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Pilot-plant study on anaerobic treatment of a lipid- and protein-rich food industrial wastewater by a thermophilic multi-staged UASB reactor

机译:高温多级UASB反应器厌氧处理富含脂质和蛋白质的食品工业废水的中试研究

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摘要

An on-site pilot-scale experiment was conducted to investigate the performance of a multi-staged UASB (MS-UASB) reactor by feeding with a food processing wastewater containing high strength of lipid and protein. The reactor was operated at a thermophilic condition (55degreesC) for a period of 600 days. The reactor finally achieved 50 kgCOD.m(-3).d(-1) with a soluble COD removal of 90% (based on the influent total COD versus the effluent filtered COD), while the overall COD removal (based on the effluent COD-total) was considerably unsatisfactory at around only 60-70%. The presence of high strength of lipid and protein along with high concentration of Mg and Ca ions in the raw wastewater caused a severe scum and/or insolubilized substance formation within the UASB sludge bed, resulting in hindering the contact efficiency between substrate and sludge. The replacement of active microbial granules in the sludge bed with the insolubilized protein and lipid brought about deterioration of sludge methanogenic activity. [References: 7]
机译:进行了现场中试实验,通过向多级UASB(MS-UASB)反应器进料含高浓度脂类和蛋白质的食品加工废水来研究其性能。该反应器在热条件(55℃)下运行600天。反应器最终达到50 kgCOD.m(-3).d(-1),可溶性COD去除率为90%(基于进水总COD与流出物过滤的COD相比),而总COD去除率(基于出水) COD(总计)在约60%至70%的范围内非常不令人满意。在原废水中存在高强度的脂质和蛋白质,以及高浓度的Mg和Ca离子,导致UASB污泥床内形成严重的浮渣和/或不溶性物质,从而阻碍了底物与污泥之间的接触效率。用不溶的蛋白质和脂质代替污泥床中的活性微生物颗粒会导致污泥产甲烷活性的降低。 [参考:7]

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