首页> 外文会议>International Congress on Membranes and Membrane Processes (ICOM 2002) Vol.3 (Desalination Vol.146) Jul 7-12, 2002 Toulouse, France >A novel application of a submerged nanofiltration membrane bioreactor (NF MBR) for wastewater treatment
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A novel application of a submerged nanofiltration membrane bioreactor (NF MBR) for wastewater treatment

机译:浸入式纳滤膜生物反应器(NF MBR)在废水处理中的新应用

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Nanofiltration (NF) membrane technology has made rapid progress and then extended its application fields. It has obtained in particular the good results in the removal of organic and inorganic matters or microbes in the water and wastewater. To investigate the applicability and characteristics of NF membrane, the membrane bioreactor (MBR) using the cellulose acetate NF membrane was performed to treat synthetic wastewater. A hollow-fiber-type cellulose acetate membrane was chosen to get enough water productivity regardless of its biodegradability. As a result of the experiments, enough water productivity was obtained for 60 days without fatal fouling and membrane cleaning. This raised the applicability of cellulose acetate membrane to the MBR system. Electrolytes were not accumulated in the bioreactor, as its rejection was also low. This enabled the NF MBR to be operated under a low suction pressure and prevented from inhibition against microorganisms, whose activity might be deteriorated by high salt concentration. Nitrification and denitrification happened simultaneously and this might be achieved by the module configuration. The phosphorus was not removed with the loose NF membrane. According to AFM investigation, the cellulose acetate membrane after 71 days has larger voids because of the biodegradation.
机译:纳滤(NF)膜技术发展迅速,继而扩展了其应用领域。在去除水和废水中的有机和无机物或微生物方面,尤其取得了良好的效果。为了研究NF膜的适用性和特性,使用醋酸纤维素NF膜进行膜生物反应器(MBR)处理合成废水。选择中空纤维型乙酸纤维素膜以得到足够的水生产率,而不管其是否具有生物降解性。实验的结果是,在60天之内获得了足够的水生产率,而没有致命的结垢和膜清洁。这提高了乙酸纤维素膜对MBR系统的适用性。电解质未在生物反应器中积聚,因为它的排斥率也很低。这使得NF MBR可以在低吸入压力下运行,并防止了对微生物的抑制,微生物的活性可能因高盐浓度而变差。硝化和反硝化同时发生,这可以通过模块配置来实现。疏松的NF膜未除去磷。根据AFM调查,由于生物降解作用,醋酸纤维素膜在71天后具有较大的空隙。

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