首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A comparative study of pilot-scale bio-trickling filters with counter- and cross-current flow patterns in the treatment of emissions from chemical fibre wastewater treatment plant
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A comparative study of pilot-scale bio-trickling filters with counter- and cross-current flow patterns in the treatment of emissions from chemical fibre wastewater treatment plant

机译:试验规模生物滴水滤波器对化学纤维废水处理厂排放中的反跨电流模式的比较研究

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Two pilot-scale bio-trickling filters (BTFs) with counter-current and cross-current flow modes were constructed, and their performance tested, for purifying chemical fibre waste gas containing H2S, NH3 and VOCs with a maximum gas flow rate of 1008 m(3) h (1). The counter-current type of BTF presented with superior biodegradation results compared to the cross-current type: it could start up quickly, tolerated high transient shock loadings, and possessed an average contaminant removal efficiency higher than 90% with an empty bed residence time of 59 s. The contaminant removal efficiency could be increased by 50% during winter due to the addition of pipeline insulation. The abundance and diversity from microorganism analysis showed that Dyella, Bacillus, Candidimonas, Pandoraea and Thiomonas were the main bacterial strains forming the community treating the pollutants. The counter-current type BTF functioned most effectively and is proposed for practical application. (C) 2017 Elsevier Ltd. All rights reserved.
机译:构造了两个具有逆流和跨电流流动模式的导频生物滴流滤波器(BTF),并测试了它们的性能,用于纯化含有H2S,NH3和VOC的化学纤维废气,最大气体流速为1008米(3)H(1)。与交叉电流类型相比,具有卓越的生物降解结果的反电流类型的BTF:它可以快速启动,容忍高瞬态冲击载荷,并且具有高于90%的平均污染物去除效率,空床停留时间59秒。由于添加管道绝缘,冬季污染物去除效率可能会增加50%。微生物分析的丰富和多样性表明,Dyella,Bacillus,Candidimonas,Pandoraea和Thiomonas是形成群体治疗污染物的主要细菌菌株。逆流式BTF最有效地运行,并提出用于实际应用。 (c)2017 Elsevier Ltd.保留所有权利。

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