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Seasonal and downstream alterations of dissolved organic matter and dissolved inorganic ions in a human-impacted mountainous tributary of the Yellow River, China

机译:溶解有机质的季节性和下游改变和溶解的无机离子在黄河黄河山区支流中的溶解无机离子

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摘要

Human activities impose important disturbances on both organic and inorganic chemistry in fluvial systems. In this study, we investigated the intra-annual and downstream variations of dissolved organic carbon (DOC), dissolved organic matter (DOM) excitation-emission matrix fluorescence (EEM) with parallel factor analysis (PARAFAC), major ions, and dissolved inorganic nitrogen (DIN) species in a mountainous tributary of the Yellow River, China. Both DOM quantity and quality, as represented by DOC and DOM fluorescence respectively, changed spatially and seasonally in the studied region. Fluorescence intensity of tryptophan-like components (C3) were found much higher at the populated downstream regions than in the undisturbed forested upstream regions. Seasonally, stronger fluorescence intensity of protein-like components (C3 and C4) was observed in the low-flow period (December) and in the medium-flow period (March) than in the high-flow period (May), particularly for the downstream reaches, reflecting the dominant impacts of wastewater pollution in the downstream regions. In contrast to the protein-like fluorescence, humic-like fluorescence components C1 and C2 exhibited distinctly higher intensity in the high-flow period with smaller spatial variation indicating strong flushing effect of increasing water discharge on terrestrial-sourced humic-like materials in the high-flow period. Pollution-affected dissolved inorganic ions, particularly Na+, Cl-, and NH4+-N, showed similar spatial and seasonal variations with protein-like fluorescence of DOM. The significant positive correlations between protein-like fluorescence of DOM and pollution-affected ions, particularly Na+, Cl-, and NH4+-N, suggested that there were similar pollution sources and transportation pathways of both inorganic and organic pollutants in the region. The combination of DOM fluorescence properties and inorganic ions could provide an important reference for the pollution source characterization and river basin management.
机译:人类活动对河流系统中有机和无机化学施加了重要的紊乱。在这项研究中,我们研究了溶解的有机碳(DOC),溶解的有机物(DOM)激发 - 发射基质荧光(EEM)的年度和下游变化,具有平行因子分析(PARAFAC),主要离子和溶解的无机氮(DIN)在中国黄河的山区支流中的物种。 DOC数量和质量都分别由DOC和DOM荧光所代表,在研究区域中空间和季节性变化。在填充的下游地区发现比色氨酸样组分(C3)的荧光强度比未受干扰的森林上游区域更高。在低流量期(12月)和中流期(3月)中,在低流量期(5月)中,观察到季节性蛋白质组分(C3和C4)的荧光强度更强的荧光荧光强度(C3和C4),特别是对于下游到达,反映了废水污染在下游地区的显性影响。与蛋白质样荧光相比,腐殖质样荧光组分C1和C2在高流量时段中表现出明显更高的强度,其空​​间变化较小,表明在高处增加了水排放的畜牧业材料上的水排放的强烈冲洗效果 - 流时间。污染影响的溶解的无机离子,特别是钠离子,氯离子,和NH4 + -N,显示出相似的空间和季节变化与蛋白质样DOM的荧光。之间的显著正相关蛋白样DOM的荧光和污染影响的离子,特别是钠离子,氯离子,和NH4 + -N,建议有类似污染源,该区域的无机和有机污染物的运输路径。 DOM荧光性质和无机离子的组合可以为污染源表征和河流管理层提供重要参考。

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