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A Novel Fixed Fibre Biofilm Membrane Process for On-Site Greywater Reclamation Requiring No Fouling Control

机译:无需结垢控制的现场灰水开垦的新型固定纤维生物膜膜工艺

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摘要

On-site greywater treatment and reuse in urban areas bears the potential to reduce huge quantities of wastewater and lower freshwater shortages. Until now dissemination of small, single household applications has been rather limited as simple and high quality water producing, but also cost-effective treatment units have not been developed so far. This paper proposes a new process, based on a concurrently working hollow-fibre membrane as fixed biofilm support and filtration device. Bioreactor characteristics, influence of different aeration rates, membrane flux development, as well as structure and composition of biofilm were monitored to evaluate the performance of the tested pilot unit. The introduced process achieved international water reuse guidelines, worked soundly and could, compared to conventional micro MBR, significantly reduce energy demand (<1.4kWhm(-3)). Fouling control by air scouring and chemical cleaning was not required once flux had stabilized. The biofilm analysis showed a porous, spongy-like structure. Microbiological investigation revealed a community of sheathed bacteria and nematodes that could play an important role in the flux stabilisation effect. In general, the study confirmed the suitability of the presented process for greywater treatment and provides valuable design data for future optimization and systematic analysis. Biotechnol. Bioeng. 2015;112: 484-493. (c) 2014 Wiley Periodicals, Inc.
机译:在城市地区进行现场灰水处理和再利用具有减少大量废水和减少淡水短缺的潜力。到目前为止,由于简单,高质量的水生产,小型单户家庭应用的传播一直受到限制,但迄今为止尚未开发出具有成本效益的处理装置。本文提出了一种同时工作的中空纤维膜作为固定生物膜支撑和过滤装置的新工艺。监测生物反应器的特性,不同通气速率的影响,膜通量的发展以及生物膜的结构和组成,以评估测试中试单元的性能。与传统的微型MBR相比,引入的工艺达到了国际水再利用指南,运转良好,并且可以显着降低能源需求(<1.4kWhm(-3))。助焊剂稳定后,就无需通过空气洗涤和化学清洁来控制结垢。生物膜分析显示出多孔的海绵状结构。微生物学调查显示,有鞘细菌和线虫群落可能在通量稳定作用中起重要作用。总的来说,该研究证实了所提出的方法适用于中水处理,并为将来的优化和系统分析提供了有价值的设计数据。生物技术。生恩2015; 112:484-493。 (c)2014年威利期刊有限公司

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