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Ultrahigh-cell-density culture of a marine green alga Chlorococcumlittorale in a flat-plate photobioreactor

机译:平板光生物反应器中海洋绿藻Chlorococcumlittorale的超高细胞密度培养

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摘要

To test the feasibility of CO2 remediation by microalgal photosynthesis, a modified type of flat-plate photobioreactor [Hu et al. (1996) Biotechnol Bioeng 51:51-60] has been designed for cultivation of a high-CO2-tolerant unicellular green alga Chlorococcum littorale. The modified reactor has a narrow light path in which intensive turbulent flow is provided by streaming compressed air through perforated tubing into the culture suspension. The length of the reactor light path was optimized for the productivity of biomass. The interrelationship between cell density and productivity, as affected by incident light intensity, was quantitatively assessed. Cellular ultrastructural and biochemical changes in response to ultrahigh cell density were investigated. The potential of biomass production under extremely high CO2 concentrations was also evaluated. By growing C. littorale cells in this reactor, a CO2 fixation rate of 16.7 g CO2 l(-1) 24 h(-1) (or 200.4 g CO2 m(-2) 24 h(-1)) could readily be sustained at a light intensity of 2000 mu mol m(-2) s(-1) at 25 degrees C, and an ultrahigh cell density of well over 80 g l(-1) could be maintained by daily replacing the culture medium.
机译:为了测试通过微藻类光合作用修复二氧化碳的可行性,一种改良型的平板光生物反应器[Hu等。 (1996)Biotechnol Bioeng 51:51-60]已被设计用于培养高CO2耐受性的单细胞绿藻滨海绿藻。改进的反应器具有狭窄的光路,在该光路中,通过使压缩空气通过穿孔管流入培养物悬浮液,从而提供了强烈的湍流。反应器光路的长度针对生物质的生产率进行了优化。定量评估了受入射光强度影响的细胞密度和生产率之间的相互关系。研究了响应超高细胞密度的细胞超微结构和生化变化。还评估了在极高的CO2浓度下生物质生产的潜力。通过在此反应器中生长滨海梭状芽胞杆菌细胞,可以很容易地保持16.7 g CO2 l(-1)24 h(-1)(或200.4 g CO2 m(-2)24 h(-1))的CO2固定率在25摄氏度下在2000μmol m(-2)s(-1)的光强度下,每天更换培养基可以保持超过80 gl(-1)的超高细胞密度。

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