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Effect of static magnetic field on the oxygen production of Scenedesmus obliquus cultivated in municipal wastewater

机译:静磁场对城市污水中斜生观叶藻产氧的影响

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Algal-bacterial symbiotic system, with biological synergism of physiological functions of both algae and bacteria, has been proposed for cultivation of microalgae in municipal wastewater for biomass production and wastewater treatment. The algal-bacterial symbiotic system can enhance dissolved oxygen production which enhances bacterial growth and catabolism of pollutants in wastewater. Therefore, the oxygen production efficiency of microalgae in algal-bacterial systems is considered as the key factor influencing the wastewater treatment efficiency. In the present study, we have proposed a novel approach which uses static magnetic field to enhance algal growth and oxygen production rate with low operational cost and non-toxic secondary pollution. The performance of oxygen production with the magnetic field was evaluated using Scenedesmus obliquus grown in municipal wastewater and was calculated based on the change in dissolved oxygen concentration. Results indicated that magnetic treatment stimulates both algal growth and oxygen production. Application of 1000 GS of magnetic field once at logarithmic growth phase for 0.5 h increased the chlorophyll-a content by 11.5% over the control after 6 days of growth. In addition, magnetization enhanced the oxygen production rate by 24.6% over the control. Results of the study confirmed that application of a proper magnetic field could reduce the energy consumption required for aeration during the degradation of organic matter in municipal wastewater in algal-bacterial symbiotic systems. (c) 2015 Elsevier Ltd. All rights reserved.
机译:已经提出了藻-细菌共生系统,其具有藻类和细菌的生理功能的生物协同作用,用于在城市废水中培养微藻,用于生物质生产和废水处理。藻-细菌共生系统可以提高溶解氧的产生,从而增加细菌的生长和废水中污染物的分解代谢。因此,藻类-细菌系统中微藻的产氧效率被认为是影响废水处理效率的关键因素。在本研究中,我们提出了一种新颖的方法,该方法利用静磁场来提高藻类的生长和氧气的产生速率,同时具有较低的运营成本和无毒的二次污染。使用在市政废水中生长的斜生栅藻(Scendesmus obliquus)评估磁场产生氧气的性能,并根据溶解氧浓度的变化进行计算。结果表明,磁处理可刺激藻类生长和氧气产生。在生长6天后,在对数生长期一次应用1000 GS磁场0.5 h,使叶绿素a含量比对照增加11.5%。另外,磁化使氧气产生率比对照提高了24.6%。研究结果证实,在藻-细菌共生系统中,施加适当的磁场可以减少城市污水中有机物降解过程中曝气所需的能量消耗。 (c)2015 Elsevier Ltd.保留所有权利。

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