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首页> 外文期刊>Waste Management >Pre-treatment of banana peel to improve composting by black soldier fly (Hermetia illucens (L), Diptera: Stratiomyidae) larvae
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Pre-treatment of banana peel to improve composting by black soldier fly (Hermetia illucens (L), Diptera: Stratiomyidae) larvae

机译:预处理香蕉皮以提高黑蝇(Hermetia illucens(L),Diptera:Stratiomyidae)幼虫的堆肥效果

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摘要

Use of black soldier fly (Hermetia illucens (L), Diptera: Stratiomyidae) larvae (BSFL) is among the solutions being explored to shift the value chain in organic waste management by producing valuable products. Although BSFL consume a range of substrates, nutrient-imbalanced materials with high hemicellulose and lignin content, e.g. manure and banana peel, yield low conversion into larval biomass. This study explored pre-treatment methods to improve the nutrient composition and digestibility of banana peel to achieve higher substrate conversion into BSFL biomass. The pre-treatment methods evaluated were microbial, chemical (non-protein nitrogen), heat-based, and combinations of these. All pre-treatments tested except heating resulted in more efficient BSFL conversion in terms of final larvae weight. The low BSFL responses in pre-treatments were caused by the observed high amounts of tannins and phenolic compounds mainly from the heating pre-treatment. Waste to biomass conversion ratio correlated negatively with substrate volatile solids (VS) and positively with the decrease in VS in pre-treatment. Microbial - 14 days pre-treatments provided the optimum pre-treatment time for the microorganisms to achieve maximum degradation of the substrates, facilitating larval assimilation of the released nutrients. Rhizopus oligosporus-14 days and ammonia + Rhizopus resulted in the most efficient BSFL treatment, measured as protein produced per kg incoming material. (C) 2019 The Author(s). Published by Elsevier Ltd.
机译:使用黑士兵蝇(Hermetia illucens(L),双翅目:Stratiomyidae)幼虫(BSFL)的方法是通过生产有价值的产品来改变有机废物管理价值链的方法之一。尽管BSFL消耗了多种底物,但营养成分不均衡的材料具有较高的半纤维素和木质素含量,例如肥料和香蕉皮,转化为幼虫生物量的转化率较低。本研究探索了改善香蕉皮营养成分和消化率的预处理方法,以实现更高的底物转化为BSFL生物质的能力。评估的预处理方法是微生物,化学(非蛋白质氮),基于热的方法以及这些方法的组合。除最终幼虫重量外,除加热外,所有经过测试的预处理均能使BSFL转化效率更高。预处理中较低的BSFL响应是由于观察到的大量单宁和酚类化合物含量高(主要来自加热预处理)引起的。废物与生物质的转化率与底物挥发性固体(VS)呈负相关,与预处理中VS的降低呈正相关。微生物-预处理14天为微生物提供了最佳的预处理时间,以实现底物的最大降解,从而促进了幼虫对所释放养分的吸收。寡孢根霉(Rhizopus oligosporus)-14天和氨水+根瘤菌(Rhizopus)导致最有效的BSFL处理,以每公斤传入物料产生的蛋白质来衡量。 (C)2019作者。由Elsevier Ltd.发布

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