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Microbial storage products, biomass density, and settling properties of enhanced biological phosphorus removal activated sludge

机译:微生物存储产品,生物量密度和增强的生物除磷活性污泥的沉降特性

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The relationships between bacterial storage products, density, and settling characteristics were determined in a laboratory-scale sequencing batch reactor (SBR) enhanced biological phosphorus removal (EBPR) system. Both long-term and single anaerobic-aerobic cycle variations in these properties were studied. Increased polyphosphate (PP) content of the biomass during long-term operation resulted in improved sludge volume index (SVI) values. End-aerobic phase (after phosphate (P) uptake) SVI values were consistently lower than end-anaerobic phase (after P release) values. Neither filamentous nor slime bulking were evident by microscopic observations. Biomass density increased at a rate of 1.2 mg/L per each 1 % increase in biomass P cntent. End-aerobic phase samples had an average 25% higher buoyant density than end-anaerobic phase samples, which was attributed to aerobic P uptake. Biomass density was negatively correlated with SVI values, and SVI values increased sharply at low biomass density. A mathematical model developed by Mas et al. (1985) was modified to predict total cell density based on literature values of PP, glycogen (GLY), and poly-b-hydroxybutyrate (PHB) densities. Model predictions were in good agreement with experimental results. although improved measurement of PP density is required to improve model predictions. [References: 20]
机译:在实验室规模的分批反应器(SBR)增强生物除磷(EBPR)系统中确定了细菌存储产物,密度和沉降特性之间的关系。研究了这些特性的长期和单个厌氧-好氧循环变化。在长期运行过程中,生物质中多磷酸盐(PP)含量的增加导致污泥体积指数(SVI)值的提高。好氧末期(吸收磷(P)后)的SVI值始终低于无氧末期(释放P后)的值。通过显微镜观察,丝状和粘液的膨胀均不明显。生物量密度每增加1%,生物量密度就会增加1.2 mg / L。好氧末期样品的浮力密度平均比好氧末期样品高25%,这归因于有氧磷的吸收。生物量密度与SVI值呈负相关,在低生物量密度下SVI值急剧增加。 Mas等人开发的数学模型。 (1985)进行了修改,以根据PP,糖原(GLY)和聚-b-羟基丁酸酯(PHB)密度的文献值预测总细胞密度。模型预测与实验结果非常吻合。尽管需要改善PP密度的测量以改善模型预测。 [参考:20]

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