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基于燕麦加工副产物的酵母单细胞蛋白生产的生命周期评估

Life-cycle assessment of yeast-based single-cell protein production with oat processing side-stream.

作者信息

Kobayashi Yumi, El-Wali Mohammad, Guðmundsson Hörður, Guðmundsdóttir Elísabet Eik, Friðjónsson Ólafur H, Karlsson Eva Nordberg, Roitto Marja, Tuomisto Hanna L

机构信息

Department of Agricultural Sciences, Faculty of Agriculture and Forestry, 27, 00014, University of Helsinki, Finland; Helsinki Institute of Sustainability Science (HELSUS), 4, 00014, University of Helsinki, Finland.

Department of Agricultural Sciences, Faculty of Agriculture and Forestry, 27, 00014, University of Helsinki, Finland; Helsinki Institute of Sustainability Science (HELSUS), 4, 00014, University of Helsinki, Finland.

出版信息

Sci Total Environ. 2023 May 15;873:162318. doi: 10.1016/j.scitotenv.2023.162318. Epub 2023 Feb 18.

Abstract

Production of fish meal and plant-based feed proteins continues to increase to meet the growing demand for seafood, leading to impacts on marine and terrestrial ecosystems. Microbial proteins such as single-cell proteins (SCPs) have been introduced as feed alternatives since they can replace current fish feed ingredients, e.g., soybean, which are associated with negative environmental impacts. Microbial protein production also enables utilization of grain processing side-streams as feedstock sources. This study assesses the environmental impacts of yeast-based SCP using oat side-stream as feedstock (OS-SCP). Life-cycle assessment with a cradle-to-gate approach was used to quantify global warming, freshwater eutrophication, marine eutrophication, terrestrial acidification, land use, and water consumption of OS-SCP production in Finland. Dried and wet side-streams of oat were compared with each other to identify differences in energy consumption and transportation effects. Sensitivity analysis was performed to examine the difference in impacts at various locations and fermentation times. Benchmarking was used to evaluate the environmental impacts of OS-SCP and other feed products, including both conventional and novel protein products. Results highlight the importance of energy sources in quantifying the environmental performance of OS-SCP production. OS-SCP produced with dried side-streams resulted in higher global warming (16.3 %) and water consumption (7.5 %) than OS-SCP produced from wet side-streams, reflecting the energy and water requirements for the drying process. Compared with conventional products, such as soy protein concentrates, OS-SCP resulted in 61 % less land use, while exacerbating the environmental impacts in all the other categories. OS-SCP had more impact on global warming (205-754 %), water consumption (166-1401 %), freshwater eutrophication (118-333 %), and terrestrial acidification (85-340 %) than other novel products, including yeast protein concentrate, methanotrophic bacterial SCP, and insect meal, while lowering global warming (11 %) and freshwater eutrophication (20 %) compared with dry microalgae biomass.

摘要

鱼粉和植物性饲料蛋白的产量持续增长,以满足对海产品不断增长的需求,这对海洋和陆地生态系统产生了影响。微生物蛋白,如单细胞蛋白(SCPs),已作为饲料替代品被引入,因为它们可以替代目前与负面环境影响相关的鱼饲料成分,例如大豆。微生物蛋白生产还能够将谷物加工副产物用作原料来源。本研究评估了以燕麦副产物为原料的酵母基SCP(OS-SCP)的环境影响。采用从摇篮到大门的生命周期评估方法来量化芬兰OS-SCP生产的全球变暖、淡水富营养化、海洋富营养化、陆地酸化、土地利用和水资源消耗。对燕麦的干、湿副产物进行了比较,以确定能源消耗和运输影响方面的差异。进行了敏感性分析,以研究不同地点和发酵时间的影响差异。使用基准评估来评价OS-SCP和其他饲料产品的环境影响,包括传统和新型蛋白产品。结果突出了能源在量化OS-SCP生产环境绩效方面的重要性。与由湿副产物生产的OS-SCP相比,由干副产物生产的OS-SCP导致更高的全球变暖(16.3%)和水资源消耗(7.5%),这反映了干燥过程的能源和水需求。与传统产品,如大豆浓缩蛋白相比,OS-SCP的土地利用减少了61%,同时加剧了所有其他类别的环境影响。与其他新型产品相比,包括酵母浓缩蛋白、甲烷营养细菌SCP和昆虫粉,OS-SCP对全球变暖(205 - 754%)、水资源消耗(166 - 1401%)、淡水富营养化(118 - 333%)和陆地酸化(85 - 340%)的影响更大,而与干微藻生物质相比,其全球变暖(11%)和淡水富营养化(20%)有所降低。

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