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首页> 外文期刊>Journal of Environmental Engineering >Density and activity characterization of activated sludge flocs
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Density and activity characterization of activated sludge flocs

机译:活性污泥絮凝物的密度和活性表征

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Activated sludge floes are made up of a conglomerate of materials including microorganisms, exocellular polymers, inert particulates, slow and nonbiodegradable organic particles, and water. The goal of this study was to determine if inert/unbiodegradable aggregates had higher densities than active biomass. It was also desired to determine whether mixed liquor could be gravimetrically settled to differentially stratify floes based on density and biological activity. In this manner, if activity stratification is possible, then less active biomass could be wasted preferentially during wastewater treatment operations (e.g., during daily wastage), thereby increasing the effective solids retention time and improving process performance. This paper reports the initial set of results, which focused on establishing density values of inert/unbiodegradable fractions of activated sludge floe, and the heterotrophic activity measurements of faster settling floes compared to slower settling flocs. The results indicate that activated sludge from a local wastewater treatment plant had aggregate densities as low as 1.038 g/mL for slower settling floe particles and as high as 1.065 g/mL for faster settling floc particles. Primary effluent "inert+unbiodegradable particulate organic" fractions, which ultimately accumulate in mixed liquor and contribute to the inactive activated sludge floe fraction, had densities of approximately 1.24 g/mL. Mixed liquor that was digested in excess of 90 days to reduce any degradable organics revealed aggregate densities between 1.11 and 1.12 g/mL. Settling column experiments indicated that floe particles settled at rates ranging from less than 5 m/h to greater than 30 m/h. Specific oxygen uptake rates signified that the heterotrophic activity was homogeneous across all settling velocities except those floes with a settling velocity of less than 5 m/h. These floes exhibited a specific oxygen uptake rate of between 31 and 110% higher than the remaining floe. Determination of the mass fraction of these floes indicates that they account for approximately 2% of the overall biomass. This low fraction limits the usefulness of differentially settling unaltered waste activated sludge to recover portions with higher activity.
机译:活性污泥絮凝物由多种材料组成,包括微生物,细胞外聚合物,惰性颗粒,缓慢且不可生物降解的有机颗粒和水。这项研究的目的是确定惰性/不可生物降解的聚集体是否比活性生物质具有更高的密度。还期望基于密度和生物活性来确定混合液是否可以通过重量分析法沉淀以区分分层的絮凝物。以这种方式,如果可能进行活性分层,那么在废水处理操作期间(例如,在每日浪费期间)可以优先浪费较少活性的生物质,从而增加了有效的固体保留时间并改善了工艺性能。本文报告了最初的一组结果,这些结果集中在确定活性污泥絮凝物的惰性/不可生物降解级分的密度值,以及沉降较快的絮凝物与沉降较慢的絮凝物的异养活性测量。结果表明,来自当地废水处理厂的活性污泥的聚集密度,对于较慢的沉降絮凝物颗粒,低至1.038 g / mL,对于较快的沉降絮凝物颗粒,其高至1.065 g / mL。最终积聚在混合液中并促成无活性的活性污泥絮凝物级分的主要流出物“惰性+不可生物降解的颗粒有机”级分的密度约为1.24 g / mL。消化90天以上以减少任何可降解有机物的混合液显示,总密度在1.11和1.12 g / mL之间。沉降柱实验表明,絮凝物颗粒沉降的速率范围从小于5 m / h到大于30 m / h。特定的氧气吸收率表明,除沉降速度小于5 m / h的那些絮凝物外,异养活动在所有沉降速度上均一。这些絮凝物的比氧吸收率比其余絮凝物高31%至110%。确定这些絮凝物的质量分数表明,它们约占总生物量的2%。如此低的比例限制了差异沉降未改变的废物活化污泥以回收具有较高活性的部分的有用性。

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