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Associations Between the Molecular and Optical Properties of Dissolved Organic Matter in the Florida Everglades, a Model Coastal Wetland System

机译:佛罗里达大沼泽地,模型的沿海湿地系统中的溶解有机物的分子和光学性质之间的关联。

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Optical properties are easy-to-measure proxies for dissolved organic matter (DOM) composition, source and reactivity. However, the molecular signature of DOM associated with such optical parameters remains poorly defined. The Florida coastal Everglades is a subtropical wetland with diverse vegetation (e.g., sawgrass prairies, mangrove forests, seagrass meadows) and DOM sources (e.g., terrestrial, microbial and marine). As such, the Everglades is an excellent model system from which to draw samples of diverse origin and composition to allow classically-defined optical properties to be linked to molecular properties of the DOM pool. We characterized a suite of seasonally- and spatially-collected DOM samples using optical measurements (EEM-PARAFAC, SUVA254, S275-295, S350-400, SR, FI, freshness index and HIX) and ultrahigh resolution mass spectrometry (FTICR-MS). Spearman’s rank correlations between FTICR-MS signal intensities of individual molecular formulae and optical properties determined which molecular formulae were associated with each PARAFAC component and optical index. The molecular families that tracked with the optical indices were generally in agreement with conventional biogeochemical interpretations. Therefore, although they represent only a small portion of the bulk DOM pool, absorbance and fluorescence measurements appear to be appropriate proxies for the aquatic cycling of both optically-active and associated optically-inactive DOM in coastal wetlands.
机译:光学性质是溶解有机物(DOM)组成,来源和反应性的易于测量的代表。但是,与此类光学参数相关的DOM分子标记仍然定义不清。佛罗里达沿海大沼泽地是亚热带湿地,植被多样(例如锯木草原,红树林,海草草甸)和DOM来源(例如陆地,微生物和海洋)。因此,Everglades是一个出色的模型系统,可从中提取不同来源和成分的样品,从而使经典定义的光学性质与DOM库的分子性质相关联。我们使用光学测量(EEM-PARAFAC,SUVA254,S275-295,S350-400,SR,FI,新鲜度指数和HIX)和超高分辨率质谱(FTICR-MS)对一组季节性和空间收集的DOM样品进行了表征。各个分子式的FTICR-MS信号强度与光学性质之间的Spearman等级相关性决定了哪些分子式与每个PARAFAC成分和光学指数相关。用光学指数追踪的分子家族通常与常规生物地球化学解释一致。因此,尽管它们仅占整个DOM池的一小部分,但吸光度和荧光测量似乎是沿海湿地中光学活性和相关的光学惰性DOM的水生循环的合适代表。

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