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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Anaerobic degradation kinetics of particulate organic matter in untreated and sonicated sewage sludge: Role of the inoculum
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Anaerobic degradation kinetics of particulate organic matter in untreated and sonicated sewage sludge: Role of the inoculum

机译:未经处理和超声处理的污泥中颗粒有机物的厌氧降解动力学:接种物的作用

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摘要

Degradation kinetics of particulate matter in anaerobic digestion of secondary sludge, untreated and sonicated, was investigated by carrying out batch tests at different feed/inoculum ratio (F/I) (in the range of 0.1-4.0). Particulate COD degradation data were analysed using the four equations most widely utilized to model the hydrolysis process and the related kinetic parameters were evaluated. The increase of F/I results in a correspondent increase of the process rate up to one order of magnitude in the investigated interval for both untreated and sonicated sludge. The maximum step increase is observed in the range of 0.1-2.0 while for F/I varying from 2.0 to 4.0 only a modest enhancement of the process kinetics is detected. The effect of sonication on kinetics is not appreciable at low F/I, due to the low fraction of fed sludge and to the consequent strong substrate limitation, whereas at high F/I a slight increase is evidenced. (C) 2008 Elsevier Ltd. All rights reserved.
机译:通过在不同的进料/接种比(F / I)(0.1-4.0)下进行分批测试,研究了未经处理和超声处理的二级污泥厌氧消化中颗粒物的降解动力学。使用最广泛用于模拟水解过程的四个方程分析颗粒COD降解数据,并评估了相关的动力学参数。 F / I的增加导致未处理污泥和超声处理污泥的处理速率在调查的时间间隔内相应增加一个数量级。在0.1-2.0的范围内观察到最大步进增加,而对于F / I从2.0到4.0的变化,仅检测到过程动力学的适度增强。在低F / I下,超声处理对动力学的影响不明显,这是由于进料污泥的比例低以及随之而来的强底物限制,而在高F / I下,则证明有轻微的增加。 (C)2008 Elsevier Ltd.保留所有权利。

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