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Combination of microalgae cultivation with membrane processes for the treatment of municipal wastewater

机译:微藻培养与膜工艺相结合处理市政废水

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摘要

The treatment of wastewater by microalgae cultivation has attracted more and more attention. However, the way to harvest microalgae cells from the wastewater and the treatment of the large quantity of residual solution have become critical issues. In this work, a new approach for the treatment of municipal wastewater is presented. The combination of flocculation for removing mainly microalgae and thereafter membrane filtration for chemical oxygen demand (COD) and conductivity reduction of the residual solution after flocculation is discussed. The COD concentration of the wastewater decreased from 260 to 84 mg/L after flocculation by chitosan. Five ultrafiltration(UF) membranes and two nanofiltration (NF) membranes were used for filtration to find a suitable membrane for COD and conductivity reduction. Among the five UF membranes, GR82PE showed the best performance, whose permeate flux and COD retention at 4 bar were 189.66 L/(m2·h) and 43.03%, respectively. NF membranes showed higher COD and conductivity retentions than UF membranes. The COD retention of Desal5-DK reached 98.3% at 20 bar. Lastly, the flux recovery after the filtration test of each membrane is also discussed.
机译:微藻培养对废水的处理引起了越来越多的关注。然而,从废水中收集微藻细胞的方法以及大量残留溶液的处理已成为关键问题。在这项工作中,提出了一种处理市政废水的新方法。讨论了絮凝去除主要微藻,然后进行膜过滤以满足化学需氧量(COD)和絮凝后残留溶液电导率降低的组合。壳聚糖絮凝后,废水的COD浓度从260降至84 mg / L。使用五个超滤(UF)膜和两个纳滤(NF)膜进行过滤,以找到适合降低COD和电导率的膜。在五种超滤膜中,GR82PE表现最佳,在4 bar时的渗透通量和COD保留率分别为189.66 L /(m2·h)和43.03%。 NF膜比UF膜具有更高的COD和电导率保留率。 Desal5-DK在20 bar下的COD保留率达到98.3%。最后,还讨论了各膜过滤测试后的通量回收率。

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