鱼废料青贮,低原料可用性的绿色工艺。回顾

Claudia Carina Libonatti, D. Agüeria, J. Breccia
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引用次数: 1

摘要

介绍。不同的捕鱼活动产生的废物量与加工物种(内脏、头和骨头)、同伴动物的丢弃、低商业价值物种以及与处理问题有关的损失有关。鱼粉生产是从这些鱼类加工副产品中回收营养物质的最常见的过程。然而,在那些基础设施不足或产生的废物量不足以证明将其转化为鱼粉或鱼油的经济平衡的地方,生物青贮可能是促进可持续废物管理的选择技术。目标。整理、整理和总结有关鱼类废弃物生物发酵及其应用的相关文献。发展。1994年1月至2020年12月,对渔业废弃物的综合利用进行了文献综述,重点研究了乳酸菌在鱼类废弃物发酵中的利用。这些信息被组织在不同的部分:鱼类青贮、乳酸菌和生物青贮的碳水化合物来源。结论。本综述分析的研究强调了使用多种碳水化合物来源、生物发酵剂和鱼废物发酵条件的可能性。令人满意的结果显示了鱼类废物在不同应用领域的潜在用途。这项工作可能有助于决定采用这种技术的渔业,以提供创新和可行的循环生物经济。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fish waste silage, a green process for low feedstock availability. A Review
Introduction. Different fishing activities generate a waste volume related to the processing species (viscera, heads and bones), the discards of the companion fauna, species of low commercial value and the losses related to handling problems. Fish meal production is the most common process for recovery nutrients from these fish processing byproducts. However, those places with reduced infrastructure or where the volume of wastes produced do not justified the economic equation for conversion into fish meal or oil, the biological silage could be the technology of choice to promote a sustainable waste management. Objective. To compilate, organize and summarize literature related to biological fermentation of fish waste and its applications. Development. A bibliographic review was carried out (January 1994 - December 2020) referring to the comprehensive use of fishing residues mainly focused on the use of lactic acid bacteria in fish waste fermentation. The information was organized in different sections: fish silage, lactic acid bacteria and carbohydrate sources for biological silage. Conclusions. The studies analyzed in this review highlight the possibility of using a wide variety of carbohydrate sources, biological starters and fish waste fermentation conditions. The satisfactory results show the potential use of fish waste in different applications. This work could contribute to the fisheries that decide to adopt this kind technology in order to provide an innovative and viable recycling bioeconomy.
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