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Evaluating the potential of okara-derived black soldier fly larval frass as a soil amendment

机译:评估Okara衍生的黑人士兵飞幼虫Frass作为土壤修正案的潜力

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摘要

Bioconversion of organic waste by the black soldier fly (BSF) larva yields a by-product commonly known as 'frass'. Although BSF larval frass has often been marketed as a biofertilizer, few studies have evaluated this claim. In this study, BSF larvae reared on a pure okara diet achieved an 85% waste reduction in the fresh weight of the okara. Subsequently, the frass was mixed with soil at concentrations of 10, 20, and 30% (vol/vol), and used to cultivate lettuce plants. At 10% concentration, the lettuce plants had biomasses comparable to those of the controls. Higher frass concentrations stunted the growth of the lettuce, likely because of the low C:N ratio of larval frass resulting from the rapid mineralization of nutrients. Larval frass was also found to be able to provide sufficient nutrients for lettuce growth as fertilizer application was only necessary after the first growth cycle, suggesting its suitability as a soil amendment. Analyses of the microbial community of all the growing media showed that the growth medium treatments with BSF larval frass tended to have a lower number of microbial species than the controls. Inherently higher micronutrient levels present in the frass resulted in the growth of lettuce plants. More importantly, the microbial analysis revealed that common foodbome pathogens were absent in the BSF larval frass and elemental analysis also indicated no heavy metal pollutants present. Overall, BSF larval frass was found to be a suitable soil amendment and more in-depth studies could facilitate its sensible use in agriculture.
机译:黑色士兵飞行(BSF)幼虫的有机废物的生物转化产生副产品,通常称为“Frass”。虽然BSF Larval Frass经常被销售为生物认情器,但很少有研究已经评估了这项要求。在这项研究中,BSF幼虫饲养在纯幼儿园饮食上,达拉拉的鲜重化减少了85%的废物。随后,将FRAS与土壤混合,浓度为10,20和30%(Vol /体积),并用于培养莴苣植物。在10%浓度下,莴苣植物的生物量与对照组相当。较高的Frass浓度使生菜的生长发育不全,可能是由于营养素的快速矿化引起的幼虫散热的低C:n比。还发现幼虫Frass能够为莴苣生长提供足够的营养素,因为施肥仅在第一次生长期之后必要,表明其作为土壤修正案的适用性。所有越来越多媒体的微生物群落的分析表明,BSF幼虫的生长培养基处理往往具有比对照的较少数量的微生物物种。在Frass中存在的本质上更高的微量营养素水平导致莴苣植物的生长。更重要的是,微生物分析表明,在BSF幼虫分解中不存在常见的食物组群病原体,并且元素分析也表明了没有存在的重金属污染物。总体而言,BSF幼虫Frass被发现是合适的土壤修正案,更深入的研究可以促进其在农业中的明智使用。

著录项

  • 来源
    《Journal of Environmental Management 》 |2021年第15期| 112163.1-112163.10| 共10页
  • 作者单位

    Department of Biological Sciences National University of Singapore 16 Science Drive 4 117558 Singapore;

    Environmental Research Institute National University of Singapore Temasek Laboratories Building 5A Engineering Drive 1 117311 Singapore Energy and Environmental Sustainability for Megacities (E2S2) Phase Ⅱ Campus for Research Excellence and Technological Enterprise (CREATE) 1 Create Way Singapore 138602 Singapore;

    Department of Biological Sciences National University of Singapore 16 Science Drive 4 117558 Singapore;

    Department of Biological Sciences National University of Singapore 16 Science Drive 4 117558 Singapore;

    Environmental Research Institute National University of Singapore Temasek Laboratories Building 5A Engineering Drive 1 117311 Singapore Energy and Environmental Sustainability for Megacities (E2S2) Phase Ⅱ Campus for Research Excellence and Technological Enterprise (CREATE) 1 Create Way Singapore 138602 Singapore;

    Energy and Environmental Sustainability for Megacities (E2S2) Phase Ⅱ Campus for Research Excellence and Technological Enterprise (CREATE) 1 Create Way Singapore 138602 Singapore Department of Chemical and Biomolecular Engineering 4 Engineering Drive 4 117585 Singapore;

    Department of Biological Sciences National University of Singapore 16 Science Drive 4 117558 Singapore;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hermetic illucens; Microbial diversity; Soil amendment; Waste valorisation;

    机译:密封症;微生物多样性;土壤修正案;浪费储灵;

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