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首页> 外文期刊>Earth Surface Dynamics >Seeking enlightenment of fluvial sediment pathways by optically stimulated luminescence signal bleaching of river sediments and deltaic deposits
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Seeking enlightenment of fluvial sediment pathways by optically stimulated luminescence signal bleaching of river sediments and deltaic deposits

机译:寻求对河流沉积物和红细胞沉积物的光学刺激发光信号漂白寻求启示河流沉积物

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摘要

Reconstructing sediment pathways in fluvial and deltaic systems beyond instrumental records is challenging due to a lack of suitable methods. Here we explore the potential of luminescence methods for such purposes, focusing on bleaching of the optically stimulated luminescence (OSL) signal of quartz sediments in a large fluviodeltaic system across time and space. We approach this by comparing residual doses of sand and silt from the modern Mississippi River channel with estimated residual doses of sand isolated from Late Holocene Mississippi Delta mouth bar and overbank deposits. Further insight is obtained from a comparison of burial ages of paired quartz sand and silt of Mississippi Delta overbank deposits. In contrast to some previous investigations, we find that the bleaching of the OSL signal is at least as likely for finer sediment as for coarser sediment of the meandering Mississippi River and its delta. We attribute this to the differences in light exposure related to transport mode (bedload vs. suspended load). In addition, we find an unexpected spatiotemporal pattern in OSL bleaching of mouth bar sand deposits. We suggest this may be caused by changes in upstream pathways of the meandering channel belt(s) within the alluvial valley or by distributary channel and coastal dynamics within the delta. Our study demonstrates that the degree of OSL signal bleaching of sand in a large delta can be highly time- and/or space-dependent. Silt is shown to be generally sufficiently bleached in both the modern Mississippi River and associated paleo-deposits regardless of age, and silt may therefore provide a viable option for obtaining OSL chronologies in megadeltas. Our work contributes to initiatives to use luminescence signals to fingerprint sediment pathways within river channel networks and their deltas and also helps inform luminescence dating approaches in fluviodeltaic environments.
机译:由于缺乏合适的方法,重建超出乐器记录的河流和红细系统中的沉积物途径是挑战。在这里,我们探讨了这种目的的发光方法的潜力,重点是横跨时间和空间在大型粪便系统中石英沉积物的光学刺激发光(OSL)信号的漂白。我们通过比较现代密西西比河频道的残留剂量的沙子和淤泥,估计从全新世微米士达嘴巴和超银行沉积物中分离出近期的砂砂和砂砂,我们接近了这一点。从密西西比三角洲的密西西比替代店的配对石英砂和淤泥的埋藏年龄的比较获得了进一步的洞察力。与某些先前的调查相比,我们发现OSL信号的漂白至少可能与曲折密西西比河及其三角洲腐烂的沉积物更精细的沉积物。我们将其归因于与传输模式相关的光曝光的差异(床单与悬挂负载)。此外,我们在OSL漂白嘴巴砂沉积物中发现了一种意外的时空模式。我们建议这可能是由冲积谷内的蜿蜒通道带的上游路径的变化引起的,或者在三角洲内的分配信道和沿海动力学。我们的研究表明,大三角形砂中的OSL信号漂白程度可以是高度的 - 和/或空间依赖性。淤泥被证明通常在现代密西西比河和相关的古沉积物中充分漂白,无论年龄段,淤泥可能提供可行的选择,以获得梅格塔斯中的OSL年表。我们的工作有助于将发光信号与河道网络网络及其谵区中的指纹沉积物途径进行举措,并且还有助于为博士埃夫蒂塔环境中提供发光约会方法。

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