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Combined mesophilic anaerobic and thermophilic aerobic digestion process for high-strength food wastewater to increase removal efficiency and reduce sludge discharge

机译:结合中温厌氧和高温好氧消化工艺处理高强度食品废水,以提高去除效率并减少污泥排放

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In this study, a process that combines the mesophilic anaerobic digestion (MAD) process with thermophilic aerobic digestion (TAD) for high-strength food wastewater (FWW) treatment was developed to examine the removal of organic matter and methane production. All effluent discharged from the MAD process was separated into solid and liquid portions. The liquid part was discarded and the sludge part was passed to the TAD process for further degradation. Then, the digested sludge from the TAD process was recycled back to the MAD unit to achieve low sludge discharge from the combined process. The reactor combination was operated in two phases: during Phase I, 40 d of total hydraulic retention time (HRT) was applied; during Phase II, 20 d was applied. HRT of the TAD process was fixed at 5 d. For a comparison, a control process (single-stage MAD) was operated with the same HRTs of the combined process. Our results indicated that the combined process showed over 90% total solids, volatile solids and chemical oxygen demand removal efficiencies. In addition, the combined process showed a significantly higher methane production rate than that of the control process. Consequently, the experimental data demonstrated that the combined MAD-TAD process was successfully employed for high-strength FWW treatment with highly efficient organic matter reduction and methane production.
机译:在这项研究中,开发了一种将中温厌氧消化(MAD)工艺与嗜热好氧消化(TAD)相结合的高强度食品废水(FWW)处理工艺,以检查有机物的去除和甲烷的产生。从MAD工艺中排出的所有废水均分为固体和液体部分。液体部分被丢弃,污泥部分进入TAD工艺以进一步降解。然后,将来自TAD工艺的消化后的污泥再循环回MAD单元,以降低组合工艺中的污泥排放量。反应器组合分两个阶段运行:在阶段I中,施加了40 d的总水力停留时间(HRT);在第二阶段,应用了20天。 TAD过程的HRT固定为5 d。为了进行比较,控制过程(单级MAD)以与合并过程相同的HRT运行。我们的结果表明,组合过程显示出90%以上的总固体,挥发性固体和化学需氧量去除效率。另外,组合过程显示出甲烷生成速率明显高于对照过程。因此,实验数据表明,MAD-TAD组合工艺已成功用于高强度FWW处理,并具有高效的有机物还原和甲烷生成能力。

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