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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Flume- and field-based evaluation of a timeintegrated suspended sediment sampler for the analysis of sediment properties
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Flume- and field-based evaluation of a timeintegrated suspended sediment sampler for the analysis of sediment properties

机译:基于水槽和野外的时间积分悬浮泥沙采样器评估,以分析泥沙特性

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摘要

Suspended sediment has been identified as a vector for nutrient and contaminant transport in the fluvial environment. A time-integrated sampler (the Phillips sampler), which emerged over a decade ago as a cost-effective tool for in situ suspended sediment collection, is increasingly being used to collect samples for the analysis of sediment properties such as particle size composition, and nutrient and contaminant concentrations. This study evaluates the sampler under both flume and field conditions for efficiency in the mass and grain size of the suspended sediment collected. The sampler was tested in a flume using both kaolinite and sediment samples (sieved to<180 μm) collected from the Quesnel River, British Columbia, Canada. In the kaolinite trails, the sampler preferentially collected coarser grain sizes compared to the original sediment, probably due to finer sediment remaining in suspension and therefore passing through the sampler, and also possibly due to flocculation of the kaolinite upon introduction to the flume. Conversely, the sampler collected river sediment that was finer than the original sediment, probably due to some settling of coarser sediment observed at the bottom of the flume. Once allowance was made for these operational issues associated with the flume, maximum sediment mass efficiency for kaolinite and river sediment was 43% and 87%, respectively. Sediment collected by the time-integrated sampler during field deployment and adjacent channel bed sediment were also compared. The sampler collected sediment with a representative grain size distribution. However, there were differences in the geochemical (arsenic and selenium) concentrations of channel bed sediment and sediment collected by the Phillips sampler which may be a function of differences in the behavior of geochemical elements associated with the two types of sediment. This work suggests that further research is needed to evaluate the role of the Phillips sampler in collecting sediment for contaminant and nutrient analysis. Copyright ? 2014 John Wiley & Sons, Ltd.
机译:悬浮的沉积物已被确定为在河流环境中营养和污染物运输的载体。时间积分采样器(Phillips采样器)于10年前问世,它是一种用于现场悬浮沉积物收集的经济高效的工具,现在越来越多地用于收集样品以分析沉积物特性,例如粒度组成,以及营养和污染物浓度。这项研究评估了在水槽和野外条件下采样器的效率,以提高所收集的悬浮沉积物的质量和粒度。使用从加拿大不列颠哥伦比亚省的奎斯内尔河收集的高岭石和沉淀物样品(筛分至<180μm)在水槽中对采样器进行了测试。在高岭土径迹中,与原始沉积物相比,采样器优先收集的粒度更大,这可能是由于悬浮液中保留了较细的沉积物并因此通过采样器,还可能是由于高岭石在引入水道时发生了絮凝。相反,采样器收集的河底沉积物比原始沉积物细,这可能是由于在水槽底部观察到一些较粗的沉积物沉降所致。一旦考虑了与水槽有关的这些操作问题,高岭石和河流沉积物的最大沉积物质量效率分别为43%和87%。还对时间积分采样器在野外部署期间收集的沉积物和邻近的河床沉积物进行了比较。采样器收集的沉积物具有代表性的粒度分布。但是,通道床沉积物和菲利普斯采样器收集的沉积物的地球化学(砷和硒)浓度存在差异,这可能是与两种沉积物相关的地球化学元素的行为差异的函数。这项工作表明,需要进一步的研究来评估菲利普斯采样器在收集沉积物以进行污染物和营养物分析中的作用。版权? 2014约翰·威利父子有限公司

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