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Bioprocessing strategies to increase the protein fraction of Rhizopus oryzae biomass using fish industry sidestreams

机译:使用鱼类工业侧鼻射流增加生物加工策略,以增加Rhizopus oryzae生物量的蛋白质分数

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The sidestreams produced during fish processing end in a separation tank where the resulting fractions follow biogas production or wastewater treatment. These streams can alternatively be used for production of protein-rich fungal biomass for e.g. fish feed applications, a product in increasing demand. These streams and upper streams originated during fish processing were used in this study for production of biomass using the edible filamentous fungus Rhizopus oryzae. The COD of the streams varied between 11 and 54 kg/m(3) and, after fungal conversion of organic matter into protein-rich biomass and separation, a reduction of 34-69% was achieved. The stream origin had an effect on the final production and composition of the fungal biomass: 480 kg of biomass containing 33% protein per ton of COD were produced after cultivation in the separation tank streams, while 220 kg of biomass containing 62% protein per ton of COD were produced in upper sidestreams with lower amounts of suspended solids. Changing the initial pH (6.1-6.5) to 5.0 had a negative influence on the amount of biomass produced while medium supplementation had no influence. Thus, fish processing sidestreams can be diverted from biogas production and wastewater treatment to the production of protein-rich biomass for feed applications. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在鱼加工期间产生的侧沟在分离罐中产生,其中所得部分遵循沼气生产或废水处理。或者,这些流可用于生产富含蛋白质的真菌生物量。鱼类饲料应用,产品在越来越多的需求。在本研究中使用了这些流和上部流,用于使用可食用的丝状真菌Rhizopus Oryzae生产生物质的研究。流的鳕鱼在11至54kg / m(3)之间变化,并且在真菌转化为富含蛋白质的生物质和分离后,实现了34-69%的减少。流原产地对真菌生物量的最终生产和组成产生了影响:在分离罐流中培养后产生480kg含有33%鳕鱼蛋白的蛋白质,而每吨220kg含有62%蛋白的生物质鳕鱼在上侧孢芯中产生,较少量的悬浮固体。改变初始pH(6.1-6.5)至5.0对生物量的量产生负面影响,而中等补充没有影响。因此,鱼类加工侧流可以从沼气生产和废水处理转移到生产富含蛋白质的生物量的富脂肪的生物量。 (c)2020 elestvier有限公司保留所有权利。

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