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Combining urban wastewater treatment with biohydrogen production: An integrated microalgae-based approach

机译:将城市废水处理与生物氢生产相结合:基于微藻的综合方法

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摘要

The aim of the present work was the simultaneous treatment of urban wastewater using microalgae and the energetic valorization of the obtained biomass. Chlorella vulgaris (Cv), Scenedesmus obliquus (Sc) and a naturally occurring algal Consortium C (ConsC) were grown in an urban wastewater. The nutrient removals were quite high and the treated water fits the legislation (PT Dec-Lei 236/98) in what concerns the parameters analysed (N, P, COD). After nutrient depletion the microalgae remained two more weeks in the photobioreactor (PBR) under nutritional stress conditions, to induce sugar accumulation (22–43%). The stressed biomass was converted into biohydrogen (bioH2), a clean energy carrier, through dark fermentation by a strain of the bacteria Enterobacter aerogenes. The fermentation kinetics were monitored and fitted to a modified Gompertz model. The highest bioH2 production yield was obtained for S. obliquus (56.8 mL H2/gVS) which was very similar when using the same algae grown in synthetic media.
机译:本工作的目的是使用微藻类同时处理城市废水,并对获得的生物质进行能量增值。在城市污水中生长了小球藻(Cv),斜生场景藻(Scenedesmus obliquus(Sc)和天然存在的藻类C(ConsC)。营养成分的去除率很高,并且处理过的水符合有关分析参数(N,P,COD)的规定(PT Dec-Lei 236/98)。营养物质耗尽后,在营养压力条件下,微藻在光生物反应器(PBR)中再保留两周,以诱导糖分积累(22–43%)。受到压力的生物质通过产气肠杆菌细菌的暗发酵,转化为生物氢(bioH2),一种清洁的能源载体。监测发酵动力学并将其拟合到改进的Gompertz模型。斜生链球菌获得最高的bioH2产量(56.8 mL H2 / gVS),与使用合成培养基中生长的相同藻类非常相似。

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