首页> 外文期刊>Journal of Applied Phycology >Screening of two terrestrial cyanobacteria for biotechnological production processes in shaking flasks, bubble columns, and stirred tank reactors
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Screening of two terrestrial cyanobacteria for biotechnological production processes in shaking flasks, bubble columns, and stirred tank reactors

机译:筛选用于摇瓶,鼓泡塔和搅拌釜反应器中生物技术生产工艺的两种陆地蓝细菌

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Terrestrial cyanobacteria are rarely used for biotechnological processes, although they show great potential in terms of value-added substances. Cyanobacteria from arid habitats are of particular interest because they tolerate higher temperatures and feature a different product spectrum compared with their aquatic counterparts. In addition, terrestrial cyanobacteria may represent an interesting source of pharmaceutical products. To investigate the future use of these organisms in biotechnological processes, the growth rates of Trichocoleus sociatus (formerly Microcoleus sociatus) and Nostoc muscorum were examined using three different cultivation systems: shaking flasks, bubble columns, and stirred tank reactors. Parameters including pH, temperature, CO2 level, and power dissipation were investigated quantitatively in the three systems for their impact on growth rate. The highest growth rate of the terrestrial cyanobacteria could be achieved in a stirred tank reactor under enriched CO2 concentration. In this system, the growth rate was 1.15 day(-1) +/- 0.08 (2 % vol.) for T. sociatus and 0.72 day(-1) +/- 0.22 (5 % vol.) for N. muscorum, based on dry weight. Furthermore, a basic mathematical model was created as an add-on to predict growth rates of terrestrial cyanobacteria based on their dependency on temperature, pH, and substrate concentration, in general. This model was used to estimate growth of N. muscorum in stirred tank reactor experiments with an accuracy of 98.8 % and with 75 % accuracy for T. sociatus
机译:陆地蓝细菌虽然在增值物质方面显示出巨大潜力,但很少用于生物技术过程。来自干旱栖息地的蓝细菌特别令人关注,因为它们可以忍受更高的温度,并且与水生细菌相比具有不同的产品谱。此外,陆地蓝细菌可能代表了一种有趣的药品来源。为了研究这些生物在生物技术过程中的未来用途,使用三种不同的培养系统(摇瓶,鼓泡塔和搅拌釜反应器)检查了毛滴虫(Trichocoleus sociatus,以前称为Microcoleus sociatus)和Nostoc muscorum的生长速率。在这三个系统中,对包括pH,温度,CO2水平和功耗在内的参数进行了定量研究,以考察它们对增长率的影响。在富含CO 2浓度的搅拌釜反应器中,可以实现陆地蓝细菌的最高生长速率。在该系统中,T。sociatus的生长速率为1.15天(-1)+/- 0.08(2%体积),粘液猪笼草的生长速率为0.72天(-1)+/- 0.22(5%体积),基于干重。此外,还创建了一个基本数学模型作为附加组件,以根据它们通常对温度,pH和底物浓度的依赖性来预测陆生蓝细菌的生长速率。该模型用于估计搅拌釜反应器实验中粘菌猪笼草的生长,其准确度为98.8%,而对社会鞭毛虫的准确度为75%

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