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首页> 外文期刊>RSC Advances >Fluorescence properties of dissolved organic matter as a function of hydrophobicity and molecular weight: case studies from two membrane bioreactors and an oxidation ditch
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Fluorescence properties of dissolved organic matter as a function of hydrophobicity and molecular weight: case studies from two membrane bioreactors and an oxidation ditch

机译:作为疏水性和分子量的函数的溶解有机物的荧光性质:来自两个膜生物反应器和氧化沟的情况

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摘要

Dissolved organic matter (DOM) plays a substantial role in wastewater treatment systems. Fluorescence is an important property of DOM and its use is promising for DOM characterization, but has rarely been extended to probing the basic physicochemical properties such as hydrophobicity and molecular weight. This study explores the possible linkages between the fluorescence properties and hydrophobicity/molecular weight of DOM, through case studies from three wastewater treatment plants (two membrane bioreactors and one oxidation ditch). The fluorescence properties of different hydrophobic/hydrophilic and molecular-weight fractions of DOM were obtained using excitation–emission matrix (EEM) spectroscopy and size-exclusion chromatography with fluorescence detection. The EEM spectra were interpreted using techniques of fluorescence regional integration, parallel factor analysis, fluorescence spectroscopic indices, and a novel energetic mapping based on fluorophore energy levels. It was found that for all the three plants, the hydrophobic fractions of DOM had a higher fluorescence intensity per UV absorbance (indicating a higher quantum yield) as well as a larger Stokes shifts than the hydrophilic fraction. The lower-molecular-weight fractions generally exhibited a higher fluorescence intensity per total organic carbon (indicating a higher fluorophore density), with the fluorescence distribution at slightly smaller excitation and emission wavelengths. These phenomena were explained via analysis of the fluorophore energy state during the excitation/emission process. The scale of the π-conjugated system in DOM molecules may serve as an intermediate factor in the correlations between the hydrophobicity/molecular weight and the fluorescence properties. These correlations may assist in developing fluorescent probes for the DOM characteristics during the process monitoring of wastewater treatment plants.
机译:溶解有机物(DOM)在废水处理系统中起着重要作用。荧光是DOM的重要特性,其使用是对DOM表征的承诺,但很少延伸到探测疏水性和分子量等基本物理化学性质。本研究探讨了DOM的荧光性质和疏水性/分子量之间的可能联系,通过三废水处理厂(两个膜生物反应器和一个氧化沟)的案例研究。使用激发 - 发射基质(EEM)光谱和尺寸排除色谱法,获得DOM的不同疏水/亲水和分子量分数的荧光性质。使用荧光区域一体化,平行因子分析,荧光光谱指标和基于荧光团能级的新型能量映射来解释EEM光谱。发现对于所有三种植物,DOM的疏水级分具有较高的每UV吸光度荧光强度(表明较高量子产率)以及比亲水级分的较大的斯托克斯偏移。较低分子量级分通常表现出每种总机碳(表示荧光团密度较高)的较高荧光强度,荧光分布在略微较小的激发和发射波长下。通过分析激发/排放过程中的荧光团能状态来解释这些现象。 DOM分子中的π-共轭系统的比例可以用作疏水性/分子量和荧光性质之间的相关性的中间因素。这些相关性可以有助于在废水处理厂的过程监测过程中开发用于DOM特性的荧光探针。

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