首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Sm-Nd and Rb-Sr isotopic chronology and cooling history of ultrahigh pressure metamorphic rocks and their country rocks at Shuanghe in the Dabie Mountains, Central China
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Sm-Nd and Rb-Sr isotopic chronology and cooling history of ultrahigh pressure metamorphic rocks and their country rocks at Shuanghe in the Dabie Mountains, Central China

机译:中国中部大别山双河超高压变质岩及其乡村岩石的Sm-Nd和Rb-Sr同位素年代学及冷却史

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摘要

Ultrahigh pressure metamorphic (UHPM) rocks at Shuanghe area in the Dabie Mountains occur as a UHPM block within the regional granitic gneiss. A Sm-Nd isochron defined by garnet + omphacite + rutile from coesite-bearing eclogite yield an age of 226.3 +/- 3.2 Ma. Another Sm-Nd isochron defined by garnet + two phengites form UHP gneiss yield a similar age of 2265 +/- 2.3 Ma. The two consistent Sm-Nd ages defined by three UHPM minerals suggest that Nd isotopic equilibrium between UHPM minerals in these rocks during UHP metamorphism has been achieved. This may correspond to the age of peak metamorphism with an average metamorphic temperature of 800 degrees C. It is demonstrated that the retrograde metamorphism of UHPM rocks occurred in an open chemical system, whereas the Nd and Sr isotopic systematics of UHPM minerals may have remained closed. Nd and Sr isotopic disequilibrium between UHPM minerals and retrograde metamorphic minerals has been observed; therefore, the tie line of garnet or phengite and whole rock containing retrograde metamorphic minerals gives an old Sm-Nd age and a young Rb-Sr age, respectively, with no geologic significance. However, a Rb-Sr ages of 219.0 +/- 6.6 Ma defined by phengite + garnet from a UHPM gneiss indicates that the UHPM rocks at Shuanghe cooled down to 500 degrees C at that time. It suggests that the UHPM rocks at Shuanghe experienced the first rapid cooling during 226-219 Ma. On the other hand, the Rb-Sr ages of 174 +/- 7.8 to 169.2 +/- 3.3 Ma defined by retrograde minerals (amphibole or biotite) with closure temperature ranging from 450 degrees to 300 degrees C and intensely retrograded metamorphic rocks reflect a second rapid cooling during this time interval. This is consistent with the "rapid cooling" time of 190-170 Ma of the orthogneiss in the Dabie-Su-Lu UHPM belt obtained by Ar-Ar dating method. In contrast to UHPM rocks, the Nd isotopic composition of the garnet in granitic gneiss has been reset during retrograde metamorphism and is in equilibrium with those of retrograde epidote and biotite, which yields a Sm-Nd isochron age of 213 +/- 5 Ma indicating the retrometamorphic time corresponding to amphibolite facies. In addition, the biotites from the granitic gneiss yield Rb-Sr ages of 171-173 Ma similar to those of the UHPM rocks. These data suggest that the country rocks (granitic gneiss) may have a similar cooling history to the UHPM rocks at Shuanghe. Two stages of rapid cooling of UHPM rocks at Shuanghe may correspond two stages of fast uplift: the initial rapid uplifting and cooling of UHPM rocks during 226-219 Ma may be caused by compression tectonics during subducting time of the continental crust; whereas the later rapid cooling may reflect the exhumation of the entire subducted continental crust by extension during the early-middle Jurassic. Copyright (C) 2000 Elsevier Science Ltd. [References: 69]
机译:大别山双河地区的超高压变质岩(UHPM)以区域性花岗岩片麻岩中的UHPM块体存在。石榴石+绿辉石+金红石来自含矾土的榴辉岩定义的Sm-Nd等时线年龄为226.3 +/- 3.2 Ma。由石榴石和两个铅锌矿定义的另一种Sm-Nd等时线形成UHP片麻岩,其年龄相似,为2265 +/- 2.3 Ma。由三种UHPM矿物定义的两个一致的Sm-Nd年龄表明,在UHP变质过程中,这些岩石中UHPM矿物之间的Nd同位素平衡已经实现。这可能对应于平均变质温度为800摄氏度的峰值变质时代。事实证明,UHPM岩石的逆变质发生在开放的化学系统中,而UHPM矿物的Nd和Sr同位素系统可能仍处于封闭状态。已经观察到UHPM矿物与逆行变质矿物之间的Nd和Sr同位素不平衡;因此,石榴石或变质铁矿和包含逆行变质矿物的整块岩石的结合线分别给出了Sm-Nd年龄和Rb-Sr年龄,没有地质意义。然而,UHPM片麻岩中的菱铁矿+石榴石定义的Rb-Sr年龄为219.0 +/- 6.6 Ma,表明当时双河的UHPM岩石冷却至500摄氏度。这表明双河的UHPM岩石在226-219 Ma经历了第一次快速冷却。另一方面,Rb-Sr年龄为174 +/- 7.8至169.2 +/- 3.3 Ma,由逆向矿物(闪石或黑云母)定义,闭合温度范围为450到300摄氏度,强烈逆向变质岩反映出在此时间间隔内进行第二次快速冷却。这与通过Ar-Ar测年方法获得的大别-苏-鲁UHPM带中生片麻岩的190-170 Ma的“快速冷却”时间一致。与UHPM岩石相反,花岗片麻岩中石榴石的Nd同位素组成在逆行变质过程中已被重置,并且与逆行石和黑云母处于平衡状态,Sm-Nd等时年龄为213 +/- 5 Ma,表明与变质岩相相对应的逆变质时间。此外,来自花岗岩片麻岩的黑云母的Rb-Sr年龄为171-173 Ma,与UHPM岩石相似。这些数据表明,乡村岩石(碎屑片麻岩)的冷却历史可能与双河的UHPM岩石相似。双河UHPM岩石快速冷却的两个阶段可能对应于快速隆升的两个阶段:226-219 Ma期间UHPM岩石的初始快速隆升和冷却可能是由大陆壳俯冲期间的压缩构造引起的。后来的快速冷却可能反映了侏罗纪早期至中期侏罗纪整个俯冲大陆壳的发掘。版权所有(C)2000 Elsevier Science Ltd. [参考:69]

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