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Evaluating Rare Earth Elements as Tracers of Fluvial Processes: Fine Sediment Transport and Deposition in a Small Stream

机译:评估稀土元素作为河流过程的示踪剂:小流中的细沉积物运输和沉积

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摘要

Effective sediment management requires an understanding of the lag time between best management practice implementation and observable changes in the target water body. To improve our understanding of sediment lag times, we tested a method to label locally sourced sediments with rare earth elements to quantify fine sediment flow-through and storage in fluvial systems. We injected sediments labeled with lanthanum and ytterbium into a small stream during two artificial flood events. During the floods,we collected and quantified suspended sediments and sediment deposition in the stream channel and floodplain at four cross-sections within our study reach. Two down-gradient (90 m and 850 m) time-integrated suspended sediment samplers evaluated total travel distance. Sediment tracer observations of particle transport distances ranged from Om to at least 850 m at a maximum flow rate of 55 Ls'1 (stream 1.5 year flow was 515 Ls'1). Sediment deposition per unit area was greater in the channel than in the floodplain. The majority of sediment tracer mass injected into the stream entered storage within the first 69 m of the reach. Some particles that deposited following the first flood were resuspended and either transported downstream or redeposited within the study reach. Our results support the further use of rare earth elements as sediment tracers to inform water quality and sediment transport models, and to provide estimates of lag times between management actions and downstream improvements.
机译:有效的泥沙管理需要了解最佳管理实践实施与目标水体中可观察到的变化之间的滞后时间。为了提高我们对沉积物滞后时间的理解,我们测试了一种方法,用稀土元素标记当地来源的沉积物,以量化河流系统中细泥沙的流经和储存。在两次人工洪水期间,我们将标记有镧和镱的沉积物注入一条小溪。在洪水期间,我们收集并量化了研究河段内四个横截面的河道和漫滩中的悬浮泥沙和泥沙沉积。两台下坡(90m和850m)时间积分悬浮泥沙采样器评估了总移动距离。在55 Ls'1的最大流速下,颗粒运移距离的沉积物示踪物观测范围从Om到至少850 m(河流1.5年的流量为515 Ls'1)。河道单位面积的泥沙淤积量大于漫滩。注入河流的大部分沉积物示踪剂在河段的前69 m范围内进入蓄水。一些在第一次洪水后沉积的颗粒被重新悬浮,或者被输送到下游,或者在研究河段内重新沉积。我们的结果支持进一步使用稀土元素作为沉积物示踪剂,以告知水质和沉积物运输模型,并提供管理措施和下游改善之间的滞后时间估计。

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