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Black Soldier Fly biowaste treatment - Assessment of global warming potential

机译:黑士兵蝇生物废物处理-全球变暖潜力评估

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Cities of low and middle-income countries face severe challenges in managing the increasing amount of waste produced, especially the organic fraction. Black Soldier Fly (BSF) biowaste treatment is an attractive treatment option as it offers a solution for waste management while also providing a protein source to help alleviate the rising global demand for animal feed. However, to-date very little information is available on how this technology performs with regard to direct greenhouse gas (GHG) emissions and global warming potential (GWP).This paper presents a study that uses a life cycle assessment (LCA) approach to assess the GWP of a BSF waste treatment facility in the case of Indonesia and compares it with respective values for an open wind-row composting facility. Direct CH4 and N2O samples were extracted from BSF treatment units and analyzed by gas chromatography. Results show that direct CO(2)eq emissions are 47 times lower the emissions from composting. Regarding the overall GWP, the LCA shows that composting has double the GWP of BSF treatment facility based on the functional unit of 1 ton of biowaste (wet weight). The main GWP contribution from a BSF facility are from: (1) residue post-composting (69%) and (2) electricity needs and source (up to 55%). Fishmeal production substitution by BSF larvae meal can reduce significantly the GWP (up to 30%). Based on this study, we conclude that BSF biowaste treatment offers an environmentally relevant alternative with very low direct GHG emissions and potentially high GWP reduction. Further research should improve residue post-treatment. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:中低收入国家的城市在管理越来越多的废物产生,特别是有机废物产生方面面临严峻挑战。黑士兵蝇(BSF)生物废物处理是一种有吸引力的处理选择,因为它提供了废物管理解决方案,同时还提供了蛋白质来源,有助于缓解全球对动物饲料需求的增长。但是,迄今为止,关于该技术在直接温室气体(GHG)排放和全球变暖潜能(GWP)方面的表现尚无足够的信息。本文提出了一项使用生命周期评估(LCA)方法进行评估的研究印度尼西亚的BSF废物处理设施的GWP,并将其与露天堆肥设施的相应值进行比较。从BSF处理单元中提取直接的CH4和N2O样品,并通过气相色谱分析。结果表明,直接CO(2)eq排放量比堆肥排放量低47倍。关于总的GWP,LCA显示,堆肥是基于1吨生物垃圾(湿重)的功能单位将BSF处理设施的GWP翻了一番。 BSF设施的主要全球升温潜能值贡献来自:(1)堆肥后的堆肥(69%)和(2)电力需求和来源(高达55%)。用BSF幼鱼粉替代鱼粉生产可以显着降低GWP(高达30%)。根据这项研究,我们得出的结论是,BSF生物废料处理提供了一种与环境相关的替代方案,其直接温室气体排放量非常低,并且全球升温潜能值的降低潜力很大。进一步的研究应改善残留物的后处理。 (C)2018作者。由Elsevier Ltd.发布

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