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Formation and structure of granulated microbial aggregates used in aerobic wastewater treatment

机译:用于好氧废水处理的颗粒状微生物聚集体的形成和结构

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摘要

Granular microbial aggregates are used in aerobic treatment of wastewater. The granules have diverse microbial community and complex spatial structure. The structural elements are radial sub-aggregates, concentric layers, channels, pores, polysaccharide plugs, and an anaerobic core of lysed cells. Aerobic bacteria, consisting of 69-84% of microbial biomass, were concentrated in a layer to the depth of 550 mu m from the surface of the granule. Facultative anaerobic bacteria, consisting of 9-13% of microbial biomass, dominated in a layer at a depth from 550 mu m to 850 mu m from the surface of the granule. Obligate anaerobic bacteria, consisting of 2% of microbial biomass, dominated in a layer on the depth from 850 mu m to 1,000 mu m from the surface of the granule. A core of dead and lysed cells was at a depth greater than 1,000 mu m from the surface of the granule. The depth of the anaerobic layer correlated with the appearance of polysaccharide plugs in the pores. Enrichment cultures of microorganisms with high cell surface hydrophobicity or self-aggregation ability can be used to facilitate the formation of microbial granules.
机译:颗粒状微生物聚集体用于废水的好氧处理。这些颗粒具有多样化的微生物群落和复杂的空间结构。结构元素是放射状的子聚集体,同心层,通道,孔,多糖塞和裂解细胞的厌氧核心。由69-84%的微生物生物量组成的好氧细菌从颗粒表面浓缩到550微米的深度。兼性厌氧细菌由9-13%的微生物生物量组成,在离颗粒表面550微米至850微米的深度处占主导地位。由2%的微生物生物量组成的专性厌氧细菌在距颗粒表面850μm至1,000μm深度的一层中占优势。死细胞和裂解细胞的核心距离颗粒表面的深度大于1,000微米。厌氧层的深度与孔中多糖塞的出现有关。具有高细胞表面疏水性或自聚集能力的微生物的富集培养可用于促进微生物颗粒的形成。

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