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Pre-breakup magmatism on the Vøring margin: Insight from new sub-basalt imaging and results from Ocean Drilling program hole 642E

机译:Vøring边缘的破裂前岩浆作用:新的玄武岩成像的洞察力和Ocean Drilling程序孔642E的结果

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Highlights\ud\ud• Sub-basalt imaging improvement on the Vøring Margin\ud• Definition of a new seismic facies unit: the Lower Series Flows\ud• Significant organic carbon content within the melting crustal segment\ud• Apectodinium augustum marker for the PETM is reworked into the Lower Series Flows\ud• The Lower Series Flows, early Eocene in age, predate the Vøring Margin breakup\ud\udAbstract\ud\udImprovements in sub-basalt imaging combined with petrological and geochemical observations from the Ocean Drilling Program (ODP) Hole 642E core provide new constraints on the initial breakup processes at the Vøring Margin. New and reprocessed high quality seismic data allow us to identify a new seismic facies unit which we define as the Lower Series Flows. This facies unit is seismically characterized by wavy to continuous subparallel reflections with an internal disrupted and hummocky shape. Drilled lithologies, which we correlate to this facies unit, have been interpreted as subaqueous flows extruding and intruding into wet sediments. Locally, the top boundary of this facies unit is defined as a negative in polarity reflection, and referred as the K-Reflection. This reflection can be correlated with the spatial extent of pyroclastic deposits, emplaced during transitional shallow marine to subaerial volcanic activities during the rift to drift transition. The drilled Lower Series Flows consist of peraluminous, cordierite bearing peperitic basaltic andesitic to dacitic flows interbedded with thick volcano-sedimentary deposits and intruded sills. The peraluminous geochemistry combined with available C (from calcite which fills vesicles and fractures), Sr, Nd, and Pb isotopes data point towards upper crustal rock-mantle magma interactions with a significant contribution of organic carbon rich pelagic sedimentary material during crustal anatexis. From biostratigraphic analyses, Apectodinium augustum was found in the The Lower Series Flows. This species is a marker for the Paleocene – Eocene Thermal Maximum (PETM). However, the absence of very low carbon isotope values (from bulk organic matter), that characterize the PETM, imply that A.augustum was reworked into the early Eocene sediments of this facies unit which predate the breakup time of the Vøring Margin.\udFinally, a plausible conceptual emplacement model for the Lower Series Flows facies unit is proposed. This model comprises several stages: (1) the emplacement of subaqueous peperitic basaltic andesitic flows intruding and/or extruding wet sediments; (2) a subaerial to shallow marine volcanism and extrusion of dacitic flows; (3) a proto-breakup phase with intense shallow marine to subaerial explosive volcanism responsible for pyroclastic flow deposits which can be correlated with the seismic K-Reflection and (4) the main breakup stage with intense transitional tholeiitic MORB-type volcanism and large subsidence concomitant with the buildup of the Seaward Dipping Reflector wedge.
机译:亮点\ ud \ ud•Vøring边缘的玄武岩成像改进\ ud•定义了一个新的地震相单元:较低的序列流\ ud•地壳段融化中有大量有机碳含量\ ud•将PETM重新设计为低层序流\ ud•始新世早期的低层序流早于Vøring余量破裂\ ud \ ud摘要\ ud \ ud玄武岩成像的改进与海洋钻井计划的岩石学和地球化学观测相结合(ODP)孔642E磁芯为VøringMargin的初始破裂过程提供了新的约束。新的和经过重新处理的高质量地震数据使我们能够确定一个新的地震相单元,我们将其定义为“下层流”。该相单元的特征是地震波呈连续至连续的次平行反射,内部呈褶皱状。我们与该相单元相关的钻井岩性已被解释为水下流动挤出并侵入湿沉积物中。在局部上,该相单元的顶部边界在极性反射中定义为负,并称为K反射。这种反射可能与火山碎屑沉积物的空间范围有关,而火山碎屑沉积物是在裂谷到漂移过渡期间从浅海相过渡到陆相火山活动的过程中形成的。下层钻探液流由钙铝,堇青石组成的钙质辉石玄武质至安息香至大溪流组成,并夹有厚厚的火山沉积沉积物和侵入基岩。多年生地球化学与可利用的C(来自方解石填充的小泡和裂缝),Sr,Nd和Pb同位素数据相结合,表明上地壳岩幔岩浆相互作用具有重要作用,这是在地壳后沉积过程中富含有机碳的上层沉积物质的重要原因。从生物地层学分析中,在较低的系列流中发现了Auguoditum augustum。该物种是古新世-始新世最大热量(PETM)的标志。但是,由于缺乏PETM所特有的非常低的碳同位素值(来自大量有机物),这意味着将八月青蒿重新加工到该相单元的始新世沉积物中,这早于Vøring边缘的破裂时间。 ,提出了下层流相单元的合理概念位置模型。该模型包括以下几个阶段:(1)侵入和/或挤出湿沉积物的海底peperitic玄武质安第斯水流的位置; (2)从陆上到浅海的火山作用和洋流的挤压; (3)原始的破裂阶段,强烈的浅海到陆上爆炸性火山作用导致火山碎屑流沉积,这可能与地震K反射有关;(4)主要的破裂阶段,具有强烈的过渡性莫里布型火山作用和大沉降伴随着Seaward Dipping Reflector楔形物的堆积。

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