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Hybrid SBR–FO system for wastewater treatment and reuse: Operation, fouling and cleaning

机译:用于废水处理和再利用的混合SBR-FO系统:操作,污垢和清洁

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摘要

Forward osmosis (FO) is a novel membrane separation process that potentially can be used as an energy-saving alternative to conventional membrane processes. A hybrid sequential batch reactor (SBR)–FO process was explored. In this system, a plate and frame FO cell including two flat-sheet FO membranes was submerged in a bioreactor treating synthetic domestic wastewater. The dissolved organic carbon (DOC) removal efficiency of the system was 98.55%. Total nitrogen removal was 62.4%, with nitrate, nitrite and ammonium removals of 58.4%, 96.2% and 88.4%, respectively. Phosphate removal was almost 100%. The 15-hour cycle average water flux of a virgin membrane with air scouring was 2.95 L/m2·h− 1. Air scouring can help to remove loose foulants from the membrane active layer, thus helping to recover up to 89.5% of the original flux. Chemical cleaning of the fouled active layer of the FO membrane was not as effective as air scouring. Natural organic matter (NOM) characterization methods (liquid chromatography–organic carbon detection (LC–OCD) and 3-D fluorescence excitation emission matrix (FEEM)) show that the FO membrane has a very good performance in rejecting biopolymers, humics and building blocks, but a limited ability in rejecting low molecular weight neutrals. Transparent exopolymer particles (TEP) and other biopolymers might be associated with fouling of the membrane on the support layer. A 1% sodium hypochlorite (NaOCl) cleaning solution was proved to be effective for removing the foulants from the support layer and recovering the original flux.
机译:前渗透(Fo)是一种新型膜分离过程,其可能可用作传统膜过程的节能替代品。探索了杂交序列批量反应器(SBR)-FO过程。在该系统中,将包括两个平板膜的板和框架细胞浸没在治疗合成国内废水的生物反应器中。该系统的溶解有机碳(DOC)去除效率为98.55%。总氮除去为62.4%,分别为硝酸盐,亚硝酸盐和58.4%,96.2%和88.4%。磷酸盐去除几乎100%。具有空气冲洗的原始膜的15小时循环平均水通量为2.95升/m2·h- 1.空气冲洗有助于从膜活性层中除去松散的污垢,从而有助于恢复最高89.5%的原件助焊剂。 FO膜的污垢活性层的化学清洁并不像空气冲洗一样有效。天然有机物质(NOM)表征方法(液相色谱 - 有机碳检测(LC-OCD)和3-D荧光激发发射基质(FEEM))表明,FO膜在拒绝生物聚合物,畜牧业和建筑物方面具有非常好的性能,但拒绝低分子量中性的能力有限。透明的外聚物颗粒(TEP)和其他生物聚合物可能与支撑层上的膜的污垢相关。证明了1%次氯酸钠(NaOCl)清洁溶液可有效地从支撑层中除去污垢并恢复原始通量。

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