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新型无泡式膜生物反应器中甲烷营养菌的培养及其用于微生物蛋白生产。

Cultivation of methanotrophic bacteria in a novel bubble-free membrane bioreactor for microbial protein production.

机构信息

Department of Environmental Engineering, Technical University of Denmark, Miljøvej, Building 115, 2800 Kgs., Lyngby, Denmark.

Department of Environmental Engineering, Technical University of Denmark, Miljøvej, Building 115, 2800 Kgs., Lyngby, Denmark; School of Civil Engineering, Beijing Jiaotong University, Beijing 100044, China.

出版信息

Bioresour Technol. 2020 Aug;310:123388. doi: 10.1016/j.biortech.2020.123388. Epub 2020 Apr 18.

Abstract

Microbial protein is proposed as an alternative protein source with low environmental impact. Methane oxidizing bacteria are already produced at commercial scale from natural gas. However, their productivity is limited because of the creation of explosive atmospheres in the fermenters during production. This work demonstrates the applicability of bioreactors with a membrane-based gas supply via diffusion. Methanotrophic bacteria were successfully cultivated, with growth yields from 0.26 to 0.43 g-VSS g-CH, slightly below those observed in analogous fermenters relying on bubbling. However, ammonia yields ranged from 5.2 to 6.9 g-VSS g-NH, indicating higher nitrogen assimilation than in conventional fermenters. Indeed, protein content increased during the operational period reaching up to 51% of dry weight. The amino acid profile included the majority of the essential amino acids, demonstrating suitability as feed ingredient. Never during the operational period was an explosive atmosphere established in the reactor. Thus, bubble-free membrane bioreactors are a promising technology for microbial protein production relying on explosive gas mixtures.

摘要

微生物蛋白被提议作为一种环境影响低的替代蛋白来源。甲烷氧化菌已经可以从天然气中进行商业规模的生产。然而,由于在生产过程中发酵罐中会产生爆炸气氛,它们的生产力受到限制。这项工作展示了通过扩散进行基于膜的气体供应的生物反应器的适用性。甲烷营养菌被成功培养,其生长产率为 0.26 到 0.43 g-VSS g-CH,略低于在类似的依靠鼓泡的发酵罐中观察到的产率。然而,氨的产率范围为 5.2 到 6.9 g-VSS g-NH,表明比传统发酵罐具有更高的氮同化能力。事实上,在操作期间,蛋白质含量增加,最高可达干重的 51%。氨基酸谱包括大多数必需氨基酸,表明其适合用作饲料成分。在操作期间,反应器中从未建立过爆炸气氛。因此,无气泡膜生物反应器是一种有前途的技术,可以用于生产依赖于爆炸气体混合物的微生物蛋白。

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