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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Metamorphic and geochronogical study of the Triassic El Oro metamorphic complex, Ecuador: Implications for high-temperature metamorphism in a forearc zone
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Metamorphic and geochronogical study of the Triassic El Oro metamorphic complex, Ecuador: Implications for high-temperature metamorphism in a forearc zone

机译:厄瓜多尔三叠纪El Oro变质复合体的变质和地球年代学研究:前臂带高温变质的意义

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In the forearc of the Andean active margin in southwest Ecuador, the El Oro metamorphic complex exhibits a well exposed tilted forearc section partially migmatized. We used Raman spectroscopy on carbonaceous matter (RSCM) thermometry and pseudosections coupled with mineralogical and textural studies to constrain the pressure-temperature (P-T) evolution of the El Oro metamorphic complex during Triassic times. Our results show that anatexis of the continental crust occurred by white-mica and biotite dehydration melting along a 10 km thick crustal domain (from 4.5 to 8 kbar) with increasing temperature from 650 to 700 °C. In the biotite dehydration melting zone, temperature was buffered at 750-820 °C in a 5 km thick layer. The estimated average thermal gradient during peak metamorphism is of 30 °C/km within the migmatitic domain can be partitioned into two apparent gradients parts. The upper part from surface to 7 km depth records a 40-45 °C/km gradient The lower part records a quasi-adiabatic geotherm with a 10 °C/km gradient consistent with an isothermal melting zone. Migmatites U-Th-Pb geochronology yielded zircon and monazite ages of 2293 ±2.1 Ma and 224.5 ± 2.3 Ma, respectively. This thermal event generated S-type magmatism (the Marcabeli granitoid) and was immediately followed by underplating of the high-pressure low-temperature (HP-LT) Arenillas-Panupali unit at 225.8±1.8 Ma. The association of high-temperature low-pressure (HT-LP) migmatites with HP-LT unit constitutes a new example of a paired metamorphic belt along the South American margin. We propose that in addition to crustal thinning, underplating of the Piedras gabbroic unit before 230 Ma provided the heat source necessary to foster crustal anatexis. Furthermore, its MORB signature shows that the asthenosphere was involved as the source of the heat anomaly. S-type felsic magmatism is widespread during this time and suggests that a large-scale thermal anomaly affected a large part of the South American margin during the late Triassic We propose that crustal anatexis is related to an anomaly that arose during subduction of the Panthalassa ocean under the South American margin. Slab verticalization or slab break-off can be invoked as the origin of the upwelling of the asthenosphere.
机译:在厄瓜多尔西南部的安第斯山脉活动边缘的前额中,El Oro变质复合体表现出一个良好暴露的倾斜的前额部分被部分迁移的现象。我们在碳质物质(RSCM)测温和伪剖面上使用拉曼光谱法,结合矿物学和组织学研究,以限制三叠纪El Oro变质复合物的压力-温度(P-T)演化。我们的研究结果表明,随着温度从650到700°C升高,沿着10 km厚的地壳区域(从4.5到8 kbar)融化的白云母和黑云母脱水融化,导致了地壳的厌食。在黑云母脱水融化区,在5 km厚的层中将温度缓冲在750-820°C。在峰变域内,估计的峰值变质过程中的平均热梯度为30°C / km,可以分为两个明显的梯度部分。从地表到7 km深度的上部记录了40-45°C / km的梯度,下部记录了具有10°C / km梯度的准绝热地热,与等温熔融带一致。镁铁矿U-Th-Pb年代学得出的锆石和独居石年龄分别为2293±2.1 Ma和224.5±2.3 Ma。这种热事件产生了S型岩浆作用(Marcabeli花岗岩),随后立即在225.8±1.8 Ma处对高压低温(HP-LT)Arenillas-Panupali单元进行了底层镀覆。高温低压(HT-LP)蒙脱石与HP-LT单元的结合构成了沿南美边缘成对的变质带的新例子。我们建议,除了地壳变薄外,在230 Ma之前对Piedras辉长岩单元进行的地下镀层还提供了培育地壳无足动物所需的热源。此外,其MORB签名表明,软流圈是热异常的根源。 S型长英质岩浆活动在此期间很普遍,表明在三叠纪晚期,大规模的热异常影响了南美边缘的大部分地区。我们认为地壳的Anatexis与Panthalassa海洋俯冲过程中产生的异常有关在南美边缘。板坯垂直化或板坯折断可以作为软流圈上升流的起点。

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