State Key Laboratory of Pollution Control and Resources Reuse, School of the Environment, Xianlin Campus, Nanjing University, Nanjing 210023, China.
Water Res. 2013 Mar 1;47(3):1246-56. doi: 10.1016/j.watres.2012.11.040. Epub 2012 Nov 30.
The need to track and characterize dissolved organic matter (DOM) has made fluorescence excitation-emission matrix (EEM) spectroscopy extensively used. In this work, reverse phase high-performance liquid chromatography (RP-HPLC) and high-performance size exclusion chromatography (HPSEC) with fluorescence detector (FLD) were used for EEM interpretation and DOM analysis. Given that fluorescence detectors can scan with multi-excitation or multi-emission mode, HPLC-FLD with multi-excitation scan directly verified the prevalence of multi-peak fluorophores in EEM, which provides a corrective insight for the current fluorescence regional integration (FRI) methods; whereas HPLC-FLD with multi-emission scan provided more informative fluorescence fingerprints for identification of DOM species, which is a chromatographic surrogate for determining the proper number of PARAFAC components. Besides providing a deep insight for the current EEM interpretation, the HPLC/HPSEC-FLD results also directly related physiochemical properties to DOM species, including polarity and molecular weight (MW) distribution, which is helpful for further characterization their behavior in water and wastewater treatment process. A chromatography technique with multi-excitation and multi-emission fluorescence scan can be an informative method for EEM interpretation and DOM identification and characterization.
需要跟踪和描述溶解有机物 (DOM),这使得荧光激发-发射矩阵 (EEM) 光谱技术得到了广泛应用。在这项工作中,反相高效液相色谱 (RP-HPLC) 和带有荧光检测器 (FLD) 的高效体积排阻色谱 (HPSEC) 被用于 EEM 解释和 DOM 分析。鉴于荧光检测器可以采用多激发或多发射模式进行扫描,因此多激发扫描的 HPLC-FLD 直接验证了 EEM 中多峰荧光团的普遍性,为当前的荧光区域积分 (FRI) 方法提供了纠正的见解;而多发射扫描的 HPLC-FLD 则为 DOM 物种的鉴定提供了更具信息量的荧光指纹图谱,这是确定 PARAFAC 组分适当数量的色谱替代方法。除了为当前的 EEM 解释提供深入的见解外,HPLC/HPSEC-FLD 的结果还将理化性质与 DOM 物种直接相关联,包括极性和分子量 (MW) 分布,这有助于进一步描述它们在水处理和废水处理过程中的行为。具有多激发和多发射荧光扫描的色谱技术可以成为 EEM 解释和 DOM 鉴定和表征的一种信息丰富的方法。