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Low pH anaerobic digestion of waste activated sludge for enhanced phosphorous release

机译:低pH厌氧消化活性污泥,提高磷的释放

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This paper assesses anaerobic digestion of waste activated sludge (WAS) at low pH to enhance phosphorous solubility. Batch biochemical methane potential tests were conducted at a pH range of 5 to 7.2 in two separate sets (two different WAS samples collected from municipal WWTP). Low pH (<5.7) caused a significant (p = 0.004) decrease in methane potential (B-0) up to 33% and 3.6 times increase in phosphorus release compared to neutral pH (7-7.7), but with no major change in methane production rate coefficient (k(hyd)). The loss in methane yield was mainly due to decrease in hydrolytic capability rather than inhibition of methanogenesis with volatile fatty acids being <300 mgCOD L-1 and soluble COD <1300 mgCOD L-1 even at low pH. While pH did not influence the acetoclastic community (Methanosaeta dominated), it was the primary driver for the remaining community (p = 0.004), and caused a loss of diversity and shift to Clostridia. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文评估了低pH下废活性污泥(WAS)的厌氧消化,以提高磷的溶解度。在两个独立的组中,在5至7.2的pH范围内(从市政污水处理厂收集了两个不同的WAS样品)进行了批量生化甲烷潜力测试。与中性pH(7-7.7)相比,低pH(<5.7)导致甲烷电位(B-0)显着(p = 0.004)降低多达33%,磷释放增加3.6倍,但甲烷生产率系数(k(hyd))。甲烷收率的损失主要是由于水解能力降低而不是由于甲烷的生成受到抑制,即使在低pH值下挥发性脂肪酸<300 mgCOD L-1,可溶性COD <1300 mgCOD L-1。虽然pH值不会影响碎裂碎屑群落(以甲烷菌为主导),但它是其余群落的主要驱动力(p = 0.004),并导致多样性丧失并转移至梭菌。 (C)2015 Elsevier Ltd.保留所有权利。

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