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Microbial conversion of methane into single cell protein in a dual-membrane biofilm reactor

作者:Yicheng Ma, Tao Liu, Zhiguo Yuan, Jianhua Guo · 发表于:Water Research · 年份:2025 · DOI:10.1016/j.watres.2025.123838 · 被引用次数:7 · 研究领域:Anaerobic Digestion and Biogas Production、Microbial metabolism and enzyme function、Microbial Metabolic Engineering and Bioproduction

Single cell protein (SCP, or microbial protein) is a promising alternative food source that could sustainably address the growing demand for proteins. Recently, methane, as the main component of biogas, has been explored as a carbon and energy source for SCP production due to its lower cost and renewability compared to traditional substrates such as carbohydrates. However, a major challenge is how to safely deliver methane and oxygen, and the explosion risk impedes the CH 4 -based SCP production. This study designed a dual-membrane biofilm reactor (dMBfR) for SCP production from methane, incorporating hollow fiber membranes to enhance the delivery of methane and oxygen. Over a 240-day operation, methane utilization efficiency reached 100%, achieving the SCP yield of up to 0.49 g SCP/g CH 4 . The reactor also exhibited competitive protein content of 50.2% and biomass productivity of 506 mg/L/d. Additionally, we evaluated the reactor performance in response to varying aeration modes (open-end versus dead-end) and weekly protein harvest ratios (20% versus 50%). Compared to the dead-end aeration mode, the open-end mode led to 1.5-fold higher SCP production rates, 3.5-fold higher nitrogen-based SCP yields, 3.7-fold higher carbon-based SCP yields, and 1.1-fold higher protein content. Moreover, we applied the freeze-drying approach to produce dry SCP products in the reactor. The final SCP products exhibited higher solubility (17.4%), water holding capacity (5.0%), and emulsifying st...