Reexamination of the magma plumbing system of the Suwolbong tuff ring, Jeju Island, Korea, based on a refined componentry analysis

IF 1 4区 地球科学 Q4 GEOSCIENCES, MULTIDISCIPLINARY
Sun Young Go, Hyeon-Seon Ahn, Ung San Ahn, Jong Ok Jeong, Young Kwan Sohn, Chang Woo Kwon
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Abstract

The Suwolbong tuff ring is a basaltic monogenetic volcano in the Quaternary intraplate volcanic field of Jeju Island, Korea. The tuff ring was formerly interpreted to have had a congested magma plumbing system consisting of multiply-sourced dike complexes, based on stepped and mixed chemical trends of alkaline to sub-alkaline glassy pyroclasts. Microscopic observations, petrological analysis, and componentry analysis of the glassy pyroclasts reveal, however, that some of the glassy pyroclasts in the tuff ring are accidental and inappropriate for interpreting magmatic processes. Juvenile particles are vesicular, alkaline in composition, mainly contain olivine, clinopyroxene, and plagioclase phenocrysts, and comprise about 35 vol% of the deposits. In contrast, accidental particles are non-vesicular, alkaline to subalkaline in composition, less abundant (avg. 8 vol%), and show alteration rims. The accidental particles are interpreted to have been derived from the volcaniclastic layers deposited before the eruption of the Suwolbong tuff ring. When removing the effects of the accidental particles and considering only the geochemical characteristics of the newly defined juvenile particles, the Suwolbong tuff ring is interpreted to have had a rather simple, not necessarily congested, plumbing system fed by independently ascending multiple magma batches. This study shows that the interpretation of the properties of the source magma and the magma plumbing system in monogenetic volcanoes must be performed after clearly distinguishing between juvenile and accidental particles based on rigorous microscopic analysis of pyroclastic materials.

基于精细成分分析,重新审视韩国济州岛水月峰凝灰岩环的岩浆管道系统
水月峰凝灰岩环是韩国济州岛第四纪板内火山场中的一座玄武岩单源火山。根据碱性至亚碱性玻璃质火成岩的阶梯状和混合化学趋势,该凝灰岩环以前被解释为由多源堤复合体组成的拥挤岩浆管道系统。然而,对玻璃质火成岩的显微观察、岩石学分析和成分分析表明,凝灰岩环中的一些玻璃质火成岩是偶然形成的,不适合用于解释岩浆过程。幼年颗粒呈水泡状,成分呈碱性,主要含有橄榄石、霞石和斜长石表晶,约占矿床的 35%。与此相反,意外颗粒呈非泡状,成分为碱性至亚碱性,含量较少(平均为 8 Vol%),并显示出蚀变缘。据解释,意外颗粒来自水月峰凝灰岩环喷发前沉积的火山碎屑层。如果剔除意外颗粒的影响,仅考虑新定义的幼年颗粒的地球化学特征,则可以解释水月峰凝灰岩环拥有一个相当简单的、不一定拥挤的、由独立上升的多批岩浆供给的管道系统。这项研究表明,在解释单源火山的源岩浆和岩浆管道系统的特性时,必须根据对火成碎屑物质的严格微观分析,明确区分幼年颗粒和事故颗粒。
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来源期刊
Geosciences Journal
Geosciences Journal 地学-地球科学综合
CiteScore
2.70
自引率
8.30%
发文量
33
审稿时长
6 months
期刊介绍: Geosciences Journal opens a new era for the publication of geoscientific research articles in English, covering geology, geophysics, geochemistry, paleontology, structural geology, mineralogy, petrology, stratigraphy, sedimentology, environmental geology, economic geology, petroleum geology, hydrogeology, remote sensing and planetary geology.
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