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Utilization of organic residues using heterotrophic microalgae and insects

机译:利用异养微藻和昆虫利用有机残留物

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摘要

HighlightsOrganic waste management strategies using microalgae and insects have been carried out.Biological and technical aspects of both approaches have been illuminated.Process complexity, challenges as well as advantages have been described.AbstractVarious organic residues occur globally in the form of straw, wood, green biomass, food waste, feces, manure etc. Other utilization strategies apart from anaerobic digestion, composting and incineration are needed to make use of the whole potential of organic residues as sources of various value added compounds. This review compares the cultivation of heterotrophic microalgae and insects using organic residues as nutrient sources and illuminates their potential with regard to biomass production, productivity and yield, and utilization strategies of produced biomasses. Furthermore, cultivation processes as well as advantages and disadvantages of utilization processes are identified and discussed. It was shown that both heterotrophic algae and insects are able to reduce a sufficient amount of organic residues by converting it into biomass. The biomass composition of both organisms is similar which allows similar utilization strategies in food and feed, chemicals and materials productions. Even though insect is the more complex organism, biomass production can be carried out using simple equipment without sterilization and hydrolysis of organic residues. Contrarily, heterotrophic microalgae require a pretreatment of organic residues in form of sterilization and in most cases hydrolysis. Interestingly, the volumetric productivity of insect biomass exceeds the productivity of algal biomass. Despite legal restrictions, it is expected that microalgae and insects will find application as alternative food and feed sources in the future.
机译: 突出显示 已执行了使用微藻和昆虫的有机废物管理策略。 已阐明了这两种方法的生物学和技术方面。 已描述了过程的复杂性,挑战以及优势。 摘要 除厌氧消化,堆肥和焚烧外,还需要其他利用策略,以利用有机残留物的全部潜力作为各种增值化合物的来源。这篇综述比较了使用有机残留物作为营养源的异养微藻和昆虫的种植,并阐明了它们在生物质生产,生产力和产量以及所生产生物质的利用策略方面的潜力。此外,确定并讨论了栽培过程以及利用过程的优缺点。结果表明,异养藻类和昆虫都能够通过将其转化为生物质来减少足够数量的有机残留物。两种生物的生物量组成相似,因此在食品和饲料,化学药品和材料生产中可以采用相似的利用策略。即使昆虫是更复杂的生物,也可以使用简单的设备进行生物量生产,而无需灭菌和有机残留物水解。相反,异养微藻需要以灭菌的形式预处理有机残留物,并且在大多数情况下需要水解。有趣的是,昆虫生物量的体积生产力超过藻类生物量的生产力。尽管有法律限制,但预计微藻和昆虫将在将来作为替代食品和饲料来源得到应用。

著录项

  • 来源
    《Waste Management》 |2018年第2期|227-239|共13页
  • 作者单位

    Sustainable Chemistry (Resource Efficiency), Institute of Sustainable and Environmental Chemistry, Leuphana University of Lüneburg;

    Leibniz Institute for Agricultural Engineering and Bioeconomy, Research Program Quality and Safety of Food and Feed,Technische Universität Berlin, Institute of Vocational Education and Work Studies, Department of Education of Sustainable Nutrition and Food Science;

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

    Microalgae; Edible insects; Organic residues; Conversion; Reduction; Utilization;

    机译:微藻;食用昆虫;有机残留;转化;还原;利用;

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