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利用紫外吸收光谱、荧光光谱和 PARAFAC 技术表征三峡水库新淹没流域中天然溶解有机质的特征。

Characterizing natural dissolved organic matter in a freshly submerged catchment (Three Gorges Dam, China) using UV absorption, fluorescence spectroscopy and PARAFAC.

机构信息

Chinese Research Academy of Environmental Sciences, Beijing, China.

出版信息

Water Sci Technol. 2012;65(5):962-9. doi: 10.2166/wst.2012.939.

Abstract

This study applied parallel factor analysis (PARAFAC) to fluorescence excitation-emission matrices (EEMs) of natural water samples in a freshly submerged catchment in the upper reach of Three Gorges Dam (China). Two fluorescent natural dissolved organic matter (NDOM) components (humic/fulvic-like) were uncovered and were positively correlated with selected water quality parameters, i.e. dissolved oxygen concentration, dissolved organic carbon concentration, dissolved Kjeldahl nitrogen concentration and total (dissolved plus particulate) phosphorus concentration, respectively. To other water quality parameters (i.e. total nitrogen, particulate nitrogen, particulate phosphorus, dissolved phosphorus, dissolved nitrate, pH, and chemical oxygen demand), either the two components did not show any correlation or only one component showed correlation. In particular, particulate N correlated significantly to the fulvic acid, but not to the humic acid. Meanwhile, two conventional spectroscopic indices i.e. specific UV absorbance at 254 nm (SUVA254) and fluorescence index (FI) indicated that the whole NDOM in the waters were low in aromaticity and predominantly derived from aquatic microbial processes. Given together, it concludes that N and P did not function equally in the NDOM production, and the two components were not derived from the same microbial processes. The EEMs-PARAFAC has proven to be of potential as an effective tool in investigation of the interlink between NDOM and nutrients which may be utilized as an indicator of water environment.

摘要

本研究应用平行因子分析(PARAFAC)对三峡大坝上游新淹没流域天然水样的荧光激发-发射矩阵(EEM)进行了分析。发现了两种荧光天然溶解有机物质(NDOM)成分(腐殖酸/富里酸样),它们与选定的水质参数呈正相关,分别为溶解氧浓度、溶解有机碳浓度、溶解凯氏氮浓度和总(溶解态加颗粒态)磷浓度。而对于其他水质参数(即总氮、颗粒态氮、颗粒态磷、溶解态磷、溶解态硝酸盐、pH 值和化学需氧量),两种成分要么没有相关性,要么只有一种成分显示出相关性。特别是,颗粒态氮与富里酸显著相关,而与腐殖酸无关。同时,两个常规光谱指数即 254nm 处的特定紫外吸光度(SUVA254)和荧光指数(FI)表明,水中的整个 NDOM 芳香度较低,主要来源于水生微生物过程。综上所述,氮和磷在 NDOM 产生中并没有同等作用,而且这两种成分不是来自相同的微生物过程。EEMs-PARAFAC 已被证明是一种有效的工具,可用于研究 NDOM 和营养物质之间的相互关系,可作为水环境的指标。

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