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Techno-economic feasibility of algal aquaculture via fish and biodiesel production pathways: A commercial-scale application

机译:通过鱼和生物柴油生产途径的藻类水产养殖技术经济可行性:商业规模应用

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摘要

The industrialization of integrated algae-aquaculture systems entails appropriate information regarding environmental and economic assessments, field and laboratory analyses, and feasibility studies. Accordingly, Scenedesmus obliquus was cultivated in a raceway pond (300 m~3), and the algal biomass was used as a protein source for the growth of Nile tilapia (Oreochromis niloticus). Nile tilapia fish was cultivated in five commercial-scale tanks for 44 weeks, having a productivity of 15-20 kg (live weight) m~(-3). Among various algal-based fish meals, the diet containing 7.5% microalgae provided the largest body length (29 cm) and weight (402 g), as well as the optimum growth performance parameters. Scenedesmus obliquus was subjected to lipid extraction, and the defatted biomass was also used as a substitute for fishmeal in diets. Nile tilapia grown using the lipid-extracted algae had improved health status, and the biochemical composition was satisfactory. Further, two scenarios were economically investigated: Case J, the direct use of algal biomass for fish production, and Case 2. the utilization of algae for biodiesel production followed by the application of residual biomass in fishmeal diets. Based on field experiments and financial information reported in the literature, the two options would offset their initial investment cost within payback periods of 7.5 and 6.8 yr, respectively.
机译:集成藻类水产养殖系统的工业化需要有关环境和经济评估,实验室和实验室分析以及可行性研究的适当信息。因此,在滚道池(300m〜3)中培养了Scenedesmus倾斜,并且藻类生物量被用作尼罗基亚(Oreochromis niloticus)生长的蛋白质来源。尼罗罗非鱼鱼在五个商业规模坦克中培养44周,其生产率为15-20千克(活重)m〜(-3)。在各种藻类鱼粉中,含有7.5%微藻的饮食提供最大的体长(29cm)和重量(402g),以及最佳的生长性能参数。将Scenedesmus倾斜进行脂质萃取,并且脱脂生物质也被用作饮食中鱼粉的替代品。使用脂质提取的藻类生长的尼罗罗非鱼具有改善的健康状况,生物化学组合物令人满意。此外,经济上进行了两种情况:案例J,直接使用鱼类生产的藻类生物量,以及壳体的利用,用于生物柴油生产中的藻类,然后在鱼粉中施用残留生物质在鱼粉饮食中的应用。基于文献中报告的现场实验和财务信息,两种选择将分别在7.5和6.8年的投资回收期内抵消其初始投资成本。

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  • 来源
    《The Science of the Total Environment》 |2020年第20期|135259.1-135259.11|共11页
  • 作者单位

    Institute for Water and Wastewater Technology (IWWT) Durban University of Technology Durban 4000 South Africa;

    Sanitary Engineering Department Faculty of Engineering Alexandria University Alexandria 21544 Egypt;

    Institute for Water and Wastewater Technology (IWWT) Durban University of Technology Durban 4000 South Africa;

    Environmental Engineering Department of Civil Engineering Indian Institute of Technology Delhi India;

    Institute for Water and Wastewater Technology (IWWT) Durban University of Technology Durban 4000 South Africa;

    Institute for Water and Wastewater Technology (IWWT) Durban University of Technology Durban 4000 South Africa;

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

    Biodiesel; Fishmeal replacement; Nile tilapia; Payback period; Scenedesmus obliquus;

    机译:生物柴油;鱼粉替代;尼罗·罗非鱼;投资回收期;斯明斯姆斯倾斜;

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