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首页> 外文期刊>Journal of Biotechnology >Outdoor continuous culture of Porphyridium cruentum in a tubularphotobioreactor: quantitative analysis of the daily cyclic variation ofculture parameters
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Outdoor continuous culture of Porphyridium cruentum in a tubularphotobioreactor: quantitative analysis of the daily cyclic variation ofculture parameters

机译:管状光生物反应器中户外连续培养卟啉单胞菌:定量分析养殖参数每日循环变化

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The present work reports on the daily cyclic variation of oxygen generation rates, carbon consumption rates, photosynthetic activities, growth rates and biochemical composition of the biomass in a pilot plant continuous outdoor culture of the microalgae Porphyridium cruentum. A linear relationship between the external irradiance and the average irradiance inside the culture was found. In addition, the oxygen generation and carbon consumption rates were found to be a function of the average irradiance inside the culture. A reduction in photosynthetic activity of the cells at noon and recovery in the afternoon was also observed. Therefore, the cells showed a short-term response of parameters such as oxygen generation rate as well as carbon consumption rate with external and average irradiance; a model of photosynthesis rate considering photoinhibition is proposed. This model is a useful tool for the operation and scaleup of tubular photobioreactors, and can be used for determining CO2 requirements of the system. The higher the photosynthesis rates, the lower the carbon losses, ranging from 25% at noon to 100% during the night. The growth rate showed a linear relationship with the daily mean average irradiance inside the culture with a long-term response. Likewise, a linear relationship among the oxygen generation rate and the growth rate was obtained. With respect to the biochemical composition of the biomass, the cells showed a long-term response of metabolic routes to mean daily culture conditions. During the illuminated period, energy was stored as carbohydrates and synthesis of proteins was low. During the night, the stored carbohydrates were consumed. The fatty acid dry weight (DW) content decreased during the daylight period, whereas the fatty acid profile, as total fatty acids, was a function of growth rate. A short-term variation of exopolysaccharides synthesis with solar irradiance was also observed, i.e. the higher the external irradiance the higher the excretion of exopolysaccharides as a protection against adverse culture conditions.
机译:本工作报告了微藻十字花菜中试植物连续室外培养中氧气产生速率,碳消耗速率,光合作用,生长速率和生物质生化组成的每日循环变化。发现外部辐照度与培养物内部的平均辐照度之间存在线性关系。另外,发现氧气的产生和碳的消耗速率是培养物中平均辐照度的函数。还观察到中午细胞的光合作用活性降低,下午恢复。因此,这些电池在外部和平均辐照度下对氧气产生速率以及碳消耗速率等参数表现出短期响应;提出了考虑光抑制作用的光合作用速率模型。该模型是用于管状光生物反应器操作和放大的有用工具,可用于确定系统的CO2需求。光合作用速率越高,碳损失越低,从中午的25%到夜间的100%不等。生长速率与培养物中具有长期响应的日平均辐照度呈线性关系。同样,获得了氧气产生速率和生长速率之间的线性关系。关于生物质的生物化学组成,细胞对新陈代谢途径表现出长期反应,意味着每天的培养条件。在光照期间,能量以碳水化合物的形式存储,蛋白质合成很低。在夜间,储存的碳水化合物被消耗掉了。在白天,脂肪酸干重(DW)含量下降,而脂肪酸谱(作为总脂肪酸)是生长速率的函数。还观察到胞外多糖合成随太阳辐照度的短期变化,即外部辐照度越高,胞外多糖的排泄量越高,以抵抗不利的培养条件。

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