The Addition of Felsic Sediments to the Lower Continental Crust During the Variscan Orogeny

IF 3 2区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Geochemistry Geophysics Geosystems Pub Date : 2025-01-14 DOI:10.1029/2024GC011843
M. F. Ringwood, S. E. Ortner, R. L. Rudnick
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Abstract

Lower crustal metasedimentary xenoliths (garnet-sillimanite granulites) from the Bournac breccia pipe in the Massif Central, France, provide a robust example of sediments transported to depth and incorporated into stable lower continental crust during a collisional orogeny. Dates for detrital igneous zircon range from the Archean (up to 3,300 Ma) to the Devonian and record sedimentation prior to the onset of the collisional phase of the Variscan orogeny. Metamorphic zircon and monazite document the presence of the metasediments in the lower crust by ca. 330 Ma during the later phase of Variscan collision. Zircon and monazite crystallization continued within the lower crust until ca. 265 Ma, corresponding to a period of slow cooling following an episode of ultra-high temperature (UHT) metamorphism that peaked at 313 Ma. Zr-in-rutile thermometry and GASP barometry applied to these samples record conditions of 0.63–0.77 GPa and 830–910°C, which correspond to Ti-in-zircon temperatures from the latter part of the Variscan orogeny and geotherms in excess of typical continent-continent collisions. Rutile in these samples remained open to Pb loss until their eruption at ca. 11.6 Ma, providing an indirect date of the Bournac eruption. These rocks record the incorporation of felsic sedimentary material into the stable deep continental crust during a collisional orogen and their residence there for over 300 Ma. More broadly, the addition of sediments to stable lower crust contributes to changes in crustal composition and has significant implications for the heterogeneity of the deep continental crust, as well as overall crustal heat production and mantle heat flow.

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瓦里斯坎造山运动期间长英质沉积物向下大陆地壳的添加
来自法国中部地块布尔纳克角砾岩管的下地壳变质沉积岩捕虏体(石榴石-硅线石麻粒岩)提供了一个在碰撞造山运动期间沉积物被运送到深处并并入稳定的下大陆地壳的有力例子。碎屑火成岩锆石的年代从太古宙(至3300 Ma)到泥盆纪,并记录了在Variscan造山运动碰撞阶段开始之前的沉积。变质锆石和独居石表明,在瓦里斯坎碰撞后期约330 Ma时,下地壳出现了变质沉积物。锆石和独居石结晶在下地壳中持续到约265 Ma,对应于在313 Ma达到峰值的超高温(UHT)变质期之后的一段缓慢冷却时期。金红石中锆的测温和GASP测压记录了0.63 ~ 0.77 GPa和830 ~ 910℃的温度,对应了瓦立斯坎造山后期锆石中钛的温度和典型大陆碰撞之外的地热。这些样品中的金红石在大约11.6 Ma喷发之前一直处于铅损失状态,这提供了布尔纳克喷发的间接日期。这些岩石记录了长英质沉积物质在碰撞造山带期间并入稳定的深部大陆地壳,并在那里居住了300多Ma。更广泛地说,稳定的下地壳中沉积物的加入有助于地壳成分的变化,并对大陆深部地壳的非均质性以及整体地壳产热和地幔热流具有重要意义。
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来源期刊
Geochemistry Geophysics Geosystems
Geochemistry Geophysics Geosystems 地学-地球化学与地球物理
CiteScore
5.90
自引率
11.40%
发文量
252
审稿时长
1 months
期刊介绍: Geochemistry, Geophysics, Geosystems (G3) publishes research papers on Earth and planetary processes with a focus on understanding the Earth as a system. Observational, experimental, and theoretical investigations of the solid Earth, hydrosphere, atmosphere, biosphere, and solar system at all spatial and temporal scales are welcome. Articles should be of broad interest, and interdisciplinary approaches are encouraged. Areas of interest for this peer-reviewed journal include, but are not limited to: The physics and chemistry of the Earth, including its structure, composition, physical properties, dynamics, and evolution Principles and applications of geochemical proxies to studies of Earth history The physical properties, composition, and temporal evolution of the Earth''s major reservoirs and the coupling between them The dynamics of geochemical and biogeochemical cycles at all spatial and temporal scales Physical and cosmochemical constraints on the composition, origin, and evolution of the Earth and other terrestrial planets The chemistry and physics of solar system materials that are relevant to the formation, evolution, and current state of the Earth and the planets Advances in modeling, observation, and experimentation that are of widespread interest in the geosciences.
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