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The use of visible and near-infrared reflectance measurements for identifying the source of suspended sediment in rivers and comparison with geochemical fingerprinting

机译:利用可见光和近红外反射率测量来确定河流中悬浮沉积物的来源并与地球化学指纹图谱进行比较

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摘要

Purpose Visible and near-infrared (Vis-NIR) reflectance measurements may be an alternative technique to identify suspended sediment sources in streams of headwater catchments. In this study, we examined if Vis-NIR reflectance measurements are capable of estimating sediment source contributions to sediment yield and compared this technique with a more conventional (i.e. geochemical) technique. Materials and methods Two headwater catchments in Ethiopia, Unta (2,052 ha) and Desera (1,657 ha), were analysed with the same techniques in order to find similarities and differences in the results obtained. The first technique used Vis-NIR spectral analysis as a fingerprint, using a partial least squares regression model. The second technique was a quantitative composite fingerprinting technique using geochemical analysis of source materials and suspended sediment samples. As a comparison, the partial least squares model was also used on the geochemical data. In August and September 2009, 30 soil samples of three different land uses (landslides, croplands, and grazing lands) and 21 suspended sediment samples at the catchment outlet were collected. Source samples were sieved to <63 μm. Geochemical analyses consisted of total element concentrations, percentage carbon, percentage nitrogen, and atom percentage ~(15)N and δ~(13)C. Reflectance measurements were taken on dried source samples with a spectrometer. Results and discussion Neither technique was able to predict the contributions of the three land use types; they could only distinguish between landslide and topsoil material. The agreement between the results of both techniques was significant for the Unta catchment (R~2=0.80) but not for the Desera catchment (R~2=0.39). The uncertainty of the technique using Vis-NIR reflectance measurements was slightly higher than with the geochemical approach. Both techniques revealed that topsoil erosion played an important role during storm runoff discharges. Using the partial least squares model for the geochemical data revealed that uncertainty can differ greatly when using other statistical techniques. Conclusions The quantitative composite fingerprinting technique using spectral signatures from both source and suspended sediment samples was able to quantify the contribution of two source materials (landslides and topsoil). It provided a faster and more cost effective alternative to the conventional geochemical procedure.
机译:目的可见和近红外(Vis-NIR)反射率测量可能是识别源头集水流中悬浮沉积物来源的替代技术。在这项研究中,我们检查了Vis-NIR反射率测量是否能够估算沉积物源对沉积物产量的贡献,并将此技术与更常规的技术(即地球化学)进行了比较。材料和方法使用相同的技术对埃塞俄比亚的两个水源流域Unta(2,052公顷)和Desera(1,657公顷)进行了分析,以发现所得结果的异同。第一种技术是使用Vis-NIR光谱分析作为指纹,并使用偏最小二乘回归模型。第二种技术是定量复合指纹技术,该技术使用了源材料和悬浮沉积物样品的地球化学分析。作为比较,偏最小二乘模型也用于地球化学数据。在2009年8月和2009年9月,在集水区出口收集了30种不同土地用途(滑坡,农田和牧场)的土壤样品和21个悬浮沉积物样品。源样品过筛至<63μm。地球化学分析包括总元素浓度,碳百分比,氮百分比和原子百分比〜(15)N和δ〜(13)C。用分光计对干燥的源样品进行反射率测量。结果与讨论两种技术都无法预测三种土地利用类型的贡献。他们只能区分滑坡和表土材料。两种技术的结果之间的一致性对于Unta流域(R〜2 = 0.80)很重要,而对于Desera流域(R〜2 = 0.39)则不重要。使用Vis-NIR反射率测量技术的不确定性略高于地球化学方法。两种技术都表明,表层土壤侵蚀在暴雨径流排放中起着重要作用。对地球化学数据使用偏最小二乘模型表明,使用其他统计技术时,不确定性可能会有很大差异。结论利用来自源和悬浮沉积物样品的光谱特征的定量复合指纹图谱技术能够量化两种源材料(滑坡和表土)的贡献。它提供了一种比常规地球化学方法更快,更经济的方法。

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  • 来源
    《Journal of soil & sediments》 |2014年第11期|1869-1885|共17页
  • 作者单位

    Department of Earth and Environmental Sciences, KU Leuven, Celestijnenlaan 200 E, 3001 Leuven, Belgium;

    Department of Earth and Environmental Sciences, KU Leuven, Celestijnenlaan 200 E, 3001 Leuven, Belgium;

    Department of Natural Resource Management, School of Agriculture, Jimma University, POB 378, Jimma, Ethiopia;

    Department of Earth and Environmental Sciences, KU Leuven, Celestijnenlaan 200 E, 3001 Leuven, Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fingerprinting; Landslides; Sediment yield; Suspended sediments; Vis-NIR;

    机译:指纹;滑坡;泥沙产量;悬浮沉积物;近红外;

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