首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Adjustment of the Operational Parameters of an Unconventional Integrated and Illuminated Internally Photobioreactor (ILI-PBR) for the Batch Autotrophic Cultivation of the Chlorella minutissima, Using the Taguchi Method
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Adjustment of the Operational Parameters of an Unconventional Integrated and Illuminated Internally Photobioreactor (ILI-PBR) for the Batch Autotrophic Cultivation of the Chlorella minutissima, Using the Taguchi Method

机译:使用TAGUCHI方法调整小肠球菌培养的非传统集成和闪光内部光生物反应器(ILI-PBR)的操作参数。

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Microalgae crops targeting biotechnological applications are conducted in photobioreactors, which allow the adjustment and control of parameters of luminosity, agitation and mixing in the cultivation medium to promote better cell growth and accumulation of metabolites. In this sense, the present work used the Taguchi method to find the best adjustment of the operational parameters of an unconventional photobioreactor denominated internally illuminated integrated photobioreactor (ILI-PBR) with LED light aiming at elevating the biomass concentration, volumetric biomass productivity, and volumetric lipid productivity of Chlorella minutissima microalgae cultivated under autotrophic regime. The effects of the factors were evaluated: illumination (blue, white and red); photoperiod (12 h light:12 h dark, 1 h light:1 h dark, and 24 h clear:0 h dark); aeration (0, 3 vvm, 0.4 vvm, and 0.5 vvm); and recirculation flow rate of cultivation medium (5 L min(-1), 6.5 L min(-1), and 9 L min(-1)) on the variable responses: biomass concentration, biomass volumetric productivity, lipid content, and volumetric lipid productivity. The use of the Taguchi method allowed the increase of biomass concentration, volumetric biomass productivity, and volumetric lipid productivity in the biomass of Chlorella minutissimain 8.6%, 42%, and 143%, respectively, with the adjustment of the operational parameters of the photobioreactor used.
机译:靶向生物技术应用的微藻作物在光生物反应器中进行,其允许调节和控制培养基中的亮度,搅拌和混合的参数,以促进代谢物的更好的细胞生长和积累。从这个意义上讲,目前的工作用来找到了具有基于内部照明集成光生物反应器(ILI-PBR)的非传统光生物反应器的操作参数的最佳调整,所述LED光针对升高生物质浓度,体积生物量生产率和体积升高血小霉素在自养政题中培养的小黄细胞微藻。评估因素的影响:照明(蓝色,白色和红色);光周期(12小时光:12小时黑色,1小时光:1 H暗,24小时透明:0 H黑色);曝气(0,3 VVM,0.4 VVM和0.5 VVM);培养基的再循环流速(5 L min(-1),6.5μm(-1)和9μmmm(-1)),在变量响应:生物质浓度,生物质体积生产力,脂质含量和体积脂质生产率。使用TAGUCHI方法的使用允许增加生物量浓度,体积生物质生产率和体积脂质生产率,分别调整所用光生物反应器的操作参数的调节。

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