首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Influence of light intensity and tannery wastewater concentration on biomass production and nutrient removal by microalgae Scenedesmus sp.
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Influence of light intensity and tannery wastewater concentration on biomass production and nutrient removal by microalgae Scenedesmus sp.

机译:光强度和鞣制废水浓度对微藻肌菌SP的生物质生产和营养去除的影响。

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Due to the absorption capacity of nutrients by microalgae, their uses for industrial wastewater treatment have shown increasing interest in research. Tannery wastewaters have high organic content and are rich in nitrogenous compounds which are essential for microalgae cultivation. Thus, the aim of this study was to use tannery wastewater as alternative cultivation medium for microalgae biomass production aiming to treat this effluent. Biomass production and removal of ammoniacal nitrogen, phosphorus and chemical oxygen demand by the microalgae Scenedesmus sp., cultivated in tannery wastewater, was studied under different wastewater concentrations (between 20% and 100%), light intensity (between 80 and 200 mu mol photons m(-2) s(-1)) at temperature of 25 degrees C and constant aeration. The results showed that the adaptation of microalgae for this nutrient source was effective. The cultivation of Scenedesmus sp. showed maximum biomass concentration (0.90 g L-1) and maximum removal of ammoniacal nitrogen (85.63%), phosphorus (96.78%) and COD (80.33%) at a tannery wastewater of 88.4% and light intensity of 182.5 mu mol photons m(-2) s(-1) (C) 2017 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:由于微藻营养物的吸收能力,它们对工业废水处理的用途表明了对研究的兴趣。 Tannery废水具有高有机含量,富含含氮化合物,这对于微藻培养至关重要。因此,本研究的目的是使用Tannery废水作为替代培养介质,用于微藻生物量生产,旨在治疗这种流出物。 Microalgae Scenedesmus SP的生物质生产和除去氨氮,磷和化学需求,在Tannery废水中培养,在不同的废水浓度下(20%至100%),光强度(在80到200摩尔光子之间)进行研究M(-2)S(-1))温度为25℃和恒定通气。结果表明,微藻对这种营养素源的适应是有效的。 Scenedesmus sp的培养。显示最大的生物质浓度(0.90g L-1)和最大地除去氨氮(85.63%),磷(96.78%)和鳕鱼(96.78%)和COD(80.33%),在88.4%,光强度为182.5μmmol光子m( -2)S(-1)(c)2017化学工程制度。 elsevier b.v出版。保留所有权利。

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