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Kinetic models for astaxanthin production by high cell density mixotrophic culture of the microalga Haematococcus pluvialis

机译:通过微藻雨生红球藻的高细胞密度混合营养培养产生虾青素的动力学模型

摘要

High cell density cultivation of Haematococcus pluvialis for astaxanthin production was carried out in batch and fed-batch modes in 3.7-L bioreactors with stepwise increased light intensity control mode. A high cell density of 2.65 g L-1 (batch culture) or 2.74 g L-1 (fed-batch culture) was obtained, and total astaxanthin production in the fed-batch culture (64.36 mg L-1) was about 20.5% higher than in the batch culture (53.43 mg L-1). An unstructured kinetic model to describe the microalga culture system including cell growth, astaxanthin formation, as well as sodium acetate consumption was proposed. Good agreement was found between the model predictions and experimental data. The models demonstrated that the optimal light intensity for mixotrophic growth of H. pluvialis in batch or fed-batch cultures in a 3.7-L bioreactor was 90-360 μmol m-2 s-1, and that the stepwise increased light intensity mode could be replaced by a constant light intensity mode.
机译:在3.7-L生物反应器中以分批和补料分批模式对逐步增高的光强度控制模式进行了紫杉血球菌高细胞密度培养,以生产虾青素。获得了2.65 g L-1(分批培养)或2.74 g L-1(补料分批培养)的高细胞密度,并且分批补料培养(64.36 mg L-1)中虾青素的总产量约为20.5%。高于分批培养(53.43 mg L-1)。提出了一种非结构动力学模型来描述微藻培养系统,包括细胞生长,虾青素形成以及乙酸钠消耗。在模型预测和实验数据之间发现了很好的一致性。该模型表明,在3.7 L生物反应器中分批或补料分批培养的幽门螺杆菌混合营养生长的最佳光强度为90-360μmolm-2 s-1,并且逐步增加的光强度模式可以是取而代之的是恒定光强度模式。

著录项

  • 作者

    Gong XD; Zhang XW; Chen F;

  • 作者单位
  • 年度 1999
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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