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首页> 外文期刊>Bioprocess and Biosystems Engineering >A comprehensive study on the effect of light quality imparted by light-emitting diodes (LEDs) on the physiological and biochemical properties of the microalgal consortia of Chlorella variabilis and Scenedesmus obliquus cultivated in dairy wastewater
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A comprehensive study on the effect of light quality imparted by light-emitting diodes (LEDs) on the physiological and biochemical properties of the microalgal consortia of Chlorella variabilis and Scenedesmus obliquus cultivated in dairy wastewater

机译:发光二极管(LED)施加轻质质量施加对乳渣栽培的小霉菌和斯明斯姆斯斜肌微藻混合的生理生化特性的综合研究

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摘要

The effect of light wavelengths on the physiological, biochemical and lutein content of the microalgal consortia Chlorella variabilis and Scenedesmus obliquus was evaluated using different light sources. Among different light treatments, cool-white fluorescent light produced the highest biomass of 673 mg L-1 with a specific growth rate of 0.75 day(-1) followed by blue (500 mg L-1; 0.73 day(-1)). The chlorophyll content was enhanced under blue light (10.7 mg L-1) followed by cool fluorescent light (9.3 mg L-1), whereas the lutein productivity was enhanced under cool fluorescent light (7.22 mg g(-1)). Protein content of the microalgal consortia was enhanced under all light treatments with the highest protein accumulation under cool-white fluorescent light (similar to 56% of dry mass) closely followed by amber light (52% of dry mass), whereas the carbohydrate content was higher under amber light (similar to 35% of dry mass). The results revealed that the consortia could grow well on diluted dairy wastewater thereby reducing the cost of algal production when compared with the use of inorganic media and a two-phase culture process utilizing cool fluorescent and amber light could be employed for maximizing algal biomass and nutrient composition with enhanced lutein production. The study also emphasizes on the economic efficiency of LED lights in terms of biomass produced based on the modest electricity consumed and the importance of using amber light for cultivating microalgae for its nutrient content which has seldom been studied.
机译:利用不同光源评估光波长对微藻聚集小球藻和Scenedesmus斜肌的生理,生化和叶黄素含量的影响。在不同的光处理中,冷白荧光灯产生673mg L-1的最高生物质,其特异性生长速率为0.75天(-1),然后是蓝色(500mg L-1; 0.73天(-1))。在蓝光(10.7mg L-1)下叶绿素含量增强,然后通过冷却荧光(9.3mg L-1),而在冷荧光下提高叶黄素生产率(7.22mg g(-1))。在凉爽的蛋白质荧光灯(类似于56%的干质量的56%)接下来的蛋白质积累的所有光处理下,微藻混合的蛋白质含量增强了蛋白质积聚,而琥珀色光(52%的干块),而碳水化合物含量在琥珀色光下更高(类似于干质量的35%)。结果表明,联盟在稀释的乳制品废水上会良好良好,从而降低了与使用无机培养基相比的藻类生产成本,并且可以使用利用凉爽的荧光和琥珀色光的两相培养过程来最大化藻类生物量和营养用增强叶黄素生产的组成。该研究还强调了基于适度消耗的适度电力产生的生物量的LED灯的经济效率,以及使用琥珀色光用于培养微藻的重要性,培养了它的营养含量,这很少研究。

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