化工进展 ›› 2025, Vol. 44 ›› Issue (12): 7135-7140.DOI: 10.16085/j.issn.1000-6613.2024-1819

• 生物与医药化工 • 上一篇    

工业废乙酸用于产碱杆菌好氧发酵生产单细胞蛋白

潘泽燕(), 殷文杰, 郭玉翰, 郭坤()   

  1. 西安交通大学化学工程与技术学院,陕西 西安 710049
  • 收稿日期:2024-11-08 修回日期:2025-03-08 出版日期:2025-12-25 发布日期:2026-01-06
  • 通讯作者: 郭坤
  • 作者简介:潘泽燕,女,博士研究生,研究方向为微生物电合成生产蛋白质等高值化学品。E-mail:pzy112527@stu.xjtu.edu.cn
  • 基金资助:
    国家自然科学基金(22008194);国家自然科学基金(22208260);国家自然科学基金(52204043);陕西省自然科学基金青年基金(2020JM-042)

Production of single-cell protein by Alcaligenes aerobic fermentation with industrial waste acetic acid

PAN Zeyan(), YIN Wenjie, GUO Yuhan, GUO Kun()   

  1. School of Chemical Engineering and Technology, Xi’an Jiaotong University, Xi’an 710049, Shaanxi, China
  • Received:2024-11-08 Revised:2025-03-08 Online:2025-12-25 Published:2026-01-06
  • Contact: GUO Kun

摘要:

发展单细胞蛋白技术是解决粮食安全和供应问题的重要途径。然而普遍使用H2在好氧条件下还原CO2生产单细胞蛋白的方法存在传质效率低和容易爆炸的关键问题。本研究以化工厂产生的废乙酸为碳源,利用产碱杆菌(Alcaligenes)在好氧条件下异养发酵生产单细胞蛋白。通过对反应器中原料和生长环境的合理控制,在整个运行过程中,实现了最大细胞干重(cell dry weight,CDW)为15.2g/L,CDW平均生产速率为3.7g/(L·d),且干细胞生物量中蛋白质含量高达80%左右(质量分数)。反应器内微生物群落分析表明,产碱杆菌能够在生长过程中进一步富集,最终占比高达95%,且进一步的菌体蛋白内的氨基酸测试表明,所生产的单细胞蛋白中富含多种人体必需氨基酸,其价值与优质的鱼粉蛋白相当。研究结果为工业产生的废乙酸的高值化利用和菌体蛋白技术的高效安全生产提供了一种新的方案。

关键词: 废乙酸, 产碱杆菌, 发酵, 蛋白质, 反应器

Abstract:

The development of single-cell protein (SCP) technology is a crucial approach to addressing food security and supply issues. However, the traditional method of producing SCP using hydrogen to reduce carbon dioxide under aerobic conditions suffers from the critical problems of low mass transfer efficiency and explosive safety hazards. This study utilizes waste acetic acid generated from chemical plants as a carbon source to feed Alcaligenes and produce SCP under aerobic conditions. By reasonably controlling the feedstock and growth environment in the reactor, a maximum cell dry weight (CDW) of 15.2g/L is achieved, with an average CDW production rate of 3.7g/(L·d), and the protein content in the CDW reaches approximately 80%. The test of bacteria community compositions in the reactor shows that the Alcaligenes could be enriched during growth, reaching a proportion of up to 95%. Furtherly, the amino acid profile test reveals that the produced SCP is rich in various essential amino acids, which is comparable in value to high-quality fish meal protein. These study findings provide a new process for the high-value utilization of waste acetic acid in industrial production and the safe and efficient production of SCP technology.

Key words: waste acetic acid, Alcaligenes, fermentation, protein, reactors

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