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Characterisation of colloidal and particulate organic carbon in freshwaters by thermal fluorescence quenching

机译:热荧光猝灭法表征淡水中胶体和颗粒有机碳

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摘要

Three-dimensional excitation-emission matrix (EEM) fluorescence with thermal quenching has been applied to raw and size-fractionated freshwaters. To size-fractionate organic matter, sequential filtration through mixed-ester-cellulose membrane filters with nominal pore size of 1.2, 0.1 and 0.025 μm were used. Humic-like fluorophores (peaks A and C) have been found to dominate EEMs of raw and all size fractions of studied waters. Peak A fluorescence intensity has been found to be more thermally sensitive than peak C fluorescence intensity. Humic-like fluorescence intensity was generally size independent, which indicated that it was present mainly in the smallest size fraction (< 0.025 μm). This was confirmed by total organic carbon (TOC) measurements. Peak T (tryptophan-like) fluorescence, that is widely associated with biological activity, exhibited a greater thermal sensitivity of fluorescence intensity in the larger size fractions, demonstrating the presence of more than one fluorophore in different size fractions at this location in optical space. Thermal fluorescence quenching provides insights into organic matter variability and associated colloidal characteristics.
机译:具有热淬灭作用的三维激发-发射矩阵(EEM)荧光已应用于原水和按尺寸分级的淡水。为了分级分离有机物,使用了通过标称孔径分别为1.2、0.1和0.025μm的混合酯-纤维素膜过滤器的顺序过滤。已发现像腐殖质的荧光团(峰A和峰C)在研究水的原始水和所有大小馏分的EEM中占主导地位。已经发现峰A荧光强度比峰C荧光强度更热敏感。像腐殖质一样的荧光强度通常与尺寸无关,这表明它主要以最小的尺寸分数(<0.025μm)存在。总有机碳(TOC)测量结果证实了这一点。与生物活性广泛相关的峰T(色氨酸样)荧光在较大尺寸的部分中表现出较高的荧光强度热敏性,表明在光学空间中此位置存在多个不同尺寸的荧光团。热荧光猝灭提供了有关有机物变异性和相关胶体特性的见解。

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