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Composition analysis of fractions of extracellular polymeric substances from an activated sludge culture and identification of dominant forces affecting microbial aggregation

机译:来自活性污泥培养的细胞外聚合物物质级分的成分分析及影响微生物聚集的主力

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摘要

Extracellular polymeric substances (EPS) appear to play a critical role in the formation of bioaggregates, such as sludge flocs, in activated sludge processes. Here, we systematically investigated the composition and chemical structure of various EPS fractions excreted from an activated sludge culture using multi-analysis techniques to examine the ability of the sludge to aggregate. Chemical analysis was used with a three-dimensional excitation emission matrix and Fourier transform infrared spectroscopy, applying inter-particle forces theory. The combined findings revealed that hydrophobic groups, especially protein-related N-H, were present in a greater proportion in tightly bound EPS (TB-EPS). This result, which explained the specificity of TB-EPS in the chemical structure, was consistent with data indicating that TB-EPS contained a large amount of protein-like substances (86.7?mg/g of mixed liquor volatile suspended solids, 39.7% of the total EPS). Subsequently, a novel experimental procedure was developed to pinpoint key inter-particle forces in sludge aggregation. The result revealed that hydrogen bonds are the predominant triggers that promote sludge aggregation. This comprehensive analysis indicated that hydrophobic proteins in TB-EPS are responsible for the critical role played by hydrogen bonds in sludge formation. Our findings highlight the need to elucidate the mechanisms of TB-EPS-mediated flocculation in future efforts.
机译:细胞外聚合物物质(EPS)似乎在活性污泥过程中形成生物聚碳的形成(例如污泥絮凝物)发挥关键作用。在这里,我们通过多分析技术系统地研究了从活性污泥培养中排出的各种EPS级分的组成和化学结构,以检查污泥到骨料的能力。化学分析与三维激发发射矩阵和傅里叶变换红外光谱一起使用,施加粒子力理论。结合的结果表明,疏水基团,尤其是蛋白质相关的N-H,以紧密结合的EPS(TB-EPS)的比例较大。该结果,其解释了化学结构中TB-EPS的特异性,与表明TB-EP含有大量蛋白质物质的数据一致(86.7?Mg / g混合液挥发悬浮固体,39.7%总EPS)。随后,开发了一种新的实验程序,以确定污泥聚集中的关键颗粒颗粒力。结果表明,氢键是促进污泥聚集的主要触发剂。该综合分析表明,TB-EPS中的疏水蛋白负责污泥地层中氢键发挥的关键作用。我们的研究结果强调了阐明在未来努力中阐明TB-EPS介导的絮凝的机制。

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