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The Study of LED Light Source Illumination Conditions for Ideal Algae Cultivation

机译:理想藻类培养的LED光源照明条件研究

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摘要

Utilizing LED light source modules with 3 different RGB colors, the illumination effect of different wavelengths had been investigated on the growth curve of the same kind of micro algae. It was found that the best micro algae culturing status came out with long wavelength light such as red light (650~670 nm). Based on the same condition for a period of 3 weeks , the grown micro algae population density ratio represented by Optical Density (O.D.) ratio is 1 : 0.4 : 0.7 corresponding to growth with Red, Green, Blue light sources, respectively. Mixing 3 types and 2 types of LEDs with different parameters, the grown micro algae population densities were compared in terms of O.D. Interestingly enough, different light sources resulted in significant discoloration on micro algae growth, appearing yellow, brown, green, etc. Our experiments results showed such discoloration effect is reversible. Based on the same lighting condition, micro algae growth can be also affected by incubator size, nutrition supply, and temperature variation. In recent years, micro algae related technologies have been international wise a hot topic of energy and environmental protection for research and development institutes, and big energy companies among those developed countries. There will be an economically prosperous future. From this study of LED lighting to ideal algae cultivation, it was found that such built system would be capable of optimizing artificial cultivation system, leading to economic benefits for its continuous development. Since global warming causing weather change, accompanying with reducing energy sources and agriculture growth shortage are all threatening human being survival.
机译:利用3种不同RGB颜色的LED光源模块,研究了同一种微藻生长曲线上不同波长的照明效果。发现最佳的微藻培养状态是通过长波长光如红光(650〜670 nm)获得的。在相同条件下持续3周,以光密度(O.D.)比表示的生长微藻种群密度比为1:0.4:0.7,分别对应于红色,绿色和蓝色光源的生长。混合3种和2种具有不同参数的LED,以O.D的形式比较生长的微藻种群密度。有趣的是,不同的光源导致微藻生长明显变色,出现黄色,棕色,绿色等。我们的实验结果表明这种变色效果是可逆的。在相同的光照条件下,微藻的生长也会受到孵化器大小,营养供应和温度变化的影响。近年来,与微藻类相关的技术已成为国际明智的研究和开发机构以及这些发达国家中的大型能源公司的能源和环境保护热点话题。在经济上将会有一个繁荣的未来。从对LED照明的研究到理想的藻类栽培,发现这种构建的系统将能够优化人工栽培系统,为其持续发展带来经济利益。由于全球变暖导致天气变化,伴随着能源减少和农业增长短缺,所有这些都威胁着人类的生存。

著录项

  • 来源
    《》|2017年|1010714-1-1010714-6|共6页
  • 会议地点 San Francisco(US)
  • 作者单位

    Department of Electronic and Optoelectronic Application Engineering, Far East University, Tainan;

    Department of Biological Science Technology, I Shou University, Kaohsiung, Taiwan Taiwan;

    Department of Electronic and Optoelectronic Application Engineering, Far East University, Tainan;

    Department of Electronic and Optoelectronic Application Engineering, Far East University, Tainan;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    LED Light Source; Algae; Cultivation; Growth; Algae Cultivation;

    机译:LED光源藻类;培养;成长;藻类栽培;

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