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Cultivation of microalgae Chlorella vulgaris in photobioreactor for biodiesel production.

机译:在光生物反应器中培养微藻类小球藻,用于生产生物柴油。

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摘要

Microalgae are gaining considerable attention as a feedstock for biodiesel production. They can be grown away from the croplands and hence do not compromise food crop supplies. The ability of microalgae to capture solar energy and fix CO2 is a promising process for sustainable production of biomass. Chlorella vulgaris may be suitable for biodiesel production due to its faster growth and easier cultivation compared to other strains. The effect of media composition and process conditions on biomass productivity of C. vulgaris are investigated in a laboratory scale photobioreactor. The results show excellent growth of C. vulgaris on 2X Tris-Acetate-Phosphate culture medium, reaching biomass concentrations around 7.7 g/L. The combination of process parameters that result in highest biomass for our system are: agitation at 600 rpm, temperature of 29°C, average light irradiance of 900 muE/ (m2 s), and 4% CO2 in air. The statistical analysis of biomass from fractional factorial experiments confirms that C. vulgaris growth in presence of the aforementioned process parameters can give highest biomass for our system from the process parameters that were studied. However, statistical analysis also reveals that increase in irradiance from 450 muE/ (m 2 s) to 900 muE/ (m2 s) in our system did not have significant effect on biomass concentration.
机译:微藻作为生物柴油生产的原料正受到广泛关注。它们可以远离农田生长,因此不会损害粮食作物的供应。微藻捕获太阳能和固定二氧化碳的能力是可持续生产生物质的有前途的过程。与其他菌株相比,小球藻的生长速度更快,更容易培养,因此可能适合生产生物柴油。在实验室规模的光生物反应器中研究了培养基组成和加工条件对寻常型梭菌生物量生产力的影响。结果表明,寻常小球藻在2X Tris-乙酸-磷酸盐培养基上的生长极好,生物质浓度约为7.7 g / L。为我们的系统带来最高生物量的工艺参数组合为:600 rpm的搅拌,29°C的温度,900 muE /(m2 s)的平均光辐照度和空气中4%的CO2。来自分数阶乘实验的生物质的统计分析证实,在上述过程参数存在下寻常型梭状芽孢杆菌的生长可以从所研究的过程参数中为我们的系统提供最高的生物量。但是,统计分析还显示,我们系统中的辐照度从450μE/(m 2 s)增加到900μE/(m2 s)对生物量浓度没有显着影响。

著录项

  • 作者

    Debska, Dorota J.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Alternative Energy.;Engineering Chemical.
  • 学位 M.A.Sc.
  • 年度 2009
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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