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Improving the amenability of municipal waste activated sludge for biological pretreatment by phase-separated sludge disintegration method

机译:相分离污泥分解法提高城市垃圾活性污泥生物预处理的适用性

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摘要

The significance of citric acid, a cation binding agent, was investigated for the exclusion of extracellular polymeric substance (EPS) from waste activated sludge (WAS) and anaerobic biodegradability following enzymatic bacterial pretreatment. EPS was removed with 0.05 g/g SS of citric acid. The results of pretreatment found that the suspended solids reduction and chemical oxygen demand solubilisation were 21.4% and 16.2% for deflocculated-bacterially pretreated sludge, 14.28% and 10.0% for flocculated sludge (without EPS removal and bacterially pretreated) and 8.5% and 6.5% for control sludge (raw sludge), respectively. Further assessing anaerobic biodegradability, the biogas yield potential of deflocculated and bacterially pretreated, flocculated, and control sludges were found to be 0.455 L/(g VS), 0.343 L/(g VS), and 0.209 L/(g VS), respectively. Thus, phase-separated disintegration enhanced anaerobic biodegradability efficiently.
机译:研究了柠檬酸(一种阳离子结合剂)对于从废活性污泥(WAS)中排除细胞外聚合物(EPS)和酶法细菌预处理后厌氧生物降解性的重要性。用0.05 g / g SS的柠檬酸除去EPS。预处理的结果发现,絮凝细菌预处理的污泥的悬浮固体减少量和化学需氧量溶解度分别为21.4%和16.2%,絮凝污泥(不去除EPS和进行细菌预处理)的絮凝污泥分别为14.28%和10.0%和8.5%和6.5%分别用于控制污泥(原始污泥)。进一步评估厌氧生物降解性,发现絮凝和细菌预处理,絮凝和对照污泥的沼气产量潜力分别为0.455 L /(g VS),0.343 L /(g VS)和0.209 L /(g VS)。 。因此,相分离的崩解有效地提高了厌氧生物降解性。

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