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首页> 外文期刊>Journal of Cleaner Production >Anaerobic co-digestion of food waste with pretreated yard waste: A comparative study of methane production, kinetic modeling and energy balance
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Anaerobic co-digestion of food waste with pretreated yard waste: A comparative study of methane production, kinetic modeling and energy balance

机译:餐厨垃圾与预处理垃圾一起厌氧消化:甲烷生产,动力学模型和能量平衡的比较研究

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摘要

Solid state anaerobic digestion of food waste (FW) with yard waste (YW) appears to be an efficient technique for bioenergy production. However, the reluctant nature of YW and nutrient imbalance due to high C/N ratio are the two major obstacles for maximum methane production. In this study to improve the methane production potential, YW was thermally pretreated to reduce its recalcitrance nature and then the pretreated YW was co-digested with FW to balance nutrient for anaerobic co-digestion. Moreover, optimization of F/M (Food/Microorganism) ratios (1.0, 1.5, 2.0 and 2.5) for solid state anaerobic co-digestionwas also considered. The highest methane production of 431 mL/gVS(added) was observed for co-digestion of FW with microwave pretreated YW at the F/M ratio of 1.5. Energy balance of the pretreatment technique was conducted and the highest net energy gain 3.98 kJ/gVS (= output energy of 14.04 kJ/gVS - input energy of 10.05 kJ/g VS) obtained at the F/M ratio of 1.0. (C) 2019 Elsevier Ltd. All rights reserved.
机译:食用垃圾(YW)进行固态厌氧消化厨余(FW)似乎是一种有效的生物能源生产技术。然而,YW的勉强特性和高C / N比导致的养分失衡是最大甲烷产量的两个主要障碍。在这项研究中,为了提高甲烷的生产潜力,对黄W进行了热预处理以降低其难降解性,然后将经预处理的黄W与FW共同消化以平衡养分,以进行厌氧共消化。此外,还考虑了固态厌氧消化的F / M(食物/微生物)比(1.0、1.5、2.0和2.5)的优化。在F / M比为1.5的条件下,用微波预处理的YW共消化FW时,观察到最高的甲烷生成量为431 mL / gVS(添加)。进行了预处理技术的能量平衡,并且以1.0的F / M比获得了最高的净能量增益3.98 kJ / gVS(=输出能量14.04 kJ / gVS-输入能量10.05 kJ / g VS)。 (C)2019 Elsevier Ltd.保留所有权利。

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