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The capture and release of biomass using a high voidage fibrous filter (marked revision)

机译:使用高空隙率的纤维过滤器捕获和释放生物质(标记版本)

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This paper is concerned with the capture and subsequent release of wastewater biomass using a high voidage filter. A semi-automated experimental rig was developed where both the hydraulic response of the filter and the capture of biomass were investigated as a function of throughput and filter voidage. The hydraulic response of the clean filter was found to correlate well with the Jackson-James permeability model for gas filtration, and the hydraulic measurements give information about the average shear stresses present during the initial stages of biomass deposition. Biomass capture in the filter was achieved for low Reynolds number throughput followed by a characteristic breakthrough of particles to the effluent stream. Subsequent release of biomass and regeneration of the filter was accomplished by high intensity oscillation of the fluid in the filter, causing the re-suspension of the biomass, which could then be drained from the column. The performance of the filter is evaluated in terms of its cycle and energy efficiency, and its potential for scale-up. (c) 2005 Elsevier Ltd. All rights reserved.
机译:本文涉及使用高空隙率过滤器捕获和随后释放废水生物量。开发了一种半自动化的实验装置,其中研究了过滤器的水力响应和生物量的捕获与产量和过滤器空隙的关系。发现清洁过滤器的水力响应与气体过滤的杰克逊-詹姆斯渗透率模型具有很好的相关性,水力测量结果提供了有关生物质沉积初期存在的平均剪切应力的信息。在低雷诺数通过量的情况下,实现了过滤器中生物量的捕集,随后颗粒向废水流中突破。随后生物质的释放和过滤器的再生是通过过滤器中流体的高强度振荡来完成的,从而导致生物质的重新悬浮,然后可以将其从色谱柱中排出。过滤器的性能根据其循环和能源效率以及放大潜力进行评估。 (c)2005 Elsevier Ltd.保留所有权利。

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