首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Combining asymmetrical flow field-flow fractionation with on- and off-line fluorescence detection to examine biodegradation of riverine dissolved and particulate organic matter
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Combining asymmetrical flow field-flow fractionation with on- and off-line fluorescence detection to examine biodegradation of riverine dissolved and particulate organic matter

机译:结合非对称流场流分馏和在线和离线荧光检测来研究河水溶解性和颗粒有机物的生物降解

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This study demonstrated that asymmetrical flow field-flow fractionation (AF4) coupled with on-line UV and fluorescence detection (FLD) and off-line excitation-emission matrix (EEM) fluorescence spectroscopy can be employed to analyze the influence of microbial metabolic activity on the consumption and production of freshwater organic matter. With the AF4 system, organic matter is on-line enriched during a focusing/relaxation period, which is an essential process prior to separation. Size-fractionated chromophoric and fluorophoric organic materials were simultaneously monitored during the 30-min AF4 separation process. Two fractions of different sizes (dissolved organic matter (DOM) and particulate organic matter (POM)) of freshwater samples from three locations (up-, mid-, and downstream) along the Han River basin of Korea were incubated with the same inoculum for 14 days to analyze fraction-specific alterations in optical properties using AF4-UV-FLD. A comparison of AF4 fractograms obtained from pre- and post-incubation samples revealed that POM-derived DOM were more susceptible to microbial metabolic activity than was DOM. Preferential microbial consumption of protein-like DOM components concurred with enhanced peaks of chromophoric and humic-like fluorescent components, presumably formed as by-products of microbial processing. AF4-UV-FLD combined with off-line identification of microbially processed components using EEM fluorescence spectroscopy provides a powerful tool to study the relationship between microbial activity and composition as well as biodegradability of DOM and POM-derived DOM from different origins, especially for the analysis of chromophoric and fluorophoric organic matter that are consumed and produced by microbial metabolic activity. The proposed AF4 system can be applied to organic matter in freshwater samples having low concentration range (0.3-2.5 ppm of total organic carbon) without a pre-concentration procedure. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究表明不对称流场流分馏(AF4)结合在线紫外线和荧光检测(FLD)以及离线激发发射矩阵(EEM)荧光光谱法可用于分析微生物代谢活性对淡水有机物的消费和生产。使用AF4系统,可以在聚焦/松弛期间在线富集有机物,这是分离之前的基本过程。在30分钟的AF4分离过程中,同时监测了大小分级的发色和荧光有机材料。将来自韩国汉江流域三个位置(上,中和下游)的淡水样品的两个不同大小的部分(溶解有机物(DOM)和颗粒有机物(POM))与相同的接种物一起孵育,使用AF4-UV-FLD分析光学特性的馏分特异性变化需要14天。从孵育前和孵育后样品获得的AF4分数图的比较显示,与DOM相比,POM衍生的DOM对微生物代谢活性更敏感。优先消耗蛋白质样DOM成分的微生物伴随着发色和腐殖质荧光成分的峰值的增加,这可能是微生物加工的副产物。 AF4-UV-FLD结合使用EEM荧光光谱仪离线鉴定微生物加工的成分提供了一个强大的工具,可以研究微生物活性与成分之间的关​​系以及不同来源的DOM和POM衍生DOM的可生物降解性,特别是对于微生物代谢活性消耗和产生的发色和荧光团有机物的分析。所提出的AF4系统无需预先浓缩即可应用于低浓度范围(总有机碳的0.3-2.5 ppm)的淡水样品中的有机物。 (C)2015 Elsevier B.V.保留所有权利。

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