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Nitrogen and phosphorus removal from tertiary wastewater in an osmotic membrane photobioreactor

机译:渗透膜光生物反应器中的氮和磷从三级废水中除去

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An osmotic membrane photobioreactor (OMPBR) was designed and operated for 162 days for nitrogen and phosphorus removal from wastewater using Chlorella vulgaris. The removal efficiency for NH+4-N, NO3-N and PO43 -P reached as high as 95%, 53% and 89%, whereas the maximum removal rates were 3.41 mg/L-day, 0.20 mg/L-day and 0.8 mg/L-day, respectively. The microalgae exhibited high tendency to aggregate and attached to the bioreactor and membrane surfaces, and total biomass accumulation in the OMPBR was over 5 g/L. Salt accumulation and biofouling had adverse effects on membrane filtration, but the performance could be recovered through periodic backwashing of the membranes. Extracellular polymeric substances characterization indicated higher fraction of polysaccharides as compared to proteins. The biomass in the OMPBR accumulated higher levels of carbohydrates and chlorophyll. These results indicate the suitability of OMPBR in wastewater treatment and in high-density microalgae cultivation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:设计并操作渗透膜光生物反应器(OMPBR),并使用小球藻的废水从废水中除去氮气和磷。 NH + 4-N,NO3-N和PO43-P的去除效率高达95%,53%和89%,而最高的去除率为3.41 mg / L日,0.20 mg / L日和分别为0.8毫克/月。微藻表现出高倾向于聚集和附着在生物反应器和膜表面上,并且OMBBR中的总生物质积累量超过5克/升。盐积聚和生物污染对膜过滤产生不利影响,但可以通过膜的周期性反洗来回收性能。与蛋白质相比,细胞外聚合物物质表征表明较高的多糖。 OMBBR中的生物质积累了较高水平的碳水化合物和叶绿素。这些结果表明OMPBR在废水处理中的适用性和高密度微藻培养。 (c)2016 Elsevier Ltd.保留所有权利。

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