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Treatment and Biodegradation Kinetics of Microbially Treated Domestic Wastewater Sludge

机译:微生物处理的生活污水污泥的处理及生物降解动力学

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A laboratory-scale study was undertaken to evaluate the liquid state bioconver-sion (LSB) in terms of biodegradation of microbially treated domestic wastewater sludge (biosolids) as well as its kinetics. The potential fungal strains and process factors developed from previous studies were used throughout the study. The results presented in this study showed that an effective biodegradation occurred with the biosolids (sludge cake) accumulated. The maximum biosolids (sludge cake) accumulated (93.8 g/kg of liquid sludge) enriched with the biomass protein (30.2 g/kg of dry biosolids), was achieved which improved the effluent quality by enhancing the removal of chemical oxygen demand (COD), reducing sugar (RS), soluble protein (SP), total dissolved solids (TDS), and total suspended solids (TSS). The higher reduction of specific resistance to filtration (SRF) was observed during bioconversion process. The kinetics results showed that the experimental data were better fitted for the biodegradation efficiency, and biosolids accumulation and biodegradation rate.
机译:进行了实验室规模的研究,以评估微生物处理的生活污水污泥(生物固体)的生物降解及其动力学方面的液态生物转化(LSB)。在整个研究过程中,都使用了先前研究开发的潜在真菌菌株和加工因子。这项研究提出的结果表明,随着生物固体(污泥饼)的积累,有效的生物降解发生了。积累的最大生物固体(污泥饼)(93.8 g / kg液体污泥)富含生物质蛋白质(30.2 g / kg干燥生物固体),通过提高对化学需氧量(COD)的去除,改善了废水质量。 ,还原糖(RS),可溶性蛋白质(SP),总溶解固体(TDS)和总悬浮固体(TSS)。在生物转化过程中观察到了比过滤抗性(SRF)更高的降低。动力学结果表明,实验数据更适合生物降解效率,生物固体积累和生物降解速率。

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