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Influence of thermal hydrolysis pretreatment on physicochemical properties and anaerobic biodegradability of waste activated sludge with different solids content

机译:热水解预处理对不同固含量废活性污泥理化性质和厌氧生物降解性的影响

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The influence of thermal hydrolysis pretreatment (THP) on physicochemical properties (pH, total solids, volatile solids, chemical oxygen demand, total nitrogen, ammonium nitrogen, volatile fatty acids, viscosity, and cell morphology) and anaerobic biodegradability of highly concentrated waste activated sludge (WAS) with TS content ranging from 1 to 7% was evaluated at different temperatures ranging from 100 to 220 degrees C. The biomethane potential (BMP) of the WAS was systematically analyzed and evaluated. Images of its cellular structure were also analyzed. The results indicated that THP is a useful method for solubilizing volatile solids and enhancing CH4 production regardless of the TS content of the WAS feed. The ultimate CH4 production determined from the BMP analysis was 313-348 L CH4/kg VS (72.6-74.1% CH4) at the optimum THP temperature of 180 degrees C. The results showed that THP could improve both the capacity and efficiency of anaerobic digestion, even at a high TS content, and could achieve the dual purpose of sludge reduction and higher energy recovery. (C) 2018 Elsevier Ltd. All rights reserved.
机译:热水解预处理(THP)对物理化学性质(pH,总固体,挥发性固体,化学需氧量,总氮,铵态氮,挥发性脂肪酸,粘度和细胞形态)的影响以及高浓度废料活性污泥的厌氧生物降解性在100至220摄氏度的不同温度下评估TS含量为1%至7%的(WAS)。系统地分析和评估了WAS的生物甲烷势(BMP)。还分析了其细胞结构的图像。结果表明,无论WAS进料中的TS含量如何,THP都是增溶挥发性固体和提高CH4产量的有用方法。通过BMP分析确定的最终CH4产量在最佳THP温度为180摄氏度时为313-348 L CH4 / kg V​​S(72.6-74.1%CH4)。结果表明,THP可以提高厌氧消化的能力和效率即使在高TS含量下,也可以达到减少污泥和提高能量回收率的双重目的。 (C)2018 Elsevier Ltd.保留所有权利。

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