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荧光 EEM-PARAFAC 组分在树脂分级过程中的保守行为及其对溶解有机物特征描述的适用性。

Conservative behavior of fluorescence EEM-PARAFAC components in resin fractionation processes and its applicability for characterizing dissolved organic matter.

机构信息

Department of Environment and Energy, Sejong University, Seoul, 143-747, South Korea.

Department of Environment and Energy, Sejong University, Seoul, 143-747, South Korea.

出版信息

Water Res. 2015 Oct 15;83:217-26. doi: 10.1016/j.watres.2015.06.044. Epub 2015 Jun 30.

Abstract

In this study, the applicability of the fluorescence excitation-emission matrix combined with parallel factor analysis (EEM-PARAFAC) was verified for resin fractionation processes, in which bulk dissolved organic matter (DOM) is separated into several fractions presumably having similar chemical structures. Here, four PARAFAC components, including three humic-like and one protein-like components, were identified from the EEMs of all DOM samples through fractionation procedures and the subtracted EEMs between before and after resins for different DOM sources (effluent, limnic, and riverine). The PARAFAC components exhibited conservative behavior upon resin fractionation, as indicated by the minimal difference in the PARAFAC components retained on resins calculated based on the direct subtraction of the components and the subtracted EEMs. The conservative behavior of PARAFAC components was more obvious compared with other fluorescent DOM (FDOM) indicators derived from peak-picking and fluorescence regional integration (FRI) methods. Humic-like components were more insensitive to resin fractionation than protein-like component. No consistency was found in the relative abundances of the PARAFAC components for the same resin fractions with different DOM sources, suggesting that the FDOM composition is more affected by DOM sources rather than by the resin fractions. Our study demonstrated that EEM-PARAFAC coupled with resin fractionation could provide detailed information on DOM by quantitatively comparing the individual PARAFAC components within different resin fractions.

摘要

在这项研究中,荧光激发-发射矩阵与平行因子分析(EEM-PARAFAC)的适用性得到了验证,可用于树脂分级过程,将大量溶解的有机物(DOM)分离成几个具有相似化学结构的部分。在这里,通过分级程序和不同 DOM 来源(废水、内陆和河流)的树脂前后减去的 EEM,从所有 DOM 样品的 EEM 中鉴定出四个 PARAFAC 成分,包括三个腐殖质样成分和一个蛋白质样成分。PARAFAC 成分在树脂分级过程中表现出保守行为,这表明基于直接减去成分和减去的 EEM 计算的树脂保留的 PARAFAC 成分之间的差异最小。与基于峰提取和荧光区域积分(FRI)方法的其他荧光 DOM(FDOM)指标相比,PARAFAC 成分的保守行为更为明显。与蛋白质样成分相比,腐殖质样成分对树脂分级的不敏感程度较低。对于来自不同 DOM 来源的相同树脂级分,PARAFAC 成分的相对丰度没有一致性,这表明 FDOM 组成更多地受到 DOM 来源的影响,而不是树脂级分的影响。我们的研究表明,EEM-PARAFAC 与树脂分级相结合,可以通过定量比较不同树脂级分中的单个 PARAFAC 成分,为 DOM 提供详细信息。

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