Institute of Energy and Biotechnology Engineering, Vytautas Magnus University, K. Donelaičio g. 58, LT-44248 Kaunas, Lithuania.
VTT Technical Research Centre of Finland Ltd., 02150 Espoo, Finland.
Int J Environ Res Public Health. 2021 Feb 28;18(5):2358. doi: 10.3390/ijerph18052358.
This study evaluates the possibility of recovery of high-quality valuable fish oil and proteins from fish co-streams by traditional means or a combination of several technologies. A techno-economically feasible and sustainable zero-waste process is needed for full utilisation of this co-stream's potential. This study aims to determine the energy efficiency and economic feasibility of four different zero-waste bio-refineries based on salmon filleting co-streams. The study covers four concepts: (I) biogas and fertiliser production from salmon co-streams, (II) fish silage production, (III) thermal processing of salmon co-streams for producing oil, protein concentrate, and meal, and (IV) novel two-stage thermal and enzymatic process for producing high-quality oil and protein hydrolysate, while the solid residue is converted to biogas and fertilisers. Monte Carlo simulation is used to evaluate uncertainties in economic evaluation. The results show that the two-stage processing of fish co-streams leads to recovery of both high-quality marine oil and proteins, showing the largest profitability and return on investment during the economic analysis. It is a more tempting option than the currently used thermal treatment or traditional silage processes. The possibility of producing food-grade fish protein hydrolysate is the biggest benefit here. Concepts studied are examples of zero-waste processing of bioproducts and illustrate the possibilities and benefits of fully utilising the different fractions of fish as fillets, oil, protein, fertilisers, and energy production.
本研究评估了通过传统方法或几种技术组合从鱼类副产物中回收高质量有价值的鱼油和蛋白质的可能性。需要采用技术经济可行且可持续的零浪费工艺,才能充分利用这种副产物的潜力。本研究旨在确定基于三文鱼鱼片副产物的四个不同零浪费生物精炼厂的能源效率和经济可行性。该研究涵盖了四个概念:(I) 从三文鱼副产物中生产沼气和肥料,(II) 鱼青贮生产,(III) 三文鱼副产物的热加工生产油、浓缩蛋白和饲料,以及 (IV) 用于生产高质量油和蛋白质水解物的新型两段式热酶工艺,同时将固体残渣转化为沼气和肥料。蒙特卡罗模拟用于评估经济评估中的不确定性。结果表明,对鱼类副产物的两段式加工可同时回收高质量的海洋鱼油和蛋白质,在经济分析中显示出最大的盈利能力和投资回报率。与目前使用的热加工或传统青贮工艺相比,这是一个更具吸引力的选择。生产食品级鱼蛋白水解物的可能性是这里最大的优势。所研究的概念是生物制品零浪费加工的范例,说明了充分利用鱼片、油、蛋白质、肥料和能源生产等不同鱼类成分的可能性和益处。