首页> 外文期刊>The Science of the Total Environment >Seawater supplemented with bicarbonate for efficient marine microalgae production in floating photobioreactor on ocean: A case study of Chlorella sp.
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Seawater supplemented with bicarbonate for efficient marine microalgae production in floating photobioreactor on ocean: A case study of Chlorella sp.

机译:海水补充有碳酸氢盐,用于高效的海洋微藻生产在海洋上的浮动光生物反应器中的生产:小球藻SP的案例研究。

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摘要

Cultivation of microalgae on ocean provides a promising way to produce massive biomass without utilizing limited land space, and using seawater as culture medium can avoid consumption of valuable fresh water. Bicarbonate is proved as a better approach for carbon supply in microalgae cultivation, but Ca~(2+) and Mg~(2+) in seawater is subjected to precipitate with carbonate derived from it In this study, cultivation with this medium for a marine Chlorella sp. resulted in productivity of 0.470 g L~(-1) day~(-1) despite of continual precipitation caused by increased pH due to bicarbonate consumption. Actually, this precipitation is favorable, since it can work as a flocculation harvesting method for microalgae. The highest flocculation efficiency of 98.9 ± 0.0% was observed in cultures with 7.0 g L~(-1) NaHCO_3, which was higher than that of cultures without bicarbonate (44.1 ± 0.2%). Additionally, the spent medium after flocculation supported better growth (1.60 ± 0.0 g L~(-1)) than the fresh medium (1.26 ± 0.0 g L~(-1)). Outdoor cultivation with floating photobioreactor on ocean resulted in the productivity of 0.190 g L~(-1) day~(-1), which was higher than that in land-based culture systems. The floating system also benefited from better temperature control with range from 20.6 to 37.2 °C, due to solar heating and surrounding water cooling. These results showed feasibility of efficient microalgae biomass production with fully utilizing of ocean resources, including culture medium preparation and temperature control with seawater, as well as wave energy for mixing, holding great potential to produce massive biomass to support sustainable development of human society.
机译:在海洋上微藻培养提供了一种有希望的方法来生产大规模生物量而不利用有限的土地空间,并使用海水作为培养基可以避免消耗有价值的淡水。被证明碳酸氢盐作为微藻培养中的碳供应的更好方法,但海水中的Ca〜(2+)和Mg〜(2+)与本研究中衍生的碳酸盐沉淀出来,用这种培养基用于海洋培养小球藻SP。尽管由碳酸氢盐的碳酸氢盐增加,但由于碳酸氢盐的碳酸氢盐增加,因此尽管通过较长的沉淀导致生产率为0.470g l〜(-1)天〜(1)。实际上,这种降水是有利的,因为它可以作为微藻的絮凝收集方法。在培养物中观察到98.9±0.0%的最高絮凝效率为7.0g l〜(-1)NaHCO_3,其高于没有碳酸氢盐的培养物(44.1±0.2%)。另外,絮凝后的花介质支持比新鲜培养基更好的生长(1.60±0.0g l〜(-1))(1.26±0.0g l〜(-1))。海洋上浮动光生物反应器的户外培养导致生产率为0.190g l〜(-1)天〜(-1),其高于陆基培养系统。由于太阳能加热和周围水冷,浮动系统也受益于更好的温度控制,范围为20.6至37.2°C。这些结果表明,高效的微藻生物量产生的可行性,充分利用海水,包括海水的培养基制备和温度控制,以及混合的波动能量,使得产生大量生物量以支持人类社会的可持续发展。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第10期|139439.1-139439.8|共8页
  • 作者单位

    School of Bioengineering Dalian University of Technology Dalian 116024 China;

    School of Bioengineering Dalian University of Technology Dalian 116024 China State Key Laboratory of Coastal and Offshore Engineering Dalian University of Technology Dalian 116024 China;

    School of Bioengineering Dalian University of Technology Dalian 116024 China;

    School of Bioengineering Dalian University of Technology Dalian 116024 China;

    School of Bioengineering Dalian University of Technology Dalian 116024 China;

    School of Bioengineering Dalian University of Technology Dalian 116024 China;

    School of Bioengineering Dalian University of Technology Dalian 116024 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Flocculation; Bicarbonate supplement; Microalgae; Ocean farm;

    机译:絮凝;碳酸氢盐补充剂;微藻;海洋农场;

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