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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Performance of a two-phase biotrickling filter packed with biochar chips for treatment of wastewater containing high nitrogen and phosphorus concentrations
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Performance of a two-phase biotrickling filter packed with biochar chips for treatment of wastewater containing high nitrogen and phosphorus concentrations

机译:装有生物炭芯片的两相生物滴滤滤池处理含高氮和高磷废水的性能

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A two-phase biotrickling filter (BTF) system with sequential aerobic and anaerobic flow cell reactors was evaluated for treating nitrogen/phosphorus-rich wastewater using packing material consisting of biochar manufactured from porous palm residues. The filter system was seeded with microbial consortia from the freshwater sediment with a history of exposure to fertilizer runoff. For test purposes, the BTF was fed with simulated wastewater and operated under variable aerobic and anaerobic conditions using various carbon sources and loading conditions. Start-up and operation characteristics including hydraulic retention time (HRT), carbon sources and reactor column depths on pollutants removal were studied. The BTF began working well after one month of operation and thereafter provided effective treatment. Optimal operation parameters utilized an HRT of 36-48 h, using bicarbonate as carbon source, and palm biochar chips as the packing material. Sequential aerobic nitrification and anaerobic denitrification were obtained with NH4+-N and TP/NOx-N being removed in Reactor A and Reactor B, respectively. The results showed that the two-phase BTF system was efficient for treating wastewater with high concentrations of nitrogen and phosphorus: Under optimum conditions, removal of approximately 80% of ammonium and 68% of total phosphorus was achieved, resulting in the formation of effluent suitable for recycling or release into natural waters. The study provides invaluable insight for further design and operation of full-scale wastewater treatment system. (C) 2016 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:使用由多孔棕榈渣制成的生物炭构成的填充材料,对具有顺序好氧和厌氧流通池反应器的两相生物滴滤池(BTF)系统进行了处理富氮/磷废水的评估。过滤系统上撒有来自淡水沉积物的微生物菌落,并有暴露于肥料径流的历史。出于测试目的,向BTF供入了模拟废水,并使用各种碳源和负载条件在可变的需氧和厌氧条件下运行。研究了水力停留时间(HRT),碳源和反应器塔深度对污染物去除的启动和运行特性。手术一个月后,BTF开始运作良好,此后提供了有效的治疗方法。最佳操作参数使用HTC为36-48 h,使用碳酸氢盐作为碳源,棕榈生物炭屑作为包装材料。通过在反应器A和B中分别去除NH4 + -N和TP / NOx-N,实现了顺序好氧硝化和厌氧反硝化。结果表明,两相BTF系统可有效处理高浓度氮和磷的废水:在最佳条件下,可去除约80%的铵和68%的总磷,从而形成了适合的废水用于回收或释放到天然水中。该研究为进一步设计和运行大型废水处理系统提供了宝贵的见识。 (C)2016化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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