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首页> 外文期刊>Hydrological ProcHydrological Processesrnesses >Combining two filter paper‐based analytical methods to monitor temporal variations in the geochemical properties of fluvial suspended particulate matter
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Combining two filter paper‐based analytical methods to monitor temporal variations in the geochemical properties of fluvial suspended particulate matter

机译:结合两种基于滤纸的分析方法来监测河流悬浮颗粒物地球化学特性的时间变化

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摘要

Many of the commonly used analytical techniques for assessing the properties of fluvial suspended particulate matter (SPM) are neither cost effective nor time efficient, making them prohibitive to long-term high-resolution monitoring. We present an in-depth methodology utilizing two types of spectroscopy which, when combined with automatic water samplers, can generate accurate, high-temporal resolution SPM geochemistry data, inexpensively and semi-destructively, directly from sediment covered filter papers. A combined X-ray fluorescence spectroscopy and diffuse reflectance infrared Fourier transform spectroscopy approach is developed to estimate concentrations for a range of elements (Al, Ca, Ce, Fe, K, Mg, Mn, Na, P, Si, Ti) and compounds (organic carbon, Al, Al, Fe, and Fe) within SPM trapped on quartz fibre filters at masses as low as 3 mg. Calibration models with small prediction errors are derived, along with mass correction factor models to account for variations in retained SPM mass. Spectral pre-processing methods are shown to enhance the reproducibility of results for some compounds, and the importance of filter paper selection and homogeneous sample preparation in minimizing spectral interference is emphasized. The geochemical signal from sediment covered filter papers is demonstrated to be time stable enabling samples to be stored for several weeks prior to analysis. Example results obtained during a heavy precipitation event in October 2012 demonstrate the methodology presented here has considerable potential to be utilized for high-resolution monitoring of SPM geochemistry under a range of in-stream hydrological conditions. Copyright © 2013 John Wiley & Sons, Ltd.
机译:许多常用的评估河流悬浮颗粒物(SPM)特性的分析技术既不具有成本效益,又不具时间效率,因此无法进行长期的高分辨率监测。我们提供了一种利用两种光谱学的深入方法,当与自动水采样器结合使用时,可以直接从沉积物覆盖的滤纸上廉价且半破坏地生成准确的,高温分辨率的SPM地球化学数据。开发了一种结合X射线荧光光谱和漫反射红外傅里叶变换光谱的方法来估算各种元素(Al,Ca,Ce,Fe,K,Mg,Mn,Na,P,Si,Ti)和化合物的浓度捕获在石英纤维过滤器上的SPM中的有机碳,铝,铝,铁和铁的质量低至3毫克。推导了具有较小预测误差的校准模型以及质量校正因子模型,以说明保留的SPM质量的变化。光谱预处理方法显示出可增强某些化合物结果的可重复性,并强调了滤纸选择和均质样品制备在最小化光谱干扰方面的重要性。沉积物覆盖滤纸的地球化学信号被证明是时间稳定的,能够在分析之前将样品存储数周。在2012年10月的一次强降雨事件中获得的示例结果表明,本文介绍的方法在一系列溪流水文条件下,具有用于SPM地球化学高分辨率监测的巨大潜力。版权所有©2013 John Wiley&Sons,Ltd.

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