Identification of Multiple Thermal Events in High-Grade Metacarbonate Rocks Using Carbon Isotope Thermometry: An Example From the Sør Rondane Mountains, East Antarctica

IF 1.4 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY
Geological Journal Pub Date : 2024-12-03 DOI:10.1002/gj.5095
M. Satish-Kumar, Sasidharan Kiran, Fumiko Higashino, Tetsuo Kawakami, Tomokazu Hokada
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Abstract

Nine metacarbonate layers from the regionally metamorphosed terrane of the Sør Rondane Mountains in the Eastern Dronning Maud Land in East Antarctica were examined in detail for constraining the thermal events using carbon isotope exchange between dolomite/calcite and graphite. Equilibrium carbon isotope fractionation between dolomite and graphite suggested peak metamorphic temperature conditions reaching up to 802°C ± 29°C were estimated at the Balchenfjella locality, where multiple samples from six thick layers of metacarbonate rocks were examined. However, some of the samples exhibit lower carbon isotope fractionation reflecting the possibility of ultrahigh-temperature metamorphic conditions, which is consistent with recent reports. Furthermore, several metacarbonate rock samples display large variations in δ13CVPDB values for graphite grains, despite dolomite and calcite showing homogeneous carbon and oxygen isotopic composition indicating signatures of retrograde metamorphism and fluid infiltration events. Detailed textural observation suggested alteration of δ13CVPDB values of graphite during retrograde metamorphism might have resulted due to the overgrowth of graphite crystals by the infiltration of low δ13CVPDB-bearing fluids, the extent of alteration being a direct function of the fluid–rock ratio. Field evidence indicates the presence of carbonate veins cutting across the metacarbonate rocks suggesting that carbon isotope thermometry can also be utilised to understand the effect of external fluid infiltration. At Perlebandet locality the metamorphic temperature conditions were estimated to be around 915°C, whereas those from Tanngarden and Menipa gave lower temperature estimates. Detailed textural analysis of graphite in combination with isotopic composition provided clear evidence for retrograde events. Thus, our results provide tight constraints of peak and post-peak metamorphic temperature conditions and a regional thermal structure for the Sør Rondane Mountains and further testify the usefulness of carbon isotope thermometry in polymetamorphic terrains.

Abstract Image

用碳同位素测温法识别高品位偏碳酸盐岩中的多重热事件——以东南极洲Sør Rondane山为例
利用白云石/方解石与石墨之间的碳同位素交换,详细研究了东南极洲东Dronning Maud地块Sør Rondane山脉区域变质地体中的9个偏碳酸盐层对热事件的约束作用。白云岩和石墨之间的平衡碳同位素分选表明,Balchenfjella地区的峰值变质温度可达802°C±29°C,并对来自6层厚的偏碳酸盐岩石的多个样品进行了检测。然而,一些样品表现出较低的碳同位素分馏,反映了超高温变质条件的可能性,这与最近的报道一致。此外,尽管白云岩和方解石碳氧同位素组成均匀,显示出逆行变质和流体渗透事件的特征,但一些偏碳酸盐岩石样品的石墨颗粒δ13CVPDB值变化较大。详细的结构观测表明,石墨在变质过程中δ13CVPDB值的变化可能是由于低δ13CVPDB含量流体的渗透使石墨晶体过度生长所致,其变化程度与流岩比直接相关。现场证据表明,在偏碳酸盐岩中存在碳酸盐脉,这表明碳同位素测温也可以用来了解外部流体渗透的影响。Perlebandet地区的变质温度条件估计在915°C左右,而来自Tanngarden和Menipa的温度估计较低。详细的石墨结构分析结合同位素组成为逆行事件提供了明确的证据。因此,我们的研究结果提供了Sør Rondane山脉峰后变质温度条件和区域热结构的严格约束,并进一步证明了碳同位素测温在多变质地形中的实用性。
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来源期刊
Geological Journal
Geological Journal 地学-地球科学综合
CiteScore
4.20
自引率
11.10%
发文量
269
审稿时长
3 months
期刊介绍: In recent years there has been a growth of specialist journals within geological sciences. Nevertheless, there is an important role for a journal of an interdisciplinary kind. Traditionally, GEOLOGICAL JOURNAL has been such a journal and continues in its aim of promoting interest in all branches of the Geological Sciences, through publication of original research papers and review articles. The journal publishes Special Issues with a common theme or regional coverage e.g. Chinese Dinosaurs; Tectonics of the Eastern Mediterranean, Triassic basins of the Central and North Atlantic Borderlands). These are extensively cited. The Journal has a particular interest in publishing papers on regional case studies from any global locality which have conclusions of general interest. Such papers may emphasize aspects across the full spectrum of geological sciences.
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