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High-resolution record reveals climate-driven environmental and sedimentary changes in an active rift

机译:高分辨率记录揭示了活跃裂谷中气候驱动的环境和沉积变化

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摘要

Young rifts are shaped by combined tectonic and surface processes and climate, yet few records exist to evaluate the interplay of these processes over an extended period of early rift-basin development. Here, we present the longest and highest resolution record of sediment flux and paleoenvironmental changes when a young rift connects to the global oceans. New results from International Ocean Discovery Program (IODP) Expedition 381 in the Corinth Rift show 10s–100s of kyr cyclic variations in basin paleoenvironment as eustatic sea level fluctuated with respect to sills bounding this semi-isolated basin, and reveal substantial corresponding changes in the volume and character of sediment delivered into the rift. During interglacials, when the basin was marine, sedimentation rates were lower (excepting the Holocene), and bioturbation and organic carbon concentration higher. During glacials, the basin was isolated from the ocean, and sedimentation rates were higher (~2–7 times those in interglacials). We infer that reduced vegetation cover during glacials drove higher sediment flux from the rift flanks. These orbital-timescale changes in rate and type of basin infill will likely influence early rift sedimentary and faulting processes, potentially including syn-rift stratigraphy, sediment burial rates, and organic carbon flux and preservation on deep continental margins worldwide.
机译:年轻的裂谷受构造,地表过程和气候的共同影响而形成,但很少有记录来评价这些裂谷在早期裂谷盆地发育的长期过程中的相互作用。在这里,当年轻的裂谷连接到全球海洋时,我们提出了最长,最高分辨率的泥沙通量和古环境变化记录。国际海洋发现计划(IODP)第381号探险队在科林斯裂谷的最新结果表明,盆地水环境中的欢乐海平面相对于围绕该半隔离盆地的坎s波动,盆地古环境发生了10s–100s的周期性变化,并揭示了相应的变化。进入裂谷的沉积物的体积和特征。在间冰期,盆地为海洋时,沉积速率较低(全新世除外),生物扰动和有机碳浓度较高。在冰川期,盆地与海洋隔绝,沉积速率较高(约为冰川期的2至7倍)。我们推断,冰川期的植被覆盖减少,导致裂谷侧面的泥沙通量更高。这些盆地时间和盆地填充物类型的轨道时标变化可能会影响裂谷早期的沉积和断层过程,可能包括同速裂隙地层学,沉积物埋藏率,有机碳通量以及全球深陆边缘的保存。

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