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Assessment of Sludge Reduction and Biogas Potential from Anaerobic Co-digestion Using an Acidogenically Fermented Fishery Byproduct with Various Agricultural Wastes

机译:使用各种农业废物的酸原发酵的渔业副产品评估厌氧共消化的污泥减少和沼气潜力

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Fishery byproducts were acidogenically fermented with agricultural wastes (corncob, cabbage waste, and fruit peel), and fishery acidogenic fermentation broth (FFB) was used to observe sludge reduction and biogas production in anaerobic co-digestion. The experiment was conducted using a batch test for 30 days in mesophilic conditions. Samples with FFB showed a short response delay time of 1.50-3.06 (day), and total solid (TS) and volatile solid (VS) removal efficiencies of 23-43% and 20-30%, respectively, which were higher than those without FFB. In addition, the process produced 2.63-3.86 times more biogas with a methane content of over 70%. These results indicate that FFB improves the biodegradability of sewage sludge and that microbial communities were activated in a short time during the anaerobic co-digestion process. In particular, the highest TS and VS removal efficiency, biogas production, and high methane content were observed in FFB with corncobs. This suggests that nutrients such as sugar and minerals in corncobs may have positively affected the activity of methane-producing archaea. The anaerobic co-digestion process, which combines FFB and sewage sludge, enhanced the treatment efficiency of sludge and has an advantage of energy recovery.
机译:渔业副产品被农业废物(Corncob,卷心菜废物和果皮)酸化发酵,并且渔业酸性发酵肉汤(FFB)用于观察Anaerobic Co-Digestion中的污泥降低和沼气产生。在嗜水煮条件下使用分批测试进行实验。具有FFB的样品显示出1.50-3.06(日)的短响应延迟时间,以及总固体(TS)和挥发性固体(VS)除去效率,分别为23-43%和20-30%,高于那些没有FFB。此外,该方法生产的沼气含量为2.63-3.86倍,甲烷含量超过70%。这些结果表明,FFB改善了污水污泥的生物降解性,并且在厌氧共消化过程中在短时间内激活微生物群落。特别地,在FFB中观察到最高TS和VS去除效率,沼气产生和高甲烷含量。这表明玉米饼中的糖和矿物质等营养素可能会产生积极影响甲烷的拟亚甲烷的核心的活性。结合FFB和污水污泥的厌氧共消化过程,增强了污泥的治疗效率,具有能量回收的优点。

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