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首页> 外文期刊>Waste Management >Biowaste treatment with black soldier fly larvae: Increasing performance through the formulation of biowastes based on protein and carbohydrates
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Biowaste treatment with black soldier fly larvae: Increasing performance through the formulation of biowastes based on protein and carbohydrates

机译:黑战士蝇幼虫对生物废物的处理:通过基于蛋白质和碳水化合物的生物废物配方提高性能

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摘要

A key challenge for black soldier fly larvae (BSFL) treatment is its variable reliability and efficiency when applied to different biowastes. Similar to other biowaste treatment technologies, co-conversion could compensate for variability in the composition of biowastes. Using detailed nutrient analyses, this study assessed whether mixing biowastes to similar protein and non-fibre carbohydrate (NFC) contents increased the performance and reduced the variability of BSFL treatment in comparison to the treatment of individual wastes. The biowastes examined were mill by-products, human faeces, poultry slaughterhouse waste, cow manure, and canteen waste. Biowaste formulations had a protein-to-NFC ratio of 1:1, a protein content of 14-19%, and a NFC content of 13-15% (dry mass). Performance parameters that were assessed included survival and bioconversion rate, waste reduction, and waste conversion and protein conversion efficiency. In comparison to poultry feed (benchmark), vegetable canteen waste showed the best performance and cow manure performed worst. Formulations showed significantly improved performance and lower variability in comparison to the individual wastes. However, variability in performance was higher than expected for the formulations. One reason for this variability could be different fibre and lipid contents, which correlated with the performance results of the formulations. Overall, this research provides baseline knowledge and guidance on how BSFL treatment facilities may systematically operate using biowastes of varying types and compositions.
机译:黑人士兵蝇幼虫(BSFL)处理的一个关键挑战是,将其应用于不同的生物废物时,其可变的可靠性和效率。与其他生物废物处理技术类似,共转化可以补偿生物废物成分的变化。通过详细的营养成分分析,该研究评估了将生物废物与相似蛋白质和非纤维碳水化合物(NFC)含量混合是否比单个废物的处理提高了BSFL处理的性能并降低了其变化性。检查的生物废物包括工厂副产品,人类粪便,家禽屠宰场废物,牛粪和食堂废物。生物废物制剂的蛋白质与NFC比率为1:1,蛋白质含量为14-19%,NFC含量为13-15%(干重)。评估的性能参数包括存活率和生物转化率,废物减少以及废物转化和蛋白质转化效率。与家禽饲料(基准)相比,蔬菜食堂垃圾表现最好,而牛粪表现最差。与单个废物相比,制剂显示出显着改善的性能和更低的可变性。然而,性能的差异高于制剂的预期。这种变化的原因之一可能是纤维和脂质含量不同,这与制剂的性能结果相关。总的来说,这项研究提供了有关BSFL处理设备如何使用不同类型和成分的生物废物进行系统操作的基础知识和指导。

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  • 来源
    《Waste Management》 |2020年第2期|319-329|共11页
  • 作者单位

    ETH Zurich: Swiss Federal Institute of Technology Zurich Institute of Food Nutrition and Health Laboratory of Sustainable Food Processing Schmelzbergstrasse 9 8092 Zurich Switzerland Eawag: Swiss Federal Institute of Aquatic Science and Technology Sandec: Department Sanitation Water and Solid Water for Development Uberlandstrasse 133 8600 Duebendorf Switzerland;

    ETH Zurich: Swiss Federal Institute of Technology Zurich Institute of Food Nutrition and Health Laboratory of Sustainable Food Processing Schmelzbergstrasse 9 8092 Zurich Switzerland Eawag: Swiss Federal Institute of Aquatic Science and Technology Sandec: Department Sanitation Water and Solid Water for Development Uberlandstrasse 133 8600 Duebendorf Switzerland University of Stuttgart: Institute for Sanitary Engineering Water Quality and Solid Waste Management Chair of Waste Management and Emissions Bandtaele 2 70569 Stuttgart Germany;

    Eawag: Swiss Federal Institute of Aquatic Science and Technology Sandec: Department Sanitation Water and Solid Water for Development Uberlandstrasse 133 8600 Duebendorf Switzerland;

    ETH Zurich: Swiss Federal Institute of Technology Zurich Institute of Agricultural Sciences Animal Nutrition Universitdtstrasse 2 8092 Zurich Switzerland;

    ETH Zurich: Swiss Federal Institute of Technology Zurich Institute of Food Nutrition and Health Laboratory of Food Biochemistry Schmelzbergstrasse 9 8092 Zurich Switzerland;

    Biovision Foundation Heinrichstrasse 147 8005 Zurich Switzerland;

    ETH Zurich: Swiss Federal Institute of Technology Zurich Institute of Food Nutrition and Health Laboratory of Sustainable Food Processing Schmelzbergstrasse 9 8092 Zurich Switzerland;

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

    Biological; Treatment; Waste; Conversion; Formulation; Hermetia illucens;

    机译:生物;治疗;浪费;转换;公式;八仙花;

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