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A biofilter integrated with gas membrane separation unit for the treatment of fluctuating styrene loads

机译:带有气膜分离装置的生物过滤器,用于处理波动的苯乙烯负载

摘要

Biofiltration for volatile organic compound control in waste gas streams is best operated at steady contaminant loadings. To provide long-term stable operation of a biofilter under adverse contaminant feeding conditions, an integrated bioreactor system with a gas separation membrane module installed after a biofilter was proposed for styrene treatment. Styrene was treated effectively, with average styrene effluent concentrations maintained at less than 50 mg m(-3) and a total removal efficiency of over 96% achieved when the biofiltration column faced fluctuating loads. The maximum elimination capacity of the integrated bioreactor system was 93.8 g m(-3) h(-1), which was higher than that obtained with the biofiltration column alone. The combination of these two processes (microbial and chemical) led to more efficient elimination of styrene and buffering of the fluctuating loads. The factors on gas membrane separation, microbial characteristics in the integrated bioreactor and membrane fouling were also investigated in this study. (C) 2012 Elsevier Ltd. All rights reserved.
机译:最好在稳定的污染物负荷下进行生物过滤,以控制废气流中的挥发性有机化合物。为了在不利的污染物进料条件下提供生物滤池的长期稳定运行,有人提出了一种在生物滤池之后安装了气体分离膜组件的集成生物反应器系统,用于苯乙烯处理。苯乙烯得到了有效处理,平均苯乙烯流出物浓度保持在50 mg m(-3)以下,并且当生物过滤柱面对波动的负荷时,总去除效率达到96%以上。集成生物反应器系统的最大消除能力为93.8 g m(-3)h(-1),高于仅使用生物过滤柱获得的消除能力。这两个过程(微生物和化学过程)的结合导致更有效地消除苯乙烯并缓冲了波动的负荷。本研究还研究了影响气体膜分离,集成生物反应器中微生物特性和膜污染的因素。 (C)2012 Elsevier Ltd.保留所有权利。

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