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首页> 外文期刊>Frontiers in Marine Science >Variation in Riverine Inputs Affect Dissolved Organic Matter Characteristics throughout the Estuarine Gradient
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Variation in Riverine Inputs Affect Dissolved Organic Matter Characteristics throughout the Estuarine Gradient

机译:河口输入的变化影响整个河口梯度中的溶解有机物特征

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Terrestrial dissolved organic matter (DOM) undergoes significant changes during the estuarine transport from river mouths to the open sea. These include transformations and degradation by biological and chemical processes, but also the production of fresh organic matter. Since many of these processes occur simultaneously, properties of the DOM pool represent the net changes during the passage along the hydrological path. We examined changes in multiple DOM characteristics across three Finnish estuarine gradients during spring, summer and autumn: Dissolved organic carbon (DOC) concentration, coloured DOM absorbance and fluorescence, stable carbon isotope signal of DOC and molecular size distribution. Changes in these DOM characteristics with salinity were analysed in relation to residence time (i.e. freshwater transit time), since increased residence time is likely to enhance DOM degradation while stimulating autochthonous DOM production at the same time. Our results show that the investigated DOM characteristics are highly correlated, indicating common physico-chemical transformations along the salinity continuum. Residence time did not explain variations in the DOM characteristics any better than salinity. Due to large variations in DOM characteristics at the river end-member, conservative mixing models do not seem to be able to accurately describe the occurrence and extent of deviations in DOM properties in the estuaries we investigated.
机译:从河口到公海的河口运输过程中,陆地溶解有机物(DOM)发生了显着变化。这些包括通过生物和化学过程的转化和降解,还包括新鲜有机物质的生产。由于许多这些过程同时发生,因此DOM池的属性表示沿水文路径通过期间的净变化。我们检查了春季,夏季和秋季三个芬兰河口梯度中多个DOM特性的变化:溶解的有机碳(DOC)浓度,有色DOM吸收和荧光,DOC的稳定碳同位素信号和分子大小分布。由于停留时间的增加可能会增加DOM降解同时刺激土生DOM的产生,因此分析了这些DOM特性随盐度的变化与停留时间(即淡水渡越时间)的关系。我们的结果表明,所研究的DOM特征高度相关,表明沿盐度连续体存在常见的理化转变。停留时间没有比盐度更好地解释DOM特性的变化。由于河流末段DOM特性的巨大变化,保守的混合模型似乎无法准确描述我们调查的河口DOM特性的发生和程度。

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