Tracing uplift and erosion in orogenic settings using quartz luminescence sensitivity: Insights from the Northern Andes uplift

IF 1.7 2区 地球科学 Q3 GEOGRAPHY, PHYSICAL
Carlos Ortiz , Mauricio Parra , Fernanda C.G. Rodrigues , Thays D. Mineli , André O. Sawakuchi
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Abstract

The optically stimulated luminescence (OSL) sensitivity of the fast component in quartz has been increasingly used in provenance analysis of Quaternary sediments. Quartz OSL natural sensitization is thought to be mainly controlled by the formation conditions of the source bedrock and surface processes occurring mainly in sediment source areas. Thus, quartz OSL sensitivity can be linked to distinct sediment source regions, based on their tectonic setting and erosion conditions. In this way, changes in quartz OSL sensitivity within siliciclastic successions would track variations in sediment provenance. So far, few works evaluated how the OSL sensitivity of quartz sand grains varies in sedimentary successions that experienced long-term cycles of deep burial, exhumation, and erosion. Therefore, this work aims to characterize the sensitivity of the fast OSL component of quartz sand grains retrieved from the Cenozoic sedimentary rocks of the Northern Andes basins and assess its spatiotemporal changes. We found that quartz grains with the lowest OSL sensitivity are sourced by crystalline and volcanic rocks related to the Andean Continental Arc emplaced in the Colombian Central Cordillera, reflecting the onset of denudation in orogenic sources during the Paleocene. Subsequently, increasing trends in OSL sensitivity are related to the sedimentary recycling during the Andean orogeny, reaching maximum values as a result of the progressive unroofing of Cretaceous rocks in the Colombian Eastern Cordillera, originally sourced from the low-relief Amazon Craton. Changes in quartz OSL sensitivity measured in the Cenozoic sedimentary basin-fill sequences of the Northern Andes vary according to the shifts in sediment provenance related to the orogenic construction and sediment recycling of the Andean range.

利用石英发光敏感性追踪造山环境中的隆起和侵蚀:北安第斯山脉隆升的启示
石英中快速成分的光激发发光(OSL)灵敏度已越来越多地用于第四纪沉积物的来源分析。石英 OSL 自然敏化被认为主要受源基岩的形成条件和主要发生在沉积物源区的地表过程控制。因此,根据不同沉积物源区的构造环境和侵蚀条件,可以将石英 OSL 敏感性与这些地区联系起来。这样,硅质岩岩层中石英 OSL 敏感性的变化就可以追踪沉积物来源的变化。迄今为止,很少有研究评估石英砂颗粒的OSL灵敏度在经历了长期深埋、掘起和侵蚀循环的沉积演替中是如何变化的。因此,本研究旨在描述从北安第斯盆地新生代沉积岩中提取的石英砂颗粒的快速OSL成分的灵敏度,并评估其时空变化。我们发现,OSL灵敏度最低的石英颗粒来自与哥伦比亚中科迪勒拉山系安第斯大陆弧有关的结晶岩和火山岩,反映了古新世时期造山运动源的剥蚀作用的开始。随后,OSL 灵敏度的上升趋势与安第斯造山运动期间的沉积物循环有关,由于哥伦比亚东科迪勒拉山系的白垩纪岩石(最初来自低褶皱的亚马孙克拉通)逐渐剥蚀,OSL 灵敏度达到最高值。北安第斯山脉新生代沉积盆地-充填序列中测得的石英 OSL 灵敏度的变化随安第斯山脉造山运动和沉积物循环过程中沉积物来源的变化而变化。
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来源期刊
Quaternary Geochronology
Quaternary Geochronology 地学-地球化学与地球物理
CiteScore
4.40
自引率
22.20%
发文量
130
审稿时长
20 weeks
期刊介绍: Quaternary Geochronology is an international journal devoted to the publication of the highest-quality, peer-reviewed articles on all aspects of dating methods applicable to the Quaternary Period - the last 2.6 million years of Earth history. Reliable ages are fundamental to place changes in climates, landscapes, flora and fauna - including the evolution and ecological impact of humans - in their correct temporal sequence, and to understand the tempo and mode of geological and biological processes.
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