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A novel approach combining self-organizing map and parallel factor analysis for monitoring water quality of watersheds under non-point source pollution

机译:自组织图和并行因子分析相结合的非点源污染流域水质监测新方法

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摘要

High content of organic matter in the downstream of watersheds underscored the severity of non-point source (NPS) pollution. The major objectives of this study were to characterize and quantify dissolved organic matter (DOM) in watersheds affected by NPS pollution, and to apply self-organizing map (SOM) and parallel factor analysis (PARAFAC) to assess fluorescence properties as proxy indicators for NPS pollution and labor-intensive routine water quality indicators. Water from upstreams and downstreams was sampled to measure dissolved organic carbon (DOC) concentrations and excitation-emission matrix (EEM). Five fluorescence components were modeled with PARAFAC. The regression analysis between PARAFAC intensities (Fmax) and raw EEM measurements indicated that several raw fluorescence measurements at target excitation-emission wavelength region could provide similar DOM information to massive EEM measurements combined with PARAFAC. Regression analysis between DOC concentration and raw EEM measurements suggested that some regions in raw EEM could be used as surrogates for labor-intensive routine indicators. SOM can be used to visualize the occurrence of pollution. Relationship between DOC concentration and PARAFAC components analyzed with SOM suggested that PARAFAC component 2 might be the major part of bulk DOC and could be recognized as a proxy indicator to predict the DOC concentration.
机译:流域下游的有机物含量高,突显了非点源(NPS)污染的严重性。这项研究的主要目的是表征和量化受NPS污染影响的流域中的溶解性有机物(DOM),并应用自组织图(SOM)和平行因子分析(PARAFAC)评估荧光性质作为NPS的替代指标污染和劳动强度大的常规水质指标。对来自上游和下游的水进行采样,以测量溶解的有机碳(DOC)浓度和激发排放矩阵(EEM)。用PARAFAC对五个荧光成分进行建模。 PARAFAC强度(Fmax)与原始EEM测量值之间的回归分析表明,在目标激发发射波长区域进行的几次原始荧光测量可以为与PARAFAC结合的大规模EEM测量提供相似的DOM信息。 DOC浓度和原始EEM测量值之间的回归分析表明,原始EEM中的某些区域可以用作劳动密集型常规指标的替代指标。 SOM可用于可视化污染的发生。用SOM分析DOC浓度与PARAFAC成分之间的关​​系表明PARAFAC成分2可能是散装DOC的主要部分,可以被认为是预测DOC浓度的替代指标。

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