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混合渗透膜生物反应器中营养物-能量-水-溶质回收的综合评述。

A comprehensive review of nutrient-energy-water-solute recovery by hybrid osmotic membrane bioreactors.

机构信息

School of Environment, Nanjing Normal University, Wenyuan Road 1, Nanjing 210023, China.

Department of Energy, Environmental and Chemical Engineering, Washington University in St. Louis, St. Louis, MO 63130, USA.

出版信息

Bioresour Technol. 2021 Jan;320(Pt A):124300. doi: 10.1016/j.biortech.2020.124300. Epub 2020 Oct 23.

Abstract

Hybrid osmotic membrane bioreactor (OMBR) takes advantage of the cooperation of varying biological or desalination processes and can achieve NEWS (nutrient-energy-water-solute) recovery from wastewater. However, a lack of universal parameters hinders our understanding. Herein, system configurations and new parameters are systematically investigated to help better evaluate recovery performance. High-quality water can be produced in reverse osmosis/membrane distillation-based OMBRs, but high operation cost limits their application. Although bioelectrochemical system (BES)/electrodialysis-based OMBRs can effectively achieve solute recovery, operation parameters should be optimized. Nutrients can be recovered from various wastewater by porous membrane-based OMBRs, but additional processes increase operation cost. Electricity recovery can be achieved in BES-based OMBRs, but energy balances are negative. Although anaerobic OMBRs are energy-efficient, salinity accumulation limits methane productions. Additional efforts must be made to alleviate membrane fouling, control salinity accumulation, optimize recovery efficiency, and reduce operation cost. This review will accelerate hybrid OMBR development for real-world applications.

摘要

混合渗透膜生物反应器(OMBR)利用不同生物或脱盐过程的协同作用,可以从废水中实现 NEWS(营养物质-能量-水-溶质)回收。然而,缺乏通用参数阻碍了我们对其的理解。在此,系统配置和新参数被系统地研究,以帮助更好地评估回收性能。基于反渗透/膜蒸馏的 OMBR 可以生产高质量的水,但高运行成本限制了其应用。虽然基于生物电化学系统(BES)/电渗析的 OMBR 可以有效地实现溶质回收,但操作参数仍需优化。多孔膜基 OMBR 可从各种废水中回收营养物质,但增加了操作成本。基于 BES 的 OMBR 可实现电能回收,但能量平衡为负。虽然厌氧 OMBR 具有节能优势,但盐度积累限制了甲烷的产生。必须进一步努力缓解膜污染、控制盐度积累、优化回收效率和降低运行成本。本综述将加速混合 OMBR 在实际应用中的发展。

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