首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A novel algal biofilm membrane photobioreactor for attached microalgae growth and nutrients removal from secondary effluent
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A novel algal biofilm membrane photobioreactor for attached microalgae growth and nutrients removal from secondary effluent

机译:一种新型的藻类生物膜膜光生物反应器,用于附着的微藻生长和次级废水中的营养去除

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In this study, a novel algal biofilm membrane photobioreactor (BMPBR) equipped with solid carriers and submerged membrane module was developed for attached growth of Chlorella vulgaris and secondary effluent treatment. The volumetric microalgae production achieved in BMPBR was 0.072 g L-1 d(-1), which was 1.44-fold larger than that in suspended growth membrane photobioreactor (MPBR). Furthermore, 72.4% of the total produced algal biomass was immobilized as algal biofilm in BMPBR. Advanced nutrients removal from secondary effluent was achieved both in BMPBR and MPBR, with average reduction of about 85% for PO43 -P in the stable stage. Additionally, BMPBR showed better nitrogen removal performance than MPBR due to its higher algal biomass productivity. Moreover, with the filtration effect of the submerged membrane module in the reactor, suspended microalgae could be completely isolated from the effluent and a low average SS concentration of 0.28 mg L-1 was achieved in the effluent of BMPBR. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在这项研究中,新型藻类生物膜膜光生物反应器(BMPBR)配备了固体载体和淹没的膜模块被开发为小球藻的附着生长和二级污水处理。 BMPBR中实现的体积微藻产量为0.072 g L-1 d(-1),比悬浮生长膜光生物反应器(MPBR)高1.44倍。此外,将总产生的藻类生物质的72.4%固定为BMPBR中的藻类生物膜。在BMPBR和MPBR中都实现了从二级废水中去除高级养分,在稳定阶段,PO43 -P平均减少了约85%。此外,由于BMPBR具有更高的藻类生物量生产率,因此其脱氮性能优于MPBR。此外,利用反应器中浸没式膜组件的过滤作用,可以从废水中完全分离出悬浮的微藻类,并且BMPBR废水中的平均SS浓度低至0.28 mg L-1。 (C)2014 Elsevier Ltd.保留所有权利。

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