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Low–temperature eclogite–facies bauxite from the Red River shear zone in Vietnam: Its evolution and significance

机译:越南红河剪切带低温榴辉岩相铝土矿的演化及其意义

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We report first finding of low–temperature eclogite–facies metamorphism from the Red River shear zone in northern Vietnam that has been known as the Paleogene high–temperature metamorphic belt. The rock is extremely aluminous (50.13 wt% Al_(2)O_(3)) and oxidized [Fe~(3+)/(Fe~(3+) + Fe~(2+)) = 0.89] emery–type rock. Its composition is also characterized by very low SiO_(2), CaO, and Na_(2)O with high concentrations in high field strength elements, suggesting that the protolith is lateritic bauxite. The analyzed rock is composed mainly of porphyroblastic titanomaghemite, kyanite, allanite, and chloritoid with abundant fine–grained corundum in the matrix. The mineral paragenesis and phase equilibria modeling suggest that the aluminous rock underwent a clockwise pressure–temperature trajectory with the peak metamorphic condition corresponding to low–temperature eclogite–facies approximately 520–550 °C at 1.2–1.5 GPa. Monazite U–Th–Pb dating constrains the timing of the metamorphism to be older than 214 Ma. Our results require two geological events; 1) tropical weathering and bauxitization on the erosional surface, and 2) pre–Late Triassic subduction of supracrustal materials most likely during the Permo–Triassic collisional events in East and Southeast Asia. Our study provides the first evidence for the subduction of supra–continental crustal materials up to 40–50 km depth during the collision between the Indochina and South China blocks.
机译:我们报道了越南北部红河剪切带的低温榴辉岩相变质的第一个发现,该变质带被称为古近纪高温变质带。岩石是高度铝质的(50.13 wt%Al_(2)O_(3)),并被氧化[Fe〜(3 +)/(Fe〜(3+)+ Fe〜(2+))= 0.89]金刚砂型岩石。它的成分还具有非常低的SiO_(2),CaO和Na_(2)O的特征,并且在高场强元素中具有高浓度,这表明该原生岩是红土铝土矿。所分析的岩石主要由滋生钛铁磁赤铁矿,蓝晶石,尿囊石和类胡萝卜素组成,基质中含有大量的细刚玉。矿物共生和相平衡模型表明,铝质岩经历了顺时针的压力-温度轨迹,其峰值变质条件对应于1.2-1.5 GPa的约520-550°C的低温榴辉岩相。独居石U–Th–Pb测年将变质的时间限制在214 Ma以上。我们的结果需要两个地质事件。 1)侵蚀表面的热带风化和铝土化,以及2)在东亚和东南亚发生的Permo-Triassic碰撞事件中,最有可能在三叠纪晚期覆壳物质俯冲。我们的研究提供了印度支那与华南块体碰撞期间俯冲至40-50 km深度的超大陆地壳物质的第一个证据。

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