A distal record of the Middle Miocene silicic eruption of the Carpathian-Pannonian Region stored within the Dinaride Lake System: implications for tephrostratigraphy and emplacement of volcaniclastic deposits

IF 1.8 3区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY International Journal of Earth Sciences Pub Date : 2024-08-15 DOI:10.1007/s00531-024-02450-6
Mihovil Brlek, Nina Trinajstić, Julie Christin Schindlbeck-Belo, Steffen Kutterolf, Matija Vukovski, Marcel Guillong, Sava Markovic, Sanja Šuica, Kuo-Lung Wang, Hao-Yang Lee, Sean P. Gaynor, Vlatko Brčić, Ivan Mišur, Anita Grizelj, Tomislav Kurečić, Jasmina Martinčević Lazar, Monika Milošević, Viktória Baranyi, Duje Kukoč, H. Albert Gilg, Stoyan Georgiev, Réka Lukács
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Abstract

Reliable reconstructions of tephrostratigraphy and emplacement mechanisms of Early to Middle Miocene volcaniclastic deposits across the Alpine-Mediterranean region may yield important clues as to the nature, spread, volume, magnitude and frequency of large silicic eruptions of the Carpathian-Pannonian Region. Here we report on a sequence of Middle Miocene volcaniclastic deposits intercalated with lacustrine strata from the Livno-Tomislavgrad Basin, part of the Dinaride Lake System. We applied a multi-proxy approach to elucidate their source, decipher their emplacement mechanism, and evaluate their basin-scale and regional correlativity. New high-precision zircon geochronology (~ 14.32 Ma) reveals their simultaneity with numerous volcaniclastic deposits (and their alteration products) widely spread across the Alpine-Mediterranean region. Additionally, their correlativity is confirmed at the scale of the Livno-Tomislavgrad Basin, based on similar lithostratigraphy, mineralogy and volcanic glass geochemistry. Newly obtained zircon Hf isotope data imply that Livno-Tomislavgrad Basin distal volcaniclastic deposits and ~ 14.36 Ma Harsány ignimbrite of the Carpathian-Pannonian Region had shared a parental eruptive center. However, different volcanic glass geochemistry, bolstered by the high-precision geochronology, suggests distinct eruption events, implying more frequent explosive volcanism of the Carpathian-Pannonian Region during Middle Miocene than previously recognized. We suggest that the ~ 14.32 Ma fine fallout tephra, deposited in the distal basin in the Dinarides (> 400 km from the source), was likely re-mobilized by water-driven hillside erosion from the extensive paleo-relief, and further transported via land-derived gravity flows. Upon entering the lake, the gravity flows likely transformed into subaqueous sediment density flows. These deposited ~ 1 to 7-m-thick overall graded volcaniclastic turbidites, thinning away from the presumed source of tephra re-mobilization. Although over-thickened, the ~ 14.32 Ma Livno-Tomislavgrad Basin volcaniclastic deposits can still serve as a reliable tephro- and tectono-stratigraphic markers due to their rapid mode of accumulation.

Graphical Abstract

Schematic illustration of the formation of studied ~14.32 Ma volcaniclastic successions of the SE Livno-Tomislavgrad Basin, Dinaride Lake System

Abstract Image

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储存在迪纳里德湖系统中的喀尔巴阡山-潘诺尼亚地区中新世硅质火山喷发远期记录:对火山喷发地层学和火山碎屑沉积形成的影响
对整个阿尔卑斯-地中海地区早中新世火山碎屑沉积物的表层构造和喷发机制进行可靠的重建,可为了解喀尔巴阡山-潘诺尼亚地区大型硅质火山喷发的性质、扩散、数量、规模和频率提供重要线索。在这里,我们报告了中新世火山碎屑沉积物与湖相地层交错的序列,这些沉积物来自迪纳里德湖泊系统的一部分--利夫诺-托米斯拉夫格勒盆地。我们采用多代理方法阐明了它们的来源,解密了它们的形成机制,并评估了它们的盆地尺度和区域相关性。新的高精度锆石地质年代(约 14.32 Ma)显示,它们与广泛分布于阿尔卑斯-地中海地区的众多火山碎屑沉积物(及其蚀变产物)同时存在。此外,根据类似的岩石地层学、矿物学和火山玻璃地球化学,它们的相关性在利夫诺-托米斯拉夫格勒盆地得到了证实。新获得的锆石 Hf 同位素数据表明,里夫诺-托米斯拉夫格勒盆地远端火山碎屑沉积物与喀尔巴阡山-潘诺尼亚地区的 ~ 14.36 Ma Harsány 火成岩曾共用一个母喷发中心。然而,不同的火山玻璃地球化学特征以及高精度地质年代学的支持,表明了不同的火山喷发事件,这意味着中新世时期喀尔巴阡山-潘诺尼亚地区的爆炸性火山活动比之前所认识到的更为频繁。我们认为,沉积在迪纳里德斯(Dinarides)远端盆地(距源头 400 千米)的〜14.32Ma 细粒沉降片屑,很可能是被大面积古浮雕的水力山坡侵蚀重新移动,并通过陆源重力流进一步迁移。进入湖泊后,重力流很可能转变为水下沉积密度流。这些沉积物形成了厚度约为 1 到 7 米的整体分级火山碎屑浊积岩,在远离假定的火山碎屑再移动源的地方逐渐变薄。尽管厚度过厚,但由于其快速的堆积方式,〜14.32Ma 的利夫诺-托米斯拉夫格勒盆地火山碎屑沉积物仍可作为可靠的火山喷发和构造地层标记。 图文并茂的摘要迪纳里德湖系东南部利夫诺-托米斯拉夫格勒盆地〜14.32Ma 火山碎屑演替的形成示意图
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来源期刊
International Journal of Earth Sciences
International Journal of Earth Sciences 地学-地球科学综合
CiteScore
4.60
自引率
4.30%
发文量
120
审稿时长
4-8 weeks
期刊介绍: The International Journal of Earth Sciences publishes process-oriented original and review papers on the history of the earth, including - Dynamics of the lithosphere - Tectonics and volcanology - Sedimentology - Evolution of life - Marine and continental ecosystems - Global dynamics of physicochemical cycles - Mineral deposits and hydrocarbons - Surface processes.
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