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单细胞蛋白的气体发酵生产的技术经济分析。

Techno-Economic Analysis of Gas Fermentation for the Production of Single Cell Protein.

机构信息

Department of Chemical and Biological Engineering, Iowa State University, Ames, Iowa 50011, United States.

Bioeconomy Institute, Iowa State University, Ames, Iowa 50011, United States.

出版信息

Environ Sci Technol. 2024 Feb 27;58(8):3823-3829. doi: 10.1021/acs.est.3c10312. Epub 2024 Feb 17.

Abstract

Despite the large carbon footprint of livestock production, animal protein consumption has grown over the past several decades, necessitating new approaches to sustainable animal protein production. In this techno-economic analysis, single cell protein (SCP) produced via gas fermentation of carbon dioxide, oxygen, and hydrogen is studied as an animal feed source to replace fishmeal or soybean meal. Using wind-powered water electrolysis to produce hydrogen and oxygen with carbon dioxide captured from corn ethanol, the minimum selling price (MSP) of SCP is determined to be $2070 per metric ton. An emissions comparison between SCP, fishmeal, and soybean meal shows that SCP has a carbon intensity as low as 0.73 kg CO-equiv/kg protein, while fishmeal and soybean meal have an average carbon intensity of 2.72 kg CO-equiv/kg protein and 0.85 kg CO-equiv/kg protein, respectively. Moreover, SCP production would occupy 0.4% of the land per ton of protein produced compared to soybean meal and would disturb less than 0.1% of the marine ecosystem currently disturbed by fishmeal harvesting practices. These results show promise for the future economic viability of SCP as a protein source in animal feed and indicate significant environmental benefits compared to other animal feed protein sources.

摘要

尽管畜牧业生产的碳足迹巨大,但在过去几十年中,动物蛋白的消费一直在增长,这就需要新的方法来实现可持续的动物蛋白生产。在这项技术经济分析中,通过二氧化碳、氧气和氢气的气体发酵生产的单细胞蛋白 (SCP) 被研究作为一种动物饲料来源,以替代鱼粉或豆粕。利用风力发电的水电解来生产氢气和氧气,并从玉米乙醇中捕获二氧化碳,确定 SCP 的最低销售价格 (MSP) 为每公吨 2070 美元。SCP、鱼粉和豆粕的排放比较表明,SCP 的碳强度低至 0.73 千克 CO-equiv/kg 蛋白质,而鱼粉和豆粕的平均碳强度分别为 2.72 千克 CO-equiv/kg 蛋白质和 0.85 千克 CO-equiv/kg 蛋白质。此外,与豆粕相比,SCP 生产每吨蛋白质所需的土地仅占 0.4%,而且对海洋生态系统的干扰不到鱼类养殖实践目前所干扰的 0.1%。这些结果表明,SCP 作为动物饲料中蛋白质来源的未来经济可行性具有前景,并与其他动物饲料蛋白质来源相比具有显著的环境效益。

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