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Treatment of high-fat-containing dairy wastewater in a sequential UASBR system: Influence of recycle

机译:在顺序UASBR系统中处理高脂乳制品废水:循环的影响

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BACKGROUND: Raw cheese whey originating from white cheese production results in a strong and complex wastewater excessively rich in organic matter (chemical oxygen demand, COD = 28-65 g L-1), fatty matter (14-24.5 g L-1) and acidity (3.9-6.1 g L-1). It was treated in a three-stage configuration consisting of a pre-acidification (PA) tank and sequential upflow anaerobic sludge bed reactors (UASBRs) at 2.8-7 g COD L-1 day-1 organic loading rates, during which the effects of effluent recycling at low rates and promoted SRB activity were investigated. Acidification, volatile fatty acids (VFA), COD and fatty matter removal and volatile solids were monitored throughout the system during the study. RESULTS: Recycling of the effluent promoted VFA and COD removal as well as pH stability in both stages of the UASBRs and the effluent where high alkalinity levels were recovered reducing alkali requirement to 0.05 g OH g-1 CODapplied. Higher removal rates of 71-100 and 50-92% for VFA and COD were obtained by use of recycling. Fatty matter was removed at 63-89% throughout the study. Volatile solids build-up was significant in the inlet zones of the UASBRs. CONCLUSIONS: The system produced efficient acidification in the PA tank, balanced pH levels and an effluent high in alkalinity and BOD/COD ratio. Efficient VFA removal and solids immobilization was obtained in both stages up to the highest loading rate. Recycling improved the system performance under high fatty matter loading conditions. A major advantage of the sequential system was that the second stage UASBR compensated for reduced performance in the first stage.
机译:背景:源自白奶酪生产的原始奶酪乳清导致大量有机物(化学需氧量,COD = 28-65 g L-1),脂肪类物质(14-24.5 g L-1)和有机物含量过高的强而复杂的废水。酸度(3.9-6.1 g L-1)。它经过三阶段配置处理,包括预酸化(PA)罐和顺序上流厌氧污泥床反应器(UASBR),有机负荷速率为2.8-7 g COD L-1 day-1,在此期间,进行了低速废水回收和促进SRB活性的研究。在研究期间,整个系统都对酸化,挥发性脂肪酸(VFA),化学需氧量和脂肪去除以及挥发性固体进行了监测。结果:回收的废水促进了UASBRs和回收高碱度废水的两个阶段中VFA和COD的去除以及pH稳定性,从而减少了碱需求,降至0.05 g OH g-1 COD。通过回收利用,VFA和COD的去除率更高,达到71-100%和50-92%。在整个研究过程中,脂肪物质的去除率为63-89%。在UASBRs的进口区域中,挥发性固体的积累非常明显。结论:该系统在PA罐中产生了有效的酸化作用,平衡了pH值,并且废水的碱度和BOD / COD比值很高。在最高加载速率的两个阶段中均获得了有效的VFA去除和固体固定。在高脂肪物质负载条件下,回收利用可改善系统性能。顺序系统的主要优点是第二阶段UASBR可以补偿第一阶段的性能下降。

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