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Effect of solids retention time on floc structure

机译:固体保留时间对絮体结构的影响

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Correlative microscopy was applied to study the influence of solids retention time on activated sludge floc structure. Conventional optical microscopy revealed flocs at lower SRTs (4 and 9 days) to be irregular in shape while flocs at higher SRTs (16 and 20 days) had a more spherical and compact structure. Flocs were examined by environmental scanning electron microscopy (ESEM) and by transmission electron microscopy (TEM) coupled with energy-dispersive spectroscopy (EDS). Distinctive differences in floc structure and the arrangement of EPS were revealed. Flocs from higher SRTs were less hydrated and were found to possess a dense EPS layer that covers much of the surface. Extracellular osmiophilic granules present in these flocs indicate that the cells at the higher SRT may produce more lipid-like material. This EPS layer appears to decrease the floc surface roughness and protects the interior cells from disruption by changes in the external environment. Sludge flocs at higher SRTs were found to be physically more stable than those at lower SRTs. [References: 22]
机译:运用相关显微镜研究了固体停留时间对活性污泥絮凝结构的影响。常规光学显微镜显示,较低SRT(4天和9天)的絮状物形状不规则,而较高SRT(16天和20天)的絮状物具有更球形和致密的结构。通过环境扫描电子显微镜(ESEM)和透射电子显微镜(TEM)结合能量色散光谱(EDS)检查絮凝物。揭示了絮体结构和EPS排列的明显差异。来自较高SRT的絮凝物的水合较少,并且发现其具有覆盖大部分表面的致密EPS层。这些絮凝物中存在的细胞外嗜渗透性颗粒表明,较高SRT的细胞可能产生更多的类脂质物质。这种EPS层似乎可以减少絮状物表面的粗糙度,并保护内部细胞免受外部环境变化的干扰。发现较高SRT的污泥絮凝物比较低SRT的污泥在物理上更稳定。 [参考:22]

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