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Performances and microbial features of an aerobic packed-bed biofilm reactor developed to post-treat an olive mill effluent from an anaerobic GAC reactor

机译:开发的需氧填充床生物膜反应器的性能和微生物特性用于对厌氧GAC反应器中的橄榄磨机废水进行后处理

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摘要

BackgroundOlive mill wastewater (OMW) is the aqueous effluent of olive oil producing processes. Given its high COD and content of phenols, it has to be decontaminated before being discharged. Anaerobic digestion is one of the most promising treatment process for such an effluent, as it combines high decontamination efficiency with methane production. The large scale anaerobic digestion of OMWs is normally conducted in dispersed-growth reactors, where however are generally achieved unsatisfactory COD removal and methane production yields. The possibility of intensifying the performance of the process using a packed bed biofilm reactor, as anaerobic treatment alternative, was demonstrated. Even in this case, however, a post-treatment step is required to further reduce the COD. In this work, a biological post-treatment, consisting of an aerobic biological "Manville" silica bead-packed bed aerobic reactor, was developed, tested for its ability to complete COD removal from the anaerobic digestion effluents, and characterized biologically through molecular tools.
机译:背景橄榄油厂废水(OMW)是橄榄油生产过程中的水性废水。鉴于其较高的COD和酚含量,必须在排放前对其进行净化处理。厌氧消化是这种废水最有前途的处理方法之一,因为它结合了高去污效率和甲烷生产能力。 OMWs的大规模厌氧消化通常在分散生长反应器中进行,但是通常在COD去除率和甲烷产量方面都不能令人满意。证明了使用填充床生物膜反应器作为厌氧处理替代品来增强工艺性能的可能性。但是,即使在这种情况下,也需要进行后处理步骤以进一步减少COD。在这项工作中,开发了一种生物后处理系统,该系统由好氧生物“ Manville”二氧化硅填充床的好氧反应器组成,测试了其完成从厌氧消化废水中去除COD的能力,并通过分子工具进行了生物学表征。

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