碳纳米泡沫
材料科学
硅胶
惰性
微生物
自燃
复合材料
化学工程
煤
废物管理
细菌
化学
多孔性
有机化学
生物
工程类
遗传学
作者
Xiangming Hu,Xin Fang,Yanyun Zhao,Wei Shao,Jiajia Hou,Xiao Li,Jindi Liu,Mulan Zhai,F TIAN,Yuting Yan,Ying Lu
标识
DOI:10.1021/acsami.4c22558
摘要
Gel foam is vital to its applications but remains a challenge. Herein, microbial gel foam was developed for coal spontaneous combustion, which was a gel foam loaded O2-consuming microbial community. The microbial gel foam had the ability to consume O2 and produce CO2. The O2 consumption was 94.46%, and the percentage of CO2 reached 48.88% at 250 h. The relative abundance of Enterobacteriaceae and Candida was 93-98% and 73-77% in the upper gel foam and the bottom liquid of microbial gel foam at 240 h, respectively. Fungal in the O2-consuming microbial community has stronger environmental tolerance than the bacterial, which was more suitable for loading in gel foam. Although the gel foam would collapse and deform, some flagellated microorganisms in the gel foam sealed the pores caused by the collapse of the foam. The "inert gas-foam layer" was formed by microorganisms at the junction of the foam and bottom liquid, which was conducive to the oxygen isolation function of the gel foam. Our results could be helpful in understanding the spatial structure of microbial gel foam and developing microbial gel foam with strong O2 consumption.
科研通智能强力驱动
Strongly Powered by AbleSci AI