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Microaerobic pretreatment of sewage sludge: Effect of air flow rate, pretreatment time and temperature on the aerobic process and methane generation

机译:污水污泥的微好氧预处理:空气流速,预处理时间和温度对好氧过程和甲烷生成的影响

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The effect of air flow rate (AFR), pretreatment time, and temperature on a microaerobic pretreatment were determined, including its effect on CH4 generation. For this, four AFR (0.1, 0.3, 0.5 and 1 vvm), three temperatures (20, 25 and 35 degrees C) and three aeration times (24, 48 and 60 h) were evaluated in 1-L and 5-L bioreactors. The effect on CH4 production was evaluated in 280-mL bioreactors, using previously aerated sewage sludge. It was found that the micro-aerobic pretreatment improves the hydrolytic process, with an increase of proteins, total sugars, soluble chemical oxygen demand (COD), and a greater removal of volatile suspended solids (VSS) compared to a system without aeration. It was determined that an AFR = 0.3 vvm, 48 h of aeration time, and a temperature of 35 degrees C were the best operational conditions for increasing hydrolysis rate. VSS removal under the aerobic pretreatment follows first order kinetics. Finally, the aeration pretreatment allows a 211% increase of methane generation compared to a process without pretreatment, improving also total COD and VSS removal. (C) 2016 Elsevier Ltd. All rights reserved.
机译:确定了空气流速(AFR),预处理时间和温度对微好氧预处理的影响,包括其对CH4生成的影响。为此,在1升和5升生物反应器中评估了四个AFR(0.1、0.3、0.5和1 vvm),三个温度(20、25和35摄氏度)和三个曝气时间(24、48和60小时)。 。使用先前充气的污水污泥,在280 mL生物反应器中评估了对CH4产生的影响。研究发现,与不曝气的系统相比,微好氧预处理改善了水解过程,增加了蛋白质,总糖,可溶化学需氧量(COD),并去除了挥发性悬浮固体(VSS)。已确定AFR = 0.3 vvm,通气时间48 h和温度35摄氏度是提高水解速率的最佳操作条件。在好氧预处理下去除VSS遵循一级动力学。最后,与不进行预处理的方法相比,曝气预处理可使甲烷生成量增加211%,同时也提高了总COD和VSS的去除率。 (C)2016 Elsevier Ltd.保留所有权利。

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