School of Biology and Biological Engineering, Guangdong Key Laboratory of Fermentation and Enzyme Engineering, South China University of Technology, Guangzhou Higher Education Mega Center, Panyu, Guangzhou 510006, China.
Key Laboratory of Fermentation Engineering (Ministry of Education), Hubei University of Technology, Wuhan 430068, Hubei, China.
Bioresour Technol. 2022 Mar;348:126790. doi: 10.1016/j.biortech.2022.126790. Epub 2022 Jan 29.
In this study, Thermoanaerobacterium thermosaccharolyticum MJ2 and biochar were used to enhance thermophilic hydrogen production from sugarcane bagasse. MJ2 bioaugmentation notably increased the hydrogen production by 95.31%, which was further significantly improved by 158.10% by adding biochar. The addition of biochar promoted the degradation of substrate, improved the activities of hydrogenase and electron transfer system, and stimulated microbial growth and metabolism. Microbial community analysis showed that the relative abundance of Thermoanaerobacterium was significantly increased by bioaugmentation and further enriched by biochar. PICRUSt analysis showed that MJ2 combined with biochar promoted metabolic pathways related to substrate degradation and microbial metabolism. This study provides a novel enhancement method for hydrogen production of the cellulolytic microbial consortium by exogenous hydrogen-producing microorganism combined with biochar and deepens the understanding of its functional mechanism.
在这项研究中,使用嗜热解糖梭菌 MJ2 和生物炭来提高甘蔗渣的高温产氢效率。MJ2 生物增强显著提高了氢气产量,增加了 95.31%,而添加生物炭进一步显著提高了 158.10%。添加生物炭促进了底物的降解,提高了氢化酶和电子传递系统的活性,并刺激了微生物的生长和代谢。微生物群落分析表明,生物增强显著增加了嗜热解糖梭菌的相对丰度,而生物炭进一步使其富集。PICRUSt 分析表明,MJ2 与生物炭结合促进了与底物降解和微生物代谢相关的代谢途径。这项研究为纤维素分解微生物群落通过外源产氢微生物与生物炭相结合的方式提高产氢效率提供了一种新的增强方法,并深化了对其功能机制的理解。