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首页> 外文期刊>Water Research >Structural, physicochemical and microbial properties of flocs and biofilms in integrated fixed-film activated sludge (IFFAS) systems
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Structural, physicochemical and microbial properties of flocs and biofilms in integrated fixed-film activated sludge (IFFAS) systems

机译:集成固定膜活性污泥(IFFAS)系统中絮凝物和生物膜的结构,物理化学和微生物特性

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摘要

Integrated fixed-film activated sludge systems (IFFAS) may achieve year-round nitrification or gain additional treatment capacity due to the presence of both flocs and biofilms, and the potential for multiple redox states and long solids retention time. Flocs and biofilms are distinctive microbial structures and characterization of the physicochemical and structural properties of these may provide insight into their respective roles in wastewater treatment and contaminant removal in IFFAS. Floes and biofilms were examined from five different pilot media systems being evaluated for potential full scale implementation at a large municipal wastewater treatment plant. Floes and biofilms within the same system possessed different surface characteristics; floes were found to have a higher negative surface charge (-0.35 to -0.65 meq./g VSS) and are more hydrophobic (60%-75%) than biofilms (-0.05 to -0.07 meq/g VSS; 19-34%). The EPS content of flocs was significantly higher (range of 2.1-4.5 f6lds) than that of biofilms. In floc-derived extracellular polymeric substances (EPS), protein (PN) was clearly dominant; whereas in biofilm-derived EPS, PN and polysaccharide (PS) were present in approximately equal proportions. Biofilm EPS had a higher proportion of DNA when compared to flocs. Biofilm growth was preferential on the protected internal surfaces of the media. Colonization of the external surfaces of the media was evident by the presence of small microcolonies. The structural heterogeneity of the biofilms examined was supported by observed differences in biomass content, thickness and roughness of biofilm surface. The biofilm on the interior surface of media was found to be patchy with clusters of cells connected by an irregular arrangement of interconnecting EPS projections. Biofilm thickness ranged between 139μm and 253 μm. The pattern of oxygen penetration is expected to be complex. Nitrifiers and denitrifiers were predominantly associated with the biofilms, and the latter were found to be dispersed throughout the film and arranged in micro-clusters, suggesting partial oxygen penetration.
机译:集成的固定膜活性污泥系统(IFFAS)可能会全年实现硝化作用,或由于絮凝物和生物膜的存在以及潜在的多种氧化还原状态和较长的固体保留时间而获得额外的处理能力。絮凝物和生物膜是独特的微生物结构,对它们的理化和结构特性的表征可能有助于深入了解它们在IFFAS中的废水处理和污染物去除中的作用。从五个不同的中试介质系统检查了浮游生物和生物膜,这些系统在大型市政废水处理厂中进行了潜在的全面实施评估。同一系统中的絮状物和生物膜具有不同的表面特性;发现絮凝物具有比生物膜(-0.05至-0.07 meq / g VSS; 19-34%)更高的负表面电荷(-0.35至-0.65 meq./g VSS)和更疏水(60%-75%) )。絮状物的EPS含量明显高于生物膜(范围为2.1-4.5 f6lds)。在絮体来源的细胞外聚合物(EPS)中,蛋白质(PN)显然占主导地位;而在生物膜来源的EPS中,PN和多糖(PS)的存在比例大致相等。与絮凝物相比,生物膜EPS具有更高的DNA比例。生物膜的生长在受保护的介质内表面上是优先的。培养基外表面的集落通过小菌落的存在而明显。所观察到的生物膜的结构异质性得到了观察到的生物膜含量,生物膜表面厚度和粗糙度的差异的支持。发现培养基内表面上的生物膜呈片状,细胞簇通过不规则排列的相互连接的EPS投影连接。生物膜厚度范围在139μm和253μm之间。氧气渗透的模式预计会很复杂。硝化剂和反硝化剂主要与生物膜相关,发现后者分散在整个膜中并排列在微团簇中,表明部分氧气渗透。

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