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High biofuel production of Botryococcus braunii using optimized cultivation strategies.

机译:使用优化的栽培策略,可高产布鲁尼葡萄球菌。

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摘要

This thesis describes how using a heterotrophy-recovery-autotrophy route (called the green cycle) for the cultivation of Botryococcus braunii results in high biofuel production. Our experiments show that the addition of citrate to a culture can increase cell numbers by up to 20 times compared with the control in the first week. A metal solution was then added to help cells synthesize chlorophyll, enabling Botryococcus braunii to regenerate the chlorophyll content in the plastids and become autotrophic. In our experiments, high cell numbers were obtained after two weeks and biofuel production was enhanced.;This thesis describes how using a heterotrophy-recovery-autotrophy route (called the green cycle) for the cultivation of Botryococcus braunii results in high biofuel production. Our experiments show that the addition of citrate to a culture can increase cell numbers by up to 20 times compared with the control in the first week. A metal solution was then added to help cells synthesize chlorophyll, enabling Botryococcus braunii to regenerate the chlorophyll content in the plastids and become autotrophic. In our experiments, high cell numbers were obtained after two weeks and biofuel production was enhanced.;By applying these techniques to the Botryococcus braunii culture, we found that cell growth could increase by up to 58 times in comparison with the control.
机译:本论文描述了使用异养-恢复-自养途径(称为绿色循环)培养布鲁氏葡萄球菌如何产生高生物燃料产量。我们的实验表明,与培养的第一周相比,向培养物中添加柠檬酸盐可以使细胞数量增加多达20倍。然后添加金属溶液以帮助细胞合成叶绿素,从而使布鲁氏葡萄球菌能够再生质体中的叶绿素含量并成为自养型。在我们的实验中,两周后获得了较高的细胞数量,并提高了生物燃料的生产。;本论文描述了如何使用异养-恢复-自养途径(称为绿色循环)来培养布鲁氏葡萄球菌,从而提高生物燃料的产量。我们的实验表明,与培养的第一周相比,向培养物中添加柠檬酸盐可以使细胞数量增加多达20倍。然后添加金属溶液以帮助细胞合成叶绿素,从而使布鲁氏葡萄球菌能够再生质体中的叶绿素含量并成为自养型。在我们的实验中,两周后获得了高细胞数量,并增强了生物燃料的生产。通过将这些技术应用于布鲁氏葡萄球菌培养,我们发现与对照相比,细胞生长最多可以增加58倍。

著录项

  • 作者

    Yu, Wei.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Biomedical engineering.;Alternative Energy.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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