首页> 外文期刊>Journal of water chemistry and technology >Pressure Assisted Application of Tubular Nanofiber Forward Osmosis Membrane in Membrane Bioreactor Coupled with Reverse Osmosis System
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Pressure Assisted Application of Tubular Nanofiber Forward Osmosis Membrane in Membrane Bioreactor Coupled with Reverse Osmosis System

机译:管状纳米纤维前渗透膜在膜生物反应器中的压力辅助应用逆转渗透系统

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摘要

Membrane bioreactors (MBR) with osmotic pressure driven membranes have significant advantages over bioreactors operated with pressure driven membranes. Since no pressure is applied to the membrane, except the concentrate circulation, osmotic membranes are less prone to fouling. Membrane fouling is an important limiting factor in MBRs, resulting in a frequent plantservice and high operating costs. In addition, other issues such as concentrate management and increased demands for reuse of treated wastewater have led to research of new processes such as the use of osmotic membranes in MBRs. In this study, tubular electrospun nanofiber (TuEN) membrane was coated with polyamide layer (PA) and the tubular nanofiber forward osmosis (TuNFO) membrane was manufactured. It operated submerged in a laboratory scale MBR under application of vacuum and concentrate circulation at the same time. The output of MBR was a feed for the reverse osmosis (RO) system. The RO-concentrate recirculated along the submerged membrane. To achieve an increased water flux and low salt flux in the MBR, the vacuum pressure was applied to the submerged membrane by operating the vacuum pump. The MBR system operated for sixteen months without washing and cleaning, and relatively better water fluxes were obtained (averaged 7.35 L m(-2) h(-1)) compared to forward osmosis membrane bioreactors. The overall system (MBR + RO) exhibited high removal efficiencies for organic carbon (99%), total nitrogen (TN) (70.8%), and total phosphorus (TP) (99.8%). With the concentrate management, the waste discharge of the entire system was minimized. The main point to be investigated more detailed in further studies is the relationship between the membrane structure and the operation mode. The pressure assisted circulation of saline concentrate without mixing with low concentrated feed through a membrane with suitable structure such as TuNFO membrane exhibits an important potential in MBR applications.
机译:具有渗透压驱动膜的膜生物反应器(MBR)对具有压力驱动膜操作的生物反应器具有显着的优点。由于除了浓缩循环外,没有将压力施加到膜外,渗透膜不易污垢。膜污染是MBRS中的一个重要限制因素,导致频繁的植物服务和高运营成本。此外,其他问题如集中管理和增加对处理废水的再利用需求导致对新方法的研究,例如在MBR中使用渗透膜。在该研究中,用聚酰胺层(PA)涂覆管状电纺纳米纤维(屯)膜,并制造管状纳米纤维正常渗透(TUNFO)膜。它在实验室规模MBR中浸没在施用真空并同时浓缩血液。 MBR的输出是反渗透(RO)系统的饲料。沿浸没膜再循环的RO-浓缩物。为了在MBR中实现增加的水通量和低盐通量,通过操作真空泵将真空压力施加到浸没膜上。与前期渗透膜生物反应器相比,获得了在不洗涤和清洗的14个月内操作的MBR系统,且相对更好的水通量(平均为7.35μm(-2)H(-1))。整个系统(MBR + RO)表现出用于有机碳(& 99%),总氮(TN)(70.8%)和总磷(TP)的高除去效率(99.8%)。随着集中的管理,整个系统的废物排放最小化。在进一步研究中更详细地研究的主要点是膜结构与操作模式之间的关系。盐水浓缩液的压力辅助循环而不通过具有合适结构如Tunfo膜的膜的低浓缩饲料混合在MBR应用中具有重要潜力。

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