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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Seismic evidence of glacial deposits inhibiting weathering of local bedrock at a snow-dominated subalpine watershed
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Seismic evidence of glacial deposits inhibiting weathering of local bedrock at a snow-dominated subalpine watershed

机译:冰川沉积物的地震证据抑制当地基岩的风化在一个雪撬亚水平流域

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摘要

Previously glaciated landscapes are often covered with glacial sediments with poorly sorted particles. The thickness of glacial sediments can reach hundreds of meters. These sediments, which have experienced high intensity erosion through glacial transportation, are susceptible to chemical weathering processes because of the increased reactive mineral surfaces induced via erosion. Infiltrated meteoric water will first attack the glacial sediments, becoming (partially) saturated with weathering products, before interacting with the local bedrock underneath. As a consequence, the glacial deposits will hinder the weathering processes of the underlying local bedrock. In this study, we test this hypothesis by imaging the weathered layer of a previously glaciated terrain in the Medicine Bow Mountains, Wyoming using full-3D seismic ambient-noise tomography. To the best of our knowledge, our study provides the first full-3D seismic velocity model of the Critical Zone structure under a previously glaciated landscape. Our 3D seismic velocity model reveals that the saprolite weathered from local bedrock is thinner where the overlying glacial deposit layer is thicker. This anti-correlation suggests that the glacial deposits may locally protect the underlying bedrock from chemical weathering by depleting reactive chemicals in the meteoric water and (partially) saturate the meteoric water with weathering products. Our study may provide a potential counter mechanism against glaciation-induced acceleration of chemical weathering of the continents, which regulates atmospheric concentration of carbon dioxide and the global climate. (C) 2020 Elsevier B.V. All rights reserved.
机译:以前冰川景观通常覆盖着冰川沉积物,颗粒不良。冰川沉积物的厚度可达数百米。这些沉积物,通过冰川运输经历了高强度侵蚀,易于化学风化过程,因为通过腐蚀诱导的增加的反应性矿物表面。渗透的陨石水将首先攻击冰川沉积物,在与下面的当地基岩相互作用之前,饱和沉积物饱和,饱和产品饱和。结果,冰川沉积物将阻碍潜在的当地基岩的风化过程。在这项研究中,我们通过在药弓山脉的预先冰川地形的风化层成像,使用全3D地震环境 - 噪声断层扫描来对经风化层进行了测试。据我们所知,我们的研究提供了先前冰川景观下的临界区结构的第一个全3D地震速度模型。我们的3D地震速度模型表明,从本地基岩中风化的皂状物较薄,在覆盖冰川沉积层较厚的情况下。这种反相关表明,冰川沉积物可以通过耗尽气象水中的反应化学物质和(部分)通过耐候物品饱和气象水,冰川沉积物可以在局部保护底层基岩。我们的研究可以提供潜在的反击抗冰川诱导的大陆化学风化加速度的潜在计数器机制,其调节大气浓度的二氧化碳和全球气候。 (c)2020 Elsevier B.v.保留所有权利。

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