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采用流动场流分级分离和 EEM-PARAFAC 分析方法表征单个水样中胶体 DOM 组成随分子量的变化。

Variations in Colloidal DOM Composition with Molecular Weight within Individual Water Samples as Characterized by Flow Field-Flow Fractionation and EEM-PARAFAC Analysis.

机构信息

School of Freshwater Sciences , University of Wisconsin-Milwaukee , 600 E Greenfield Ave. , Milwaukee , Wisconsin 53204 , United States.

出版信息

Environ Sci Technol. 2020 Feb 4;54(3):1657-1667. doi: 10.1021/acs.est.9b07123. Epub 2020 Jan 14.

Abstract

Fluorescence excitation emission matrices (EEM) and parallel factor (PARAFAC) analysis have been widely used in the characterization of dissolved organic matter (DOM) in the aquatic continuum. However, large sample sets are typically needed for establishing a meaningful EEM-PARAFAC model. Applications of the EEM-PARAFAC technique to individual samples require new approaches. Here, flow field-flow fractionation (FlFFF) combined with offline EEM measurements and PARAFAC analysis was used to elucidate the dynamic changes in DOM composition/optical properties with molecular weight within individual samples. FlFFF-derived size spectra of ultrafiltration-isolated colloidal DOM show that peak-C related fluorophores (/= 350/450 nm) are present mostly in the 1-3 kDa size range, while peak-T associated fluorophores (/ = 275/340 nm) have a bimodal distribution with peaks in both the 1-3 kDa and the >100 kDa size fractions. The integrated EEM spectra from FlFFF size-fractionated subsamples closely resembled the bulk EEM spectra, attesting to the convincing comparability between bulk and FlFFF size-fractionated EEMs. The PARAFAC-derived DOM components are distinctive among individual samples with the predominant components being humic-like in river water, but protein-like in a highly eutrophic lagoon sample. This compelling new approach combining FlFFF and EEM-PARAFAC can be used to decipher the dynamic changes in size spectra and composition of individual DOM samples from sources to sinks or across the redox/hydrological/trophic interfaces.

摘要

荧光激发发射矩阵(EEM)和并行因子(PARAFAC)分析已广泛应用于水连续体中溶解有机物(DOM)的特征描述。然而,建立有意义的 EEM-PARAFAC 模型通常需要大量样本。EEM-PARAFAC 技术在单个样本中的应用需要新的方法。在这里,流动场流分级(FlFFF)与离线 EEM 测量和 PARAFAC 分析相结合,用于阐明单个样本中 DOM 组成/光学性质随分子量的动态变化。超滤分离胶体 DOM 的 FlFFF 衍生的大小谱表明,峰 C 相关荧光团(/ = 350/450nm)主要存在于 1-3 kDa 大小范围内,而峰 T 相关荧光团(/ = 275/340nm)具有双峰分布,在 1-3 kDa 和>100 kDa 大小分数中均有峰。FlFFF 大小分级子样本的积分 EEM 光谱与总 EEM 光谱非常相似,证明了总 EEM 和 FlFFF 大小分级 EEM 之间具有令人信服的可比性。PARAFAC 衍生的 DOM 成分在单个样本之间具有独特性,主要成分在河水中类似于腐殖质,但在高度富营养化的泻湖中类似于蛋白质。这种将 FlFFF 和 EEM-PARAFAC 相结合的新方法可以用于解析从源到汇或穿过氧化还原/水文/营养界面的单个 DOM 样本的大小谱和组成的动态变化。

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