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首页> 外文期刊>Journal of Chemical Engineering of Japan >The Kinetics of Growth and the CO2 Concentrating Mechanism of the Filamentous Cyanobacterium Anabaena cylindrica in a Bubble Column
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The Kinetics of Growth and the CO2 Concentrating Mechanism of the Filamentous Cyanobacterium Anabaena cylindrica in a Bubble Column

机译:鼓泡塔中丝状蓝细菌的生长动力学和CO2浓缩机理。

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摘要

References(12) Cited-By(3) The growth and CO2 concentrating mechanism of a filamentous cyanobacterium Anabaena cylindrica IAM-M1 in a bubble column have been studied by following the time courses of biomass concentration, pH, CO2 accumulation rate, and transmittance of light. The biomass production increased with the increasing superficial gas velocity from 9.0 m·h–1 to 12 m·h–1 or with increasing mole fraction of CO2 at the inlet from 0.03 to 0.06, while it decreased with the increasing superficial gas velocity from 12 m·h–1 to 18.0 m·h–1 or with the increasing fraction of CO2 from 0.06 to 0.12. As biomass concentration increased the photosynthetic photon flux density of the transmitted light decreased. The CO2 accumulation rate, which almost equaled in magnitude the CO2 mass transfer rate (CTR), went up steeply in the early phase of cell growth. The photosynthetic CO2 uptake rate (CUR) reached the maximum at the late logarithmic growth phase. The maximum value of the ratio CTR/CUR was 804.
机译:参考文献(12)引用了(3)通过跟踪生物量浓度,pH,CO2积累速率和酸碱度的时间变化过程,研究了鼓泡塔中丝状蓝细菌鱼腥藻IAM-M1的生长和CO2浓缩机理。光。随着表观气体速度从9.0 m·h–1增加到12 m·h-1,或入口处的CO2摩尔分数从0.03增加到0.06,生物量的产生增加,而随着表观气体速度从12的增加而降低m·h-1到18.0 m·h-1或随着CO2的分数从0.06增加到0.12。随着生物质浓度的增加,透射光的光合光子通量密度降低。在细胞生长的早期阶段,CO2累积速率几乎等于CO2传质速率(CTR),在此期间急剧上升。在对数生长期后期,光合作用的二氧化碳吸收率(CUR)达到最大值。 CTR / CUR之比的最大值是804。

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