首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Technical potential of microalgal bacterial floc raceway ponds treating food-industry effluents while producing microalgal bacterial biomass: An outdoor pilot-scale study
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Technical potential of microalgal bacterial floc raceway ponds treating food-industry effluents while producing microalgal bacterial biomass: An outdoor pilot-scale study

机译:微藻细菌絮体水塘池在处理食品工业废水的同时生产微藻细菌生物质的技术潜力:一项室外中试研究

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To replace costly mechanical aeration by photosynthetical aeration, upflow anaerobic sludge blanket (UASB) effluent of food-industry was treated in an outdoor MaB-floc raceway pond. Photosynthetic aeration was sufficient for nitrification, but the raceway effluent quality was below current discharge limits, despite the high hydraulic retention time (HRT) of 35 days. Hereafter, conventional activated sludge (CAS) effluent of food-industry was treated in this pond to recover phosphorus. The two-day HRT results in a more realistic pond area, but the phosphorus removal efficiency was low (20%). High biomass productivities were obtained, i. e. 31.3 and 24.9 ton total suspended solids ha(pond)(1) year (1) for UASB and CAS effluent, respectively. Bioflocculation enabled successful harvesting of CAS effluent-fed MaB-flocs by settling and filtering at 150-250 mu m to 22.7% total solids. To conclude, MaB-floc raceway ponds cannot be recommended as the sole treatment for these food-industry effluents, but huge potential lies in added-value biomass production. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了用光合作用曝气代替昂贵的机械曝气,在室外MaB-floc跑道池中处理了食品工业的上流厌氧污泥层(UASB)废水。光合曝气足以进行硝化作用,但尽管水力停留时间(HRT)高达35天,但滚道流出物的质量仍低于现行排放限值。此后,在该池塘中处理了食品工业的常规活性污泥(CAS)废水,以回收磷。为期两天的HRT可以使池塘面积更为真实,但除磷效率较低(20%)。获得了高生物量生产率,即。 e。 UASB和CAS废水的总悬浮固体ha(pond)(1)年(1)年(1)分别为31.3和24.9吨。通过生物絮凝,通过以150-250微米的总固体沉降并过滤至22.7%的固体含量,成功收获了由CAS流出的MaB絮凝物。总之,不能推荐将MaB絮凝池作为这些食品工业废水的唯一处理方法,但巨大的潜力在于增值生物质生产。 (C)2016 Elsevier Ltd.保留所有权利。

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