Chen Lifei, Chen Linxu, Pan Deng, Lin Huibin, Ren Yilin, Zhang Juan, Zhou Bo, Lin Jianqun, Lin Jianqiang
State Key Laboratory of Microbial Technology, Microbial Technology Institute, Shandong University, Qingdao, 266237, People's Republic of China.
Shandong Engineering Laboratory of Treatment and Resource Utilization of Waste From Planting and Breeding Industry, Shandong Yian Bioengineering Co., Ltd, Jinan, 250014, People's Republic of China.
Bioprocess Biosyst Eng. 2021 Oct;44(10):2035-2050. doi: 10.1007/s00449-021-02581-z. Epub 2021 May 12.
A new heterotrophic nitrifying bacterium was isolated from the compost of swine manure and rice husk and identified as Alcaligenes faecalis SDU20. Strain SDU20 had heterotrophic nitrification potential and could remove 99.7% of the initial NH-N. Nitrogen balance analysis revealed that 15.9 and 12.3% of the NH-N were converted into biological nitrogen and nitrate nitrogen, respectively. The remaining 71.44% could be converted into N or NO. Single-factor experiments showed that the optimal conditions for ammonium removal were the carbon source of sodium succinate, C/N ratio 10, initial pH 8.0, and temperature 30 °C. Nitrification genes were determined to be upregulated when sodium succinate was used as the carbon source analyzed by quantitative real-time polymerase chain reaction (qRT-PCR). Strain SDU20 could tolerate 4% salinity and show resistance to some heavy metal ions. Strain SDU20 removed 72.6% high concentrated NH-N of 2000 mg/L within 216 h. In a batch experiment, the highest NH-N removal efficiency of 98.7% and COD removal efficiency of 93.7% were obtained in the treatment of unsterilized swine wastewater. Strain SDU20 is promising in high-ammonium wastewater treatment.
从猪粪和稻壳堆肥中分离出一株新型异养硝化细菌,鉴定为粪产碱菌SDU20。菌株SDU20具有异养硝化潜力,可去除初始NH-N的99.7%。氮平衡分析表明,分别有15.9%和12.3%的NH-N转化为生物氮和硝态氮。其余71.44%可转化为N或NO。单因素实验表明,去除铵的最佳条件为以丁二酸钠为碳源、C/N比为10、初始pH为8.0、温度为30℃。通过实时定量聚合酶链反应(qRT-PCR)分析发现,当以丁二酸钠为碳源时,硝化基因上调。菌株SDU20可耐受4%的盐度,并对某些重金属离子具有抗性。菌株SDU20在216 h内去除了2000 mg/L的高浓度NH-N的72.6%。在分批实验中,处理未灭菌的猪废水时,NH-N去除效率最高可达98.7%,COD去除效率可达93.7%。菌株SDU20在高铵废水处理方面具有应用前景。