Beijing Engineering Research Center of Environmental Material for Water Purification, Beijing University of Chemical Technology, Beijing, PR China; Tsinghua University, Beijing, PR China.
Beijing Engineering Research Center of Environmental Material for Water Purification, Beijing University of Chemical Technology, Beijing, PR China.
Bioresour Technol. 2017 Oct;241:439-447. doi: 10.1016/j.biortech.2017.05.122. Epub 2017 May 20.
To investigate the effluent concentrations of pollutants, electricity production and microbial community structure, a pilot-scale microbial fuel cell coupled anaerobic-anoxic-oxic system for domestic sewage treatment was constructed, and continuously operated for more than 1 year under natural conditions. The results indicated that the treatment system ran well most of the whole period, but both effluent qualities and electricity production deteriorated at low temperature. The results of MiSeq sequencing showed that the microbial community structures of both anode and cathode biofilms changed extensively during long-term operation and were correlated with changes in effluent qualities. Fifteen genera of electricigens were detected in the anode biofilm, mainly including Clostridium, Paracoccus, Pseudomonas, and Arcobacter. Partial Mantel test results showed that the temperature had significant effects on the microbial community structure. The electricity production was found to have higher relevance to the variation of the anodic community than that of the cathodic community.
为了研究污染物的出水浓度、电能生产和微生物群落结构,构建了一个用于处理生活污水的中试规模微生物燃料电池耦合厌氧-缺氧-好氧系统,并在自然条件下连续运行了 1 年多。结果表明,在整个试验期间,处理系统大部分时间运行良好,但在低温条件下,出水水质和电能生产均恶化。MiSeq 测序结果表明,长期运行过程中,阳极和阴极生物膜的微生物群落结构发生了广泛变化,并与出水水质的变化相关。在阳极生物膜中检测到 15 个电活性菌属,主要包括梭菌属、副球菌属、假单胞菌属和弧菌属。部分 Mantel 检验结果表明,温度对微生物群落结构有显著影响。发现电能生产与阳极群落的变化比阴极群落的变化更相关。