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Multivariate analysis for spatial distribution of dissolved organic matters in a large river-type dam reservoir

机译:大型河道水库水库中溶解性有机物空间分布的多元分析

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In contrast to extensive studies of dissolved organic matters (DOM) in natural lakes, the distributions and the characteristics of DOM in artificial dam reservoirs have not been well documented despite a growing demand for the construction worldwide. For this study, spatial variations in the concentrations and the characteristics of DOM in Lake Paldang, a large river-type dam reservoir, were investigated using the concentrations, the specific UV absorbance (SUVA), the synchronous fluorescence spectra and the molecular weight (MW_W) values. In addition, environmental factors determining the DOM spatial distribution were examined based on a principal component analysis (PCA). Variations in the DOM characteristics were greater than those for the concentrations (1.1-2.4 mg C/L). In contrast to typical lakes, vertical variations with a depth were much smaller than those observed among horizontal sampling sites within the reservoir. Irrespective of the depth, four individual sampling locations were easily distinguished by comparison of some selected DOM characteristics. The protein-like fluorescence (PLF), MW_W and SUVA values observed at the location near the dam exceeded the corresponding values for the sampling locations near major influent rivers, suggesting that, even for the river-type dam reservoir, the downstream DOM characteristics may be governed by in-lake DOM production processes such as the release from sediments and algal activities. The results of principal component analysis (PCA) revealed that approximately 61% of the variance in DOM distribution might be explained by allochthonous/autochthonous carbon sources and predominant presence of either total nitrogen or total phosphorous over the other.
机译:与对天然湖泊中溶解性有机物(DOM)的广泛研究相反,尽管全球对建筑的需求不断增加,但尚未充分记录人造水坝水库中DOM的分布和特征。为了进行这项研究,使用浓度,比紫外线吸收率(SUVA),同步荧光光谱和分子量(MW_W)来研究大型河流型水库帕当湖的浓度和DOM特征的空间变化。 )值。此外,基于主成分分析(PCA)检查了确定DOM空间分布的环境因素。 DOM特性的变化大于浓度(1.1-2.4 mg C / L)的变化。与典型的湖泊相比,深度的垂直变化远小于水库内水平采样点之间的变化。不管深度如何,通过比较一些选定的D​​OM特性,很容易区分四个单独的采样位置。在大坝附近位置观察到的类蛋白荧光(PLF),MW_W和SUVA值超过了主要进水河道附近采样点的相应值,这表明,即使对于河流型大坝水库,其下游DOM特征也可能受湖中DOM生产过程的控制,例如沉积物的释放和藻类活动。主成分分析(PCA)的结果表明,DOM分布中大约61%的变化可能是由异源/自生碳源以及总氮或总磷相对于其他氮源的主要存在所解释的。

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