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首页> 外文期刊>Journal of great lakes research >Distribution and characteristics of ultraviolet absorption and fluorescenceof dissolved organic matter in a large lake (Lake Biwa, Japan)
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Distribution and characteristics of ultraviolet absorption and fluorescenceof dissolved organic matter in a large lake (Lake Biwa, Japan)

机译:大型湖泊(日本琵琶湖)中溶解性有机物的紫外线吸收和荧光的分布和特征

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摘要

To measure chromophoric properties of DOM in aquatic environments is relatively simple, but similarities in properties among extensive DOM samples make it difficult to identify characteristics that indicate different sources of DOM. We conducted a field survey of DOM ultraviolet (UV) absorption and fluorescence in a large lake (Lake Biwa, Japan). We used an integrated analysis of their spectra, including their derivatives and apparent quantum yield. From this analysis we were able to identify the different DOM sources. Variations of dissolved organic carbon concentrations in the epilimnion were correlated with the first derivative of UV absorption at 285 nm and a protein-like peak in the fluorescence excitation-emission matrix (EEM). Both fingerprints were derived from living organisms. Although the variations of UV absorption over 300 nm and a humic-like peak in EEM in the lake water were affected by multiple sources and reactions, several complementary methods, including field studies and laboratory experiments, led to the conclusion that chromophoric DOM in the hypolimnion was intensively affected by microbial alteration. Our results indicate that an integrated analysis of UV absorption and fluorescence can improve the utility of DOM characterization in lake environments. (C) 2016 International Association for Great Lakes Research. Published by Elsevier B.V. All rights reserved.
机译:在水生环境中测量DOM的发色特性是相对简单的,但是大量DOM样品之间的相似性使得难以识别表明不同DOM来源的特征。我们对一个大湖(日本琵琶湖)中的DOM紫外线(UV)吸收和荧光进行了现场调查。我们对其光谱进行了综合分析,包括其导数和表观量子产率。通过此分析,我们能够确定不同的DOM源。 Epilimnion中溶解的有机碳浓度的变化与285 nm处的UV吸收的一阶导数和荧光激发-发射矩阵(EEM)中的蛋白样峰相关。两种指纹均来自活生物体。尽管湖水中300 nm处紫外线吸收的变化和EEM中的腐殖质样峰受多种来源和反应的影响,但包括田间研究和实验室实验在内的几种互补方法得出的结论是,低层植物中的发色DOM受到微生物变化的强烈影响。我们的结果表明,对紫外线吸收和荧光的综合分析可以改善DOM表征在湖泊环境中的效用。 (C)2016年国际大湖研究协会。由Elsevier B.V.发布。保留所有权利。

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