首页> 外文期刊>Energy Reports >The 6th International Conference on Power and Energy Systems Engineering (CPESE 2019), 20–23 September 2019, Okinawa, Japan Effect of combined mechanical–ultrasonic pretreatment on mesophilic anaerobic digestion?of household organic waste fraction in Morocco
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The 6th International Conference on Power and Energy Systems Engineering (CPESE 2019), 20–23 September 2019, Okinawa, Japan Effect of combined mechanical–ultrasonic pretreatment on mesophilic anaerobic digestion?of household organic waste fraction in Morocco

机译:第六次国际权力和能源系统会议(CPESE 2019),2019年9月20日至23日,日本,日本融合嗜合厌氧消化综合机械超声波预处理的影响?摩洛哥家庭有机废物分数

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Methanization is a technology that involves complex biological reactions and it is the subject of several scientific studies. The paper aims to evaluate the effect of the combined mechanical and ultrasonic pretreatment (CMUP) on the anaerobic digestion (AD) of the household organic waste fraction in Morocco (HOWF), using a continuous stirred tank reactor (CSTR) at mesophilic conditions. This article presents and compares a results obtained by operating two experiments in lab scale reactors with mechanical pretreatment (MP) and with CMUP. The experiment with MP was considered in this study as a control. During the handling period, the effect of CMUP on the AD of HOWF was studied. The process was evaluated in terms of methane production and biodegradability. The stability was maintained within correct parameters throughout the process for each experiment, while the methane yield and biodegradability of the control and CMUP experiments were 382 (mL CHsub4/sub gsup?1/supVS) (0?°C, 1 atm), 72%, and 493 (mL CHsub4/sub gsup?1/supVS) (0?°C, 1 atm), 86 % respectively. This shows clearly that the CMUP enhance the methane production and increase the biodegradability, suggesting that this combination pretreatment improve the hydrolysis and methanogenesis phases of the process. A kinetic study on anaerobic digestion results using the first order model was also used. The mathematical model shows a good fit with the experimental data.
机译:甲烷化是一种涉及复杂生物反应的技术,它是几个科学研究的主题。本文旨在评估机械和超声预处理(CMUP)在摩洛哥(Howf)中的厌氧消化(CMUP)对摩洛哥(Howf)的厌氧消化(AD)的影响,所述冻干条件下的连续搅拌釜反应器(CSTR)。本文呈现并比较了通过在实验室比例反应堆中操作两个实验获得的结果,使用机械预处理(MP)和CMUP。在本研究中考虑了MP的实验作为对照。在处理期间,研究了CMUP对HOWF的AD的影响。根据甲烷生产和生物降解性评估该方法。在每个实验的整个过程中保持稳定性在正确的参数内,而对照和CMUP实验的甲烷产率和生物降解性为382(ml CH 4 g Δ1 vs )(0?°C,1 atm),72%和493(ml Ch 4 g Δ1 vs)(0?°C,1 atm),86 % 分别。这显然明显地表明,CMUP增强了甲烷的产生并增加了生物降解性,表明这种组合预处理改善了该方法的水解和甲烷化阶段。还使用了使用第一阶模型的厌氧消化结果的动力学研究。数学模型显示出实验数据的良好拟合。

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