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Effect of alternating anaerobic and aerobic phases on the performance of a SBR treating effluents with high salinity and phenols concentration

机译:厌氧和好氧相交替对SBR处理高盐度和高酚浓度废水的性能的影响

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The biological treatment of hypersaline wastewaters with high COD and phenols concentration requires long hydraulic retention times and much energy for aeration. In this work aeration time reduction in the reaction phase was studied in two sequential batch reactors (SBR) treating fermentation brine from table olive processing wastewater. To study the influence of an anaerobic phase on the SBR performance (for COD and phenolic compound removal efficiencies), different anaerobic/aerobic reaction times were evaluated. SBR-1 was operated with an anaerobic/aerobic hours ratio of 0/22, 8/14 and 14/8 and SBR-2 with a ratio of 22/0, 14/8 and 8/14. Results showed that the maximum organic matter reduction was obtained under aerobic reaction conditions (ratio 0/22) with a 82.3% and 77.9% of COD and total phenols removal, respectively. However, optimal conditions were considered to prevail for an anaerobic/aerobic ratio of 8/14, since the reactors performances were similar with lower energy consumption. Thus, 82.3% and 79.5% of COD and 77.9% and 78.3% of total phenols were removed in SBR-1 and SBR-2, respectively. (C) 2016 Elsevier B.V. All rights reserved.
机译:具有高COD和苯酚浓度的高盐度废水的生物处理需要较长的水力停留时间和大量的曝气能量。在这项工作中,在两个顺序分批反应器(SBR)中研究了减少反应阶段通气时间的问题,该反应器处理来自食用橄榄加工废水的发酵盐水。为了研究厌氧相对SBR性能(对于COD和酚类化合物的去除效率)的影响,评估了不同的厌氧/好氧反应时间。 SBR-1的厌氧/好氧小时数比为0 / 22、8 / 14和14/8,SBR-2的比率为22 / 0、14 / 8和8/14。结果表明,在好氧反应条件下(比例为0/22),有机物减少量最大,COD和总酚去除率分别为82.3%和77.9%。然而,由于厌氧/好氧比为8/14,因此认为最佳条件占优势,因为反应堆的性能与低能耗相似。因此,在SBR-1和SBR-2中分别去除了82.3%和79.5%的COD以及77.9%和78.3%的总酚。 (C)2016 Elsevier B.V.保留所有权利。

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