硝化作用
异养
好氧反硝化
反硝化
环境化学
营养物
反硝化细菌
氮气
磷
化学
细菌
磷酸盐
食品科学
微生物学
生物
生物化学
有机化学
遗传学
作者
Huanjun Chen,Weizheng Zhou,Shunni Zhu,Liu Fen,Lei Qin,Chao Xu,Zhongming Wang
标识
DOI:10.1016/j.biortech.2020.124507
摘要
Strain C-13, identified as an Acinetobacter sp. by homology searches, exhibited efficient simultaneous heterotrophic nitrification-aerobic denitrification phosphorus removal (SNDPR) abilities by nitrogen balance analysis and further confirmation of successful amplification of functional genes ppk, napA, and nirS. In addition, strain C-13 could utilize NH4+-N, NO3–-N, and NO2–-N as nitrogen sources, among which NH4+-N was indicated to be an excellent nitrogen source for assimilation and heterotrophic nitrification. Besides, the optimum conditions for nutrient removal were determined as follows: sodium acetate as the sole carbon source, C/N/P ratio of 100/10/2, pH = 7.5, and temperature of 30 °C. Meanwhile, the strain also showed the traditional features, such as release and the excess uptake of phosphate under anaerobic/aerobic conditions, with the highest phosphorus content of 5.01% after cultivation. Strain C-13 presents promising prospects for application in biological nutrient removal in wastewater treatment.
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