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新型渗透膜生物反应器-反渗透系统的磷和水回收。

Phosphorus and water recovery by a novel osmotic membrane bioreactor-reverse osmosis system.

机构信息

Strategic Water Infrastructure Laboratory, School of Civil, Mining and Environmental Engineering, University of Wollongong, Wollongong, NSW 2522, Australia.

Strategic Water Infrastructure Laboratory, School of Chemistry, University of Wollongong, Wollongong, NSW 2522, Australia.

出版信息

Bioresour Technol. 2016 Jan;200:297-304. doi: 10.1016/j.biortech.2015.10.029. Epub 2015 Oct 21.

Abstract

An osmotic membrane bioreactor-reverse osmosis (OMBR-RO) hybrid system integrated with periodic microfiltration (MF) extraction was evaluated for simultaneous phosphorus and clean water recovery from raw sewage. In this hybrid system, the forward osmosis membrane effectively retained inorganic salts and phosphate in the bioreactor, while the MF membrane periodically bled them out for phosphorus recovery with pH adjustment. The RO process was used for draw solute recovery and clean water production. Results show that phosphorus recuperation from the MF permeate was most effective when the solution pH was adjusted to 10, whereby the recovered precipitate contained 15-20% (wt/wt) of phosphorus. Periodic MF extraction also limited salinity build-up in the bioreactor, resulting in a stable biological performance and an increase in water flux during OMBR operation. Despite the build-up of organic matter and ammonia in the draw solution, OMBR-RO allowed for the recovery of high quality reused water.

摘要

一种渗透膜生物反应器-反渗透(OMBR-RO)混合系统与周期性微滤(MF)提取相结合,用于从原污水中同时回收磷和清洁水。在该混合系统中,正向渗透膜有效地将生物反应器中的无机盐和磷酸盐保留在其中,而 MF 膜则周期性地将其抽出,并用 pH 调节进行磷回收。RO 工艺用于回收汲取液和生产清洁水。结果表明,当溶液 pH 值调节至 10 时,从 MF 渗透物中回收磷的效果最佳,此时回收的沉淀物中含有 15-20%(wt/wt)的磷。周期性 MF 提取还限制了生物反应器中盐的积累,从而使 OMBR 运行中的生物性能稳定,并增加了水通量。尽管汲取液中有机物和氨的积累,OMBR-RO 仍能回收高质量的再用水。

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