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Comparing two enhancing methods for improving kitchen waste anaerobic digestion: bentonite addition and autoclaved de-oiling pretreatment

机译:比较两种改善厨余垃圾厌氧消化的改良方法:膨润土添加和高压灭菌脱油预处理

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摘要

The effects of different enhancement methods, including adding bentonite (1.25%, w/w, wet substrate) and autoclaved de-oiling pretreatment (121 °C, 30 minutes), on the anaerobic digestion of kitchen waste (KW) were comparably studied. Mesophilic continuous stirred tank reactors were used under different organic loading rates (OLRs) of 1.11 to 1.84 gVS (volatile solid)L−1d−1 and two different hydraulic retention times (HRTs) (20 d and 25 d). In this study, two enhancement methods and extending HRT could prevent volatile fatty acids (VFA) accumulation and obtain a high methane production at low OLR. Owing to the effect of providing nutrients and buffering capacity, the maximum methane yield was obtained with adding bentonite at OLR of 1.39 gVSL−1d−1. However, for high OLR (1.84 gVSL−1d−1), a decrease of the methane yield and system breakdown occurred due to the accumulation of VFAs. Engineering design and process evaluation of a CSTR biogas plant treating with KW based on the laboratory experiment was stated.
机译:比较研究了不同的增强方法,包括添加膨润土(1.25%,w / w,湿基材)和高压灭菌的除油预处理(121°C,30分钟),对厨房垃圾(KW)的厌氧消化效果。中温连续搅拌釜反应器在1.11至1.84 gVS(挥发性固体)L-1d-1的不同有机负荷率(OLR)和两个不同的水力停留时间(HRT)(20 d和25 d)下使用。在这项研究中,两种增强方法和扩展HRT可以防止挥发性脂肪酸(VFA)积累,并在低OLR的情况下获得高甲烷产量。由于提供养分和缓冲能力的影响,在1.39 gVSL-1d-1的OLR下加入膨润土可获得最大的甲烷产量。但是,对于高OLR(1.84 gVSL-1d-1),由于VFA的积累,甲烷的产率降低和系统崩溃。陈述了基于实验室实验的KW处理的CSTR沼气厂的工程设计和过程评估。

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