反硝化细菌
Gompertz函数
反硝化
细菌生长
化学
硝酸盐
微生物燃料电池
电流密度
环境工程
细菌
电极
环境科学
氮气
数学
生物
物理
量子力学
阳极
统计
遗传学
物理化学
有机化学
作者
Hengyuan Liu,Nan Chen,Chuanping Feng,Shuang Tong,Rui Li
标识
DOI:10.1016/j.biortech.2017.02.064
摘要
This study aimed to investigate the effect of electro-stimulation on denitrifying bacterial growth in a bio-electrochemical reactor, and the growth were modeled using modified Gompertz model under different current densities at three C/Ns. It was found that the similar optimum current density of 250 mA/m2 was obtained at C/N = 0.75, 1.00 and 1.25, correspondingly the maximum nitrate removal efficiencies were 98.0%, 99.2% and 99.9%. Moreover, ATP content and cell membrane permeability of denitrifying bacteria were significantly increased at optimum current density. Furthermore, modified Gompertz model fitted well with the microbial growth curves, and the highest maximum growth rates (µmax) and shorter lag time were obtained at the optimum current density for all C/Ns. This study demonstrated that the modified Gompertz model could be used for describing microbial growth under different current densities and C/Ns in a bio-electrochemical denitrification reactor, and it provided an alternative for improving the performance of denitrification process.
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