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首页> 外文期刊>Current Pollution Reports >Osmotic Membrane Bioreactor and Its Hybrid Systems for Wastewater Reuse and Resource Recovery: Advances, Challenges, and Future Directions
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Osmotic Membrane Bioreactor and Its Hybrid Systems for Wastewater Reuse and Resource Recovery: Advances, Challenges, and Future Directions

机译:用于废水再利用和资源恢复的渗透膜生物反应器及其混合系统:进展,挑战和未来方向

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摘要

Abstract Osmotic membrane bioreactor (OMBR), which integrates forward osmosis (FO) with biological treatment process, has been recently developed to advance wastewater treatment and reuse. During OMBR operation, driven by osmotic pressure gradient, biologically treated water transports from the mixed liquor, through a semi-permeable FO membrane, into a highly concentrated draw solution. Compared to conventional MBR, OMBR has several advantages, including better product water quality, lower fouling propensity, and higher fouling reversibility. OMBR can be operated in the osmotic dilution mode when the draw solution, such as liquid fertilizers or seawater, can be reused or discharged directly. In most cases, OMBR is integrated with an additional process, commonly including reverse osmosis, membrane distillation, and electrodialysis, to form hybrid systems for sustainably reconcentrating draw solutions and producing clean water for reuse. In addition, several membrane processes, such as microfiltration, ultrafiltration, and electrodialysis, are combined with OMBR to address its inherent issue, salinity build-up in the bioreactor, and achieve resource (e.g., nutrients and energy) recovery. This review aims to provide a comprehensive understanding on the performance of OMBR and its hybrid systems in wastewater reuse and resource recovery. OMBR analogs and their performance are also systematically introduced. Key technical challenges and their potential solutions to the further development of OMBR and its hybrid systems are highlighted. This review sheds light on future research for the further development of OMBR and its hybrid systems.
机译:摘要渗透膜生物反应器(OMBR),其与生物处理过程中的前渗透(FO)集成,最近已开发出来推进废水处理和再利用。在OMBR操作期间,由渗透压梯度驱动,通过半透明的FO膜从混合液中从混合液中运输到高度浓缩的拉伸溶液中。与常规MBR相比,OMBR具有几个优点,包括更好的产品水质,较低的污垢倾向和更高的污垢可逆性。当液体肥料或海水等抽水溶液(如液体肥料或海水)直接重复使用或排出时,OMBR可以在渗透稀释模式下操作。在大多数情况下,OMBR与额外的方法集成在一起,通常包括反渗透,膜蒸馏和电渗析,以形成用于可持续重新融合的液化溶液的混合系统,并生产用于再利用的清水。此外,诸如微滤,超滤和电渗析的几种膜方法与OMBR结合以解决其固有问题,盐度在生物反应器中施加,并且实现资源(例如,营养和能量)回收。本综述旨在全面地了解OMBR及其混合系统在废水再利用和资源恢复中的性能。 OMBR类似物及其性能也得到系统地介绍。重点技术挑战及其对OMBR进一步发展的潜在解决方案及其混合系统。这篇评论阐明了未来的研究进一步开发OMBR及其混合系统的研究。

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  • 来源
    《Current Pollution Reports》 |2018年第1期|共12页
  • 作者单位

    Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation College of Resources and Environmental Sciences China Agricultural University;

    Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation College of Resources and Environmental Sciences China Agricultural University;

    Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation College of Resources and Environmental Sciences China Agricultural University;

    Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation College of Resources and Environmental Sciences China Agricultural University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学、安全科学;
  • 关键词

    Osmotic membrane bioreactor; Forward osmosis; Salinity build-up; Wastewater reuse; Resource recovery;

    机译:渗透膜生物反应器;前进渗透;盐度积聚;废水再利用;资源恢复;

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