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Anaerobic digested effluent phycoremediation by microalgae co-culture and harvesting by Moringa oleifera as natural coagulant

机译:微藻共培养的厌氧消化污水植物化与Moringa Oleifera作为天然凝固剂的收获

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In this study, a microalgal co-culture of Chlorella sp. and Scenedesmus sp. was cultivated in a photo-bioreactor (PBR). The microalgal biomass was then harvested by locally available and inexpensive natural coagulants, Moringa oleifera seed powder. Overall microalgal growth rate, biomass productivity, and nutrient efficiency have been analyzed. The linear correlation among the ammonia-N (NH3-N), ortho-phosphate (PO43), and microalgae concentration demonstrated that nitrogen and phosphorus removal had been dominated by microalgal assimilation. The experimental results suggested that the anaerobic reactor effluent was a useful substrate for microalgae growth. The maximum biomass productivity and growth rate was 0.12 g/L/d and 0.50 day(-1), respectively, and almost 89 +/- 1% of the nutrient was removed within 5 days. Besides, Moringa oleifera seed powder showed a very high microalgal biomass harvesting efficiency of 85%. Hence, it can be concluded that this cost-effective microalgae cultivation and harvesting method could tailor a promising phycoremediation application worldwide. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在这项研究中,小球藻的微藻共培养。和scenedesmus sp。在光生物反应器(PBR)中栽培。然后通过局部可用和廉价的天然凝结剂,Moringa Oleifera粉末收获微藻生物量。已经分析了整体微藻生长速率,生物质生产率和营养效率。氨-N(NH3-N),邻磷酸酯(PO43)和微藻浓度的线性相关性证明了氮和磷去除是通过微藻同化的主导。实验结果表明,厌氧反应器流出物是用于微藻生长的有用底物。最大的生物质生产率和生长速率分别为0.12g / L / d和0.50天(-1),并且在5天内除去营养物的几乎89 +/- 1%。此外,Moringa Oleifera种子粉末显示出非常高的微藻生物质收获效率为85%。因此,可以得出结论,这种具有成本效益的微藻培养和收获方法可以在全球范围内定制有前途的植物修复应用。 (c)2021 elestvier有限公司保留所有权利。

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