The evolution of crystal-poor rhyolite in the middle Okinawa Trough and its implications for the state of magma chamber

IF 1.4 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Geological Journal Pub Date : 2024-05-02 DOI:10.1002/gj.4971
Xinyu Luo, Zhigang Zeng, Zuxing Chen, Yuxiang Zhang, Xiaoning Du, Haiyan Qi
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Abstract

The crystal-poor rhyolitic pumice is the product of extreme magma differentiation and is characterized by highly vesicular, honeycomb-like structure. However, little is known about the evolutionary history and the time of volatile saturation of the pumice-forming melt. A crystal-poor rhyolitic pumice (TVG7-1) has been collected from the Yoron Hole hydrothermal field in the middle Okinawa Trough, a young continental margin back-arc basin in the western Pacific. This study conducted a detailed analysis on the texture and in situ chemical composition of plagioclase, orthopyroxene and Fe-Ti oxides to reveal the evolution process, storage state and eruption triggers of eruptible silicic melt. Texture and zoning of specific minerals and mineral populations suggest a magmatic evolution history of open system. Additionally, the hollow reentrant texture, as well as results from plagioclase-liquid hygrometers, confirm a water-rich melt pocket. The exsolution of volatiles (H2O, etc.), in this melt pocket, will contribute to local oxidation conditions, which may have been recorded by the concordant behaviour of FeO and An in plagioclase. Then, the overpressure caused by volatile exsolution would destabilize the magma chamber, which will eventually be broken by magma mixing/recharge, and lead to violent melt evacuation. Consequently, crystal size distribution (CSD) provides a new perspective on understanding the kinetic effect of magma mixing/recharge in the Okinawa Trough, especially on the mineral populations. Our study reveals the petrogenesis of crystal-poor rhyolite within the framework of the mush model, refines the magma evolution history and demonstrates that pumice magma reaches volatile saturation before the eruption.

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冲绳海槽中部贫晶流纹岩的演化及其对岩浆室状态的影响
晶体贫乏的流纹浮石是岩浆极端分异的产物,具有高度泡状和蜂窝状结构。然而,人们对浮石形成熔体的演化历史和挥发性饱和时间知之甚少。从西太平洋年轻的大陆边缘后弧盆地冲绳海槽中部的 Yoron Hole 热液场采集到了一块晶体贫乏的流纹浮石(TVG7-1)。该研究对斜长石、正长石和铁钛氧化物的质地和原位化学成分进行了详细分析,以揭示可喷发硅熔体的演化过程、储存状态和喷发诱因。特定矿物和矿物群的纹理和分带显示了开放系统的岩浆演化历史。此外,中空的凹陷纹理以及斜长石-液体湿度计的结果都证实了富含水的熔体袋。在这个熔体袋中,挥发物(H2O 等)的溶解将促进局部氧化条件的形成,斜长石中氧化铁和锑的一致表现可能记录了这一点。然后,挥发性溶解造成的超压会破坏岩浆腔的稳定,最终会被岩浆混合/充填打破,导致熔体剧烈疏散。因此,晶体尺寸分布(CSD)为了解冲绳海槽岩浆混合/补给的动力学效应,尤其是对矿物种群的影响提供了一个新的视角。我们的研究在蘑菇模型的框架内揭示了贫晶流纹岩的岩石成因,完善了岩浆演化历史,并证明浮石岩浆在喷发前达到了挥发性饱和。
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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.
期刊最新文献
Issue Information Issue Information Reply to Comment on “Singh R, Vadlamani R, Bajpai S & Maurya AS (2024) Strontium Isotope Stratigraphy of Marine Oligocene–Miocene Sedimentary Successions of Kutch Basin, Western India. Geological Journal, 1–20. DOI: 10.1002/gj.4961” Fabrics and Origin of Troctolites in the Keketoukeleke Ultramafic–Mafic Complex, South Altyn Tagh, Northwest China Comment on “Singh R, Vadlamani R, Bajpai S, Maurya AS (2024) Strontium Isotope Stratigraphy of Marine Oligocene–Miocene Sedimentary Successions of Kutch Basin, Western India. Geological Journal, 1–20. DOI: 10.1002/gj.4961”
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