首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Comparison of Chlorella vulgaris biomass productivity cultivated in biofilm and suspension from the aspect of light transmission and microalgae affinity to carbon dioxide
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Comparison of Chlorella vulgaris biomass productivity cultivated in biofilm and suspension from the aspect of light transmission and microalgae affinity to carbon dioxide

机译:从透光率和微藻对二氧化碳的亲和力方面比较生物膜和悬浮液中小球藻的生物量生产力

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To investigate light transmission and cells affinity to CO2, Chlorellavulgaris was attached to microfiltration membrane that laid on the solidified BG11 medium compared to that in suspended cultivation mode in this study. The results showed that C. vulgaris showed a 30.4% higher biomass production (103 g m(-2)) in attached than in suspend system. The upper layer of biofilm with a thickness of 41.31 mu m (the corresponding areal density of 40 g m(-2)) was effectively illuminated under light intensity of 120 mu mol m(-2) s(-1) and more than 40% of the microalgal cells were in light even the areal density was high to 100 g m(-2). While only 2.5% of the cells were effectively illuminated in the suspended cultivation system. Furthermore, microalgae cells in biofilm showed a higher affinity to CO2 compared with that in suspension, and CO2 saturation point of microalgae cells in biofilm was 1.5% but 4.5% in suspension. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了研究光传输和细胞对CO2的亲和力,与本研究中的悬浮培养模式相比,将小球藻附着在凝固在BG11培养基上的微滤膜上。结果表明,比起悬浮系统,普通钩端螺旋体显示出30.4%的生物量高产(103 g m(-2))。生物膜的上层厚度为41.31μm(相应的面密度为40 gm(-2))在120μmol m(-2)s(-1)的光强度下有效地被照射,且发光率超过40%即使面积密度高到100 gm(-2),微藻细胞的数量也很少。在悬浮培养系统中,只有2.5%的细胞被有效照明。此外,与悬浮液相比,生物膜中微藻细胞对CO2的亲和力更高,生物膜中微藻细胞的CO2饱和点为1.5%,而在悬浮液中为4.5%。 (C)2016 Elsevier Ltd.保留所有权利。

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