D: Earth Sciences . 2003 (11)
[2]  
Igneous zircon: trace element composition as an indicator of source rock type[J] . E. Belousova,W. Griffin,Suzanne Y. O’Reilly,N. Fisher.Contributions to Mineralogy and Petrology . 2002 (5)
[3]  
In-situ trace element analyses of zircons from Dabieshan Huangzhen eclogite: Trace element characteristics of eclogite-facies metamorphic zircon[J] . Yuanbao Wu,Daogong Chen,Qunke Xia,Xianglin Tu,Hao Cheng.Chinese Science Bulletin . 2002 (16)
[4]  
Orogeny, migmatites and leucogranites: A review[J] . Michael Brown.Journal of Earth System Science . 2001 (4)
[5]  
Multiple zircon growth during fast exhumation of diamondiferous, deeply subducted continental crust (Kokchetav Massif, Kazakhstan)[J] . J?rg Hermann,Daniela Rubatto,Andrei Korsakov,Vladislav S. Shatsky.Contributions to Mineralogy and Petrology . 2001 (1)
[6]  
Internal morphology, habit and U-Th-Pb microanalysis of amphibolite-to-granulite facies zircons: geochronology of the Ivrea Zone (Southern Alps)[J] . Gerhard Vavra,Rolf Schmid,Dieter Gebauer.Contributions to Mineralogy and Petrology . 1999 (4)
[7]  
Growth, annealing and recrystallization of zircon and preservation of monazite in high-grade metamorphism: conventional and in-situ U-Pb isotope, cathodoluminescence and microchemical evidence[J] . U. Schaltegger,C. M. Fanning,D. Günther,J. C. Maurin,K. Schulmann,D. Gebauer.Contributions to Mineralogy and Petrology . 1999 (2-3)
[8]  
Internal structures of zircons from Archaean granites from the Darling Range batholith: implications for zircon stability and the interpretation of zircon U-Pb ages[J] . R. T. Pidgeon,A. A. Nemchin,G. J. Hitchen.Contributions to Mineralogy and Petrology . 1998 (3)
[9]  
Recrystallisation of oscillatory zoned zircon: some geochronological and petrological implications[J] . R. T. Pidgeon.Contributions to Mineralogy and Petrology . 1992 (4)