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Coupling of Immobilized Photosynthetic Bacteria with a Graphene Oxides/PSF Composite Membrane for Textile Wastewater Treatment: Biodegradation Performance and Membrane Anti-Fouling Behavior

机译:固定的光合细菌与石墨烯氧化物/ PSF复合膜进行纺织废水处理的耦合:生物降解性能和膜防污行为

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摘要

The membrane bioreactor (MBR), as one of the promising technologies, has been widely applied for treatments of wastewater. However, serious membrane fouling and low microbial activity have been reported as major problems hindering the development of the MBR. To overcome these drawbacks, we intend to improve the MBR process in the view of membrane surface modification and efficient granular bacteria cultivation. In the present study, immobilized photosynthetic bacteria integration with graphene oxide (GO)/polysulfone (PSF) composite membrane separation (IPMBR) was first applied for textile wastewater treatment. Due to the high activity of immobilized cells, the IPMBR system exhibited higher efficiency on the removal of color, ammonia–nitrogen, and chemical oxygen demand than the conventional MBR system. In comparison with a pure PSF membrane, GO/PSF composite membrane presented the higher hydrophilicity (water contact angles of 62.9°) and more attractive permeability (178.5 L/m2h) by reducing the adhesion of hydrophobic foulants. During the whole operation, the immobilized photobioreactor exhibited approximately seven times higher membrane permeability that that of the conventional MBR. Meanwhile, the effect of the structure and character of immobilized photosynthetic bacteria on the membrane fouling reduction was investigated in detail. The change of extracellular polymeric substance concentration, settleability and particle size of flocs was very beneficial to alleviate membrane fouling. As a result, this research will open a new avenue for developing efficient and anti-fouling MBR technology in the future.
机译:作为有前途的技术之一,膜生物反应器(MBR)已被广泛应用于废水处理。然而,据报道,严重的膜污垢和低微生物活性作为阻碍MBR发育的主要问题。为了克服这些缺点,我们打算在膜表面改性和有效的粒状细菌培养的视野中改善MBR过程。在本研究中,首先应用与石墨烯氧化物(GO)/聚砜(PSF)复合膜分离(IPMBR)的固定的光合细菌整合纺织废水处理。由于固定化细胞的高活性,IPMBR系统对去除颜色,氨 - 氮和化学需氧量的效率高于传统的MBR系统。与纯PSF膜相比,GO / PSF复合膜呈现较高的亲水性(水接触角为62.9°),通过降低疏水性污垢的粘附性来呈现更高的亲水性(水接触角为62.9°)和更吸引人的渗透率(178.5L / m 2H)。在整个操作期间,固定的光生物生物反应器表现出常规MBR的膜渗透率高约7倍。同时,详细研究了固定化的光合细菌对膜污染的结构和特征的影响。细胞外聚合物物质浓度,沉积物和颗粒尺寸的絮凝物的变化非常有利于缓解膜污垢。因此,本研究将在未来开辟新的途径,以便将来开发高效和防污染MBR技术。

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