首页> 外文期刊>Journal of soil & sediments >Trace metal distribution in the bed, bank and suspended sediment of the Ravensbourne River and its implication for sediment monitoring in an urban river
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Trace metal distribution in the bed, bank and suspended sediment of the Ravensbourne River and its implication for sediment monitoring in an urban river

机译:拉文斯堡河床,河岸和悬浮沉积物中的痕量金属分布及其对城市河流沉积物监测的意义

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PurposeThis study aims to identify a suitable sediment compartment for sediment quality monitoring by: (a) studying the concentration of trace metals (Cd, Cu, Ni, Pb and Zn) in the bed, bank and suspended sediment compartments of the Ravensbourne River to establish any differences in trace metal concentrations with compartment; (b) determining the influence of sediment particle size fractions (63m and 63m-2mm), organic matter and mineralogy on any differences; and (c) examining if metal concentration in each sediment compartment complies with the draft UK sediment quality guidelines.Materials and methodsHere, we make a comparison of metal concentrations in the bed, bank and suspended sediment compartments of the Ravensbourne River collected using different sampling techniques. We distinguished between two particle size fractionsthe 63m fraction (suspended, bed and bank sediment) and the 63m-2mm fractions of bed and bank material with the aim of comparing concentrations between the two fractions. Particle size analysis, metal speciation, organic matter content by loss on ignition and mineralogy using X-ray diffraction were also carried out on each sediment compartment.Results and discussionThe results showed variations in trace metal concentrations with sediment compartment and with particle size. The mineralogical characteristics were comparable for all sediment compartments, and the relationships between organic matter content and metal concentrations were significant in the majority of the bank sediment samples. There were no significant differences (p0.05) in the concentrations of metals between the suspended sediment and the 63m bed sediment fraction, but there was a significant difference (p0.05) between the suspended sediment and the 63m bank sediment fraction. There were also significant differences between the concentrations of metals in the 63m and the 63m-2mm fractions. Generally, the Ravensbourne River did not comply with the draft UK sediment quality guidelines for the metals analysed.ConclusionsThis study shows the importance of identifying a suitable sediment compartment to sample for compliance with sediment quality standards. The bed and suspended sediments are the most widely used sediment compartments for sediment monitoring, but collecting sufficient mass of the 63m sediment fraction for monitoring presents a challenge for urban gravel bed rivers like the Ravensbourne River. It seems appropriate to establish individual monitoring regimes for different rivers.
机译:目的本研究旨在通过以下方法找到合适的沉积物隔室,以进行沉积物质量监测:(a)研究Ravensbourne河床,河岸和悬浮沉积物隔室中痕量金属(Cd,Cu,Ni,Pb和Zn)的浓度,以建立隔室中痕量金属浓度的任何差异; (b)确定沉积物粒度分数(<63m和63m-2mm),有机物和矿物学对任何差异的影响; (c)检查每个沉积物隔室中的金属浓度是否符合英国沉积物质量指南草案。材料和方法这里,我们对使用不同采样技术采集的拉文斯本河床,河床和悬浮沉积物隔室中的金属浓度进行比较。 。我们将两个粒径级分<63m的级分(悬浮物,床层和河床沉积物)与63m-2mm的床级和河床材料进行了区分,目的是比较两个级分之间的浓度。还对每个沉积物隔室进行了粒度分析,金属形态分析,燃烧损失有机物含量和X射线衍射的矿物学分析。结果与讨论结果表明,微量金属浓度随沉积物隔室和粒径而变化。所有沉积物区室的矿物学特征都是可比的,并且在大多数河岸沉积物样品中有机物含量和金属浓度之间的关系很明显。悬浮泥沙和<63m床沉积物部分之间的金属浓度没有显着差异(p> 0.05),但是悬浮泥沙和<63m河床沉积物部分之间的金属浓度有显着差异(p <0.05)。 <63m和63m-2mm馏分中的金属浓度之间也存在显着差异。通常,拉文斯伯恩河不符合所分析金属的英国沉积物质量指南草案。结论本研究表明,确定合适的沉积物隔室以进行采样以符合沉积物质量标准的重要性。床和悬浮沉积物是用于沉积物监测的最广泛使用的沉积物隔室,但是要收集足够的质量<63m的沉积物部分以进行监测,对于诸如Ravensbourne河之类的城市砾石河道构成了挑战。建立针对不同河流的单独监测制度似乎是适当的。

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