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Photo-flocculation of microbial mat extracellular polymeric substances and their transformation into transparent exopolymer particles: Chemical and spectroscopic evidences

机译:微生物垫细胞外聚合物的光絮凝及其转化为透明的外聚合物颗粒:化学和光谱学证据

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摘要

Upon exposure to sunlight extracellular polymeric substances (EPS) were partially transformed into transparent exopolymer particles (TEP) and unstable flocs of different sizes without the addition of any precursors. Parallel factor (PARAFAC) modelling of the sample fluorescence spectra identified humic-like and protein-like or tyrosine-like components in both untreated and irradiated EPS samples. After 58 hours of solar irradiation, humic-like substances were entirely decomposed, while the regenerated protein-like substance from EPS was the key component in the irradiated samples. Degradation and reformation of EPS occurred which was confirmed by the results of size exclusion chromatography, dissolved organic carbon, total protein and total polysaccharide analyses. Irradiated EPS was composed of –COOH or C = O (amide I band) and –NH and –CN (amide II band), while Fourier transform infrared spectroscopy (FTIR) of TEP revealed more acidic –COOH and –C–O groups, indicating typical acidic protein-like TEP. The regenerated protein-like substances could form complexes with free metals originating from degraded EPS in irradiated samples, which could be responsible for the formation of TEP/floc in the aqueous media. These results suggest that TEP/floc formation from EPS could occur by a complexation mechanism between dissolved organic matter and metals, thereby causing ionic charge neutralisation upon sunlight exposure.
机译:暴露于阳光下,细胞外聚合物(EPS)被部分转化为透明的外聚合物颗粒(TEP)和不同大小的不稳定絮状物,而无需添加任何前体。样品荧光光谱的平行因子(PARAFAC)建模确定了未处理和辐照EPS样品中的腐殖质样和蛋白质样或酪氨酸样成分。太阳辐照58小时后,腐殖质完全分解,而EPS再生的蛋白质样物质是辐照样品中的关键成分。通过尺寸排阻色谱,溶解的有机碳,总蛋白和总多糖分析的结果证实了EPS的降解和重整。辐照的EPS由–COOH或C = O(酰胺I谱带)和–NH和–CN(酰胺II谱带)组成,而TEP的傅立叶变换红外光谱(FTIR)显示出更酸性的–COOH和–C–O基团,表明典型的酸性蛋白样TEP。再生的蛋白样物质可能与游离金属形成复合物,这些游离金属源自被辐照样品中降解的EPS,这可能是在水性介质中形成TEP /絮凝物的原因。这些结果表明,由EPS形成的TEP /絮凝物可能是由溶解的有机物和金属之间的络合机理引起的,从而在阳光照射下引起离子电荷中和。

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