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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >An efficient Photobioreactors/Raceway circulating system combined with alkaline-CO2 capturing medium for microalgal cultivation
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An efficient Photobioreactors/Raceway circulating system combined with alkaline-CO2 capturing medium for microalgal cultivation

机译:高效的光生物反应器/滚道循环系统与碱性-CO2捕获介质进行微藻培养

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摘要

High efficiency of microalgal growth and CO2 fixation in a Photobioreactors (PBRs)/Raceway circulating (PsRC) system combined with alkaline-CO2 capturing medium and operation was established and investigated. Compared with a pH 6 medium, the average biomass productivity of Chlorella sp. AT1 cultured in a pH 11 medium at 2L min(-1) circulation rate for 7 days increased by about 2-fold to 0.346g L-1 d(-1). The maximum amount of CO2 fixation and CO2 utilization efficiency of Chlorella sp. AT1 could be obtained at a PBRs to Raceway ratio of 1:10 in an indoor-simulated PsRC system. A similar result was also shown in an outdoor PsRC system with a 10-ton scale for microalgal cultivation. Under the appropriate circulation rate, the stable growth performance of Chlorella sp. AT1 cultured by long-term semi-continuous operation in the 10-ton outdoor PsRC system was observed, and the total amount of CO2 fixation was approximately 1.2kg d(-1) with 50% CO2 utilization efficiency.
机译:建立和研究了光生物反应器(PBR)/滚道循环(PSRC)系统中的微藻生长和CO 2固定的高效率和CO 2固定。 与pH6培养基相比,小球藻SP的平均生物质生产率。 在2L min(-1)培养基中在pH 11培养基中培养的AT1 7天的循环速率为0.346g L-1 d(-1)。 小球藻SP的CO2固定和CO2利用效率的最大量。 可以在室内模拟的PSRC系统中以1:10的PBR获得AT1。 在具有10吨微藻培养的户外PSRC系统中也显示了类似的结果。 在适当的循环率下,小球藻SP的稳定生长性能。 观察到在10吨室外PSRC系统中长期半连续操作培养的AT1,CO 2固定的总量约为1.2kg D(-1),具有50%的CO 2利用效率。

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