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通过荧光激发-发射矩阵(EEM)以及使用紫外光(UVA)、溶解性有机碳(DOC)和荧光检测的高效液相色谱-尺寸排阻色谱(HPLC-SEC)对不同分子量(MW)的溶解性有机物(DOM)进行表征。

Characterization of DOM as a function of MW by fluorescence EEM and HPLC-SEC using UVA, DOC, and fluorescence detection.

作者信息

Her Namguk, Amy Gary, McKnight Diane, Sohn Jinsik, Yoon Yeomin

机构信息

Civil and Environmental Engineering, University of Colorado, Boulder, CO 80309, USA.

出版信息

Water Res. 2003 Oct;37(17):4295-303. doi: 10.1016/S0043-1354(03)00317-8.

Abstract

To investigate the composition of dissolved organic matter (DOM) as a function of apparent molecular weight (MW) by rapid analytical methods, high performance liquid chromatography (HPLC)-size exclusion chromatography (SEC) was conducted with sequential on-line detectors consisting of UV, fluorescence, and quantitative DOC measurement. Fluorescence excitation-emission matrix (EEM) spectrophotometry was used to select wavelengths for the HPSEC on-line fluorescence system. The chosen peak maxima locations of excitation-emission wavelengths were 278-353 nm for protein-like substances and 337-423 nm for fulvic-like substances based on an analysis of EEM spectra for various samples and reference materials. This system provides quantitative and qualitative information on the specific MW components of DOM, including proportion of DOC (by DOC measurement), aromaticity (by comparison of UV and DOC measurements), and chemical properties (by fluorescence measurement). It further allows determination of organic matter characteristics (e.g., fulvic-like, protein-like, and polysaccharide-like substances) as a function of MW. Three types of samples (Irvine Ranch ground water (IRWD-GW), Barr Lake surface water (BL-SW), and Hawaii wastewater secondary effluent) were analyzed by the HPSEC-UVA-fluorescence-DOC system. These results were compared with fluorescence EEM for samples fractionated by HPLC-SEC. The DOM fraction in the high apparent MW range (over 10,000g/mol) consisted of polysaccharide-like substances for IRWD-GW and a mixture of polysaccharide-like/protein-like substances for BL-SW and wastewater secondary effluent. Minimal amounts of fulvic-like substances were found in the wastewater secondary effluent sample. The DOM fractions in a medium apparent MW range (5000-1000 g/M) showed higher aromaticity (fulvic in character) than any other fractions for all samples. For the DOM fraction in the low apparent MW range (below 680 g/M), additional aliphatic organic matter was found in IRWD-GW, while BL-SW contained protein-like processes. DOM plays an important role in drinking water and wastewater treatment processes. An enhanced HPSEC technique with multiple on-line detectors enables a better understanding of quantitative and qualitative DOM properties and can help to design and optimize water/wastewater treatment facilities.

摘要

为了通过快速分析方法研究溶解有机物(DOM)的组成与表观分子量(MW)的关系,采用了配备紫外、荧光和定量溶解有机碳(DOC)测量的串联在线检测器的高效液相色谱(HPLC)-尺寸排阻色谱(SEC)法。利用荧光激发-发射矩阵(EEM)分光光度法为HPSEC在线荧光系统选择波长。基于对各种样品和参考物质的EEM光谱分析,对于类蛋白质物质,选定的激发-发射波长的峰值最大值位置为278 - 353nm,对于类富里酸物质为337 - 423nm。该系统提供了关于DOM特定MW组分的定量和定性信息,包括DOC比例(通过DOC测量)、芳香性(通过紫外和DOC测量的比较)以及化学性质(通过荧光测量)。它还能确定作为MW函数的有机物特性(如类富里酸、类蛋白质和类多糖物质)。通过HPSEC - UVA - 荧光 - DOC系统分析了三种类型的样品(欧文牧场地下水(IRWD - GW)、巴尔湖地表水(BL - SW)和夏威夷废水二级出水)。将这些结果与通过HPLC - SEC分级的样品的荧光EEM进行了比较。高表观MW范围(超过10,000g/mol)的DOM组分,对于IRWD - GW由类多糖物质组成,对于BL - SW和废水二级出水则由类多糖/类蛋白质物质的混合物组成。在废水二级出水样品中发现的类富里酸物质含量极少。所有样品中,中等表观MW范围(5000 - 1000g/M)的DOM组分显示出比其他任何组分更高的芳香性(富里酸性质)。对于低表观MW范围(低于680g/M)的DOM组分,在IRWD - GW中发现了额外的脂肪族有机物,而BL - SW含有类蛋白质物质。DOM在饮用水和废水处理过程中起着重要作用。一种具有多个在线检测器的增强型HPSEC技术能够更好地理解DOM的定量和定性特性,并有助于设计和优化水/废水处理设施。

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