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首页> 外文期刊>Biochemical Engineering Journal >A step-forward in the characterization of microalgal consortia: Microbiological and kinetic aspects
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A step-forward in the characterization of microalgal consortia: Microbiological and kinetic aspects

机译:微藻组成的表征中前进:微生物和动力学方面

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摘要

The characterization of a non-axenic microalgal culture was performed, including microbiological (massive sequencing of 18S and 16S rRNA) and kinetic aspects (maximum specific CO2 uptake rate, q(max), and half-saturation constant, K-s). An innovative setup for the retrieval of kinetic parameters without CO2 limiting conditions was developed. The microbiological characterization showed that Acutodesmus deserticola was by far the predominant microalgae with a relative abundance of over 99.9%, while the following abundance order was observed for bacterial phyla: Proteobacteria > Bacteroidetes > Firmicutes > Chlorobi > Ignavibacteriae > Chloroflexi. The q(max) and K-s values were in the range of -0.027 - 0.038 gCO(2) gVSS(-1) h(-1) and 4.0-18.2 gCO(2) m(-3), respectively, for irradiances from 45 to 140 mu mol m(-2) s(-1). While increases in irradiance did not impact significantly the q(max) values, a 3.1-fold increase in irradiance mediated a 4.5-fold decrease in K-s. This suggested that the activation of the photosynthetic system driven by irradiance increases can be quantified by changes in K-s.
机译:进行非轴烯微藻培养的表征,包括微生物学(大规模测序为18s和16s rRNA)和动力学方面(最大特异性CO 2吸收率,Q(最多)和半饱和常数K-S)。开发了一种没有CO2限制条件的动力学参数检索的创新设置。微生物表征表明,Acuctodesmus seactoricola是迄今为止的主要微藻,相对丰度超过99.9%,而对细菌植物(细菌>植物)>氯吡啶>氯咯曲杆菌>氯咯曲线>氯咯曲线>氯咯曲线>氯咯曲> IgnaVibactia>氯咯曲线>氯咯曲线>氯咯曲),观察到以下丰度令。 Q(MAX)和KS值分别为-0.027-0.038GCO(2)GVSS(-1)H(-1)和4.0-18.2 GCO(2)M(-3),用于辐射源45至140 mm mol m(-2)s(-1)。虽然辐照度的增加不会显着影响Q(最大)值,但辐照度的3.1倍增加介导K-S减少4.5倍。这表明可以通过K-S的变化来量化由辐照度驱动的光合系统的激活。

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